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1.
Sci Rep ; 10(1): 10001, 2020 06 19.
Article in English | MEDLINE | ID: mdl-32561805

ABSTRACT

Ageing may be due to mutation accumulation across the lifespan, leading to tissue dysfunction, disease, and death. We tested whether germline autosomal mutation rates in young adults predict their remaining survival, and, for women, their reproductive lifespans. Age-adjusted mutation rates (AAMRs) in 61 women and 61 men from the Utah CEPH (Centre d'Etude du Polymorphisme Humain) families were determined. Age at death, cause of death, all-site cancer incidence, and reproductive histories were provided by the Utah Population Database, Utah Cancer Registry, and Utah Genetic Reference Project. Higher AAMRs were significantly associated with higher all-cause mortality in both sexes combined. Subjects in the top quartile of AAMRs experienced more than twice the mortality of bottom quartile subjects (hazard ratio [HR], 2.07; 95% confidence interval [CI], 1.21-3.56; p = 0.008; median survival difference = 4.7 years). Fertility analyses were restricted to women whose age at last birth (ALB) was ≥ 30 years, the age when fertility begins to decline. Women with higher AAMRs had significantly fewer live births and a younger ALB. Adult germline mutation accumulation rates are established in adolescence, and later menarche in women is associated with delayed mutation accumulation. We conclude that germline mutation rates in healthy young adults may provide a measure of both reproductive and systemic ageing. Puberty may induce the establishment of adult mutation accumulation rates, just when DNA repair systems begin their lifelong decline.


Subject(s)
Germ-Line Mutation , Longevity/genetics , Mutation Rate , Reproduction/genetics , Female , Fertility/genetics , Humans , Live Birth , Male , Pregnancy , Registries , Reproductive History , Survival Analysis , Utah , Young Adult
3.
Hum Mol Genet ; 27(13): 2383-2391, 2018 07 01.
Article in English | MEDLINE | ID: mdl-29659823

ABSTRACT

Osteoarthritis (OA) is a common debilitating disease characterized by abnormal remodeling of the cartilage and bone of the articular joint. Ameliorating therapeutics are lacking due to limited understanding of the molecular pathways affecting disease initiation and progression. Notably, although a link between inflammation and overt OA is well established, the role of inflammation as a driver of disease occurrence is highly disputed. We analyzed a family with dominant inheritance of early-onset OA and found that affected individuals harbored a rare variant allele encoding a significant amino acid change (p.Asn104Asp) in the kinase domain of receptor interacting protein kinase 2 (RIPK2), which transduces signals from activated bacterial peptidoglycan sensors through the NF-κB pathway to generate a proinflammatory immune response. Functional analyses of RIPK2 activity in zebrafish embryos indicated that the variant RIPK2104Asp protein is hyperactive in its signaling capacity, with augmented ability to activate the innate immune response and the NF-κB pathway and to promote upregulation of OA-associated genes. Further we show a second allele of RIPK2 linked to an inflammatory disease associated with arthritis also has enhanced activity stimulating the NF-κB pathway. Our studies reveal for the first time the inflammatory response can function as a gatekeeper risk factor for OA.


Subject(s)
Inflammation/genetics , Osteoarthritis/genetics , Receptor-Interacting Protein Serine-Threonine Kinase 2/genetics , Receptor-Interacting Protein Serine-Threonine Kinases/genetics , Zebrafish Proteins/genetics , Adult , Age of Onset , Alleles , Amino Acid Substitution , Animals , Chondrocytes/metabolism , Chondrocytes/pathology , Female , Humans , Inflammation/pathology , Male , NF-kappa B/genetics , Osteoarthritis/pathology , Transcription Factor RelA/genetics , Exome Sequencing , Zebrafish/genetics , Zebrafish/growth & development
4.
Birth Defects Res ; 110(7): 610-617, 2018 04 17.
Article in English | MEDLINE | ID: mdl-29570242

ABSTRACT

OBJECTIVES: Congenital diaphragmatic hernia (CDH) is a developmental defect of the diaphragm that causes high newborn morbidity and mortality. CDH is considered to be a multifactorial disease, with strong evidence implicating genetic factors. Although recent studies suggest the biological role of deleterious germline de novo variants, the effect of gene variants specific to the diaphragm remains unclear, and few single genes have been definitively implicated in human disease. METHODS: We performed genome sequencing on 16 individuals with CDH and their unaffected parents, including 10 diaphragmatic samples. RESULTS: We did not detect damaging somatic mutations in diaphragms, but identified germline heterozygous de novo functional mutations of 14 genes in nine patients. Although the majority of these genes are not known to be associated with CDH, one patient with CDH and cardiac anomalies harbored a frameshift mutation in NR2F2 (aka COUP-TFII), generating a premature truncation of the protein. This patient also carried a missense variant predicted to be damaging in XIRP2 (aka Myomaxin), a transcriptional target of MEF2A. Both NR2F2 and MEF2A map to chromosome 15q26, where recurring de novo deletions and unbalanced translocations have been observed in CDH. CONCLUSIONS: Somatic variants are not common in CDH. To our knowledge, this is the second case of a germline de novo frameshift mutation in NR2F2 in CDH. Since NR2F2 null mice exhibit a diaphragmatic defect, and XIRP2 is implicated in cardiac development, our data suggest the role of these two variants in the etiology of CDH, and possibly cardiac anomalies.


Subject(s)
Frameshift Mutation , Germ-Line Mutation , COUP Transcription Factor II/genetics , DNA-Binding Proteins/genetics , Female , Hernias, Diaphragmatic, Congenital/genetics , Humans , LIM Domain Proteins/genetics , MEF2 Transcription Factors/genetics , Male , Nuclear Proteins/genetics
5.
Am J Med Genet A ; 167A(12): 2975-84, 2015 Dec.
Article in English | MEDLINE | ID: mdl-26284702

ABSTRACT

Wolff-Parkinson-White (WPW) syndrome is a common cause of supraventricular tachycardia that carries a risk of sudden cardiac death. To date, mutations in only one gene, PRKAG2, which encodes the 5'-AMP-activated protein kinase subunit γ-2, have been identified as causative for WPW. DNA samples from five members of a family with WPW were analyzed by exome sequencing. We applied recently designed prioritization strategies (VAAST/pedigree VAAST) coupled with an ontology-based algorithm (Phevor) that reduced the number of potentially damaging variants to 10: a variant in KCNE2 previously associated with Long QT syndrome was also identified. Of these 11 variants, only MYH6 p.E1885K segregated with the WPW phenotype in all affected individuals and was absent in 10 unaffected family members. This variant was predicted to be damaging by in silico methods and is not present in the 1,000 genome and NHLBI exome sequencing project databases. Screening of a replication cohort of 47 unrelated WPW patients did not identify other likely causative variants in PRKAG2 or MYH6. MYH6 variants have been identified in patients with atrial septal defects, cardiomyopathies, and sick sinus syndrome. Our data highlight the pleiotropic nature of phenotypes associated with defects in this gene.


Subject(s)
Exome , Wolff-Parkinson-White Syndrome/genetics , AMP-Activated Protein Kinases/genetics , Adult , Cardiac Myosins/genetics , Female , Genetic Loci , Humans , Male , Myosin Heavy Chains/genetics , Pedigree , Potassium Channels, Voltage-Gated/genetics , Wolff-Parkinson-White Syndrome/etiology
6.
Mol Autism ; 5(1): 5, 2014 Jan 27.
Article in English | MEDLINE | ID: mdl-24467814

ABSTRACT

BACKGROUND: Genetics clearly plays a major role in the etiology of autism spectrum disorders (ASDs), but studies to date are only beginning to characterize the causal genetic variants responsible. Until recently, studies using multiple extended multi-generation families to identify ASD risk genes had not been undertaken. METHODS: We identified haplotypes shared among individuals with ASDs in large multiplex families, followed by targeted DNA capture and sequencing to identify potential causal variants. We also assayed the prevalence of the identified variants in a large ASD case/control population. RESULTS: We identified 584 non-conservative missense, nonsense, frameshift and splice site variants that might predispose to autism in our high-risk families. Eleven of these variants were observed to have odds ratios greater than 1.5 in a set of 1,541 unrelated children with autism and 5,785 controls. Three variants, in the RAB11FIP5, ABP1, and JMJD7-PLA2G4B genes, each were observed in a single case and not in any controls. These variants also were not seen in public sequence databases, suggesting that they may be rare causal ASD variants. Twenty-eight additional rare variants were observed only in high-risk ASD families. Collectively, these 39 variants identify 36 genes as ASD risk genes. Segregation of sequence variants and of copy number variants previously detected in these families reveals a complex pattern, with only a RAB11FIP5 variant segregating to all affected individuals in one two-generation pedigree. Some affected individuals were found to have multiple potential risk alleles, including sequence variants and copy number variants (CNVs), suggesting that the high incidence of autism in these families could be best explained by variants at multiple loci. CONCLUSIONS: Our study is the first to use haplotype sharing to identify familial ASD risk loci. In total, we identified 39 variants in 36 genes that may confer a genetic risk of developing autism. The observation of 11 of these variants in unrelated ASD cases further supports their role as ASD risk variants.

7.
Am J Med Genet A ; 158A(12): 3137-47, 2012 Dec.
Article in English | MEDLINE | ID: mdl-23165927

ABSTRACT

Congenital diaphragmatic hernia (CDH) is a developmental defect of the diaphragm that causes high newborn mortality. Isolated or non-syndromic CDH is considered a multifactorial disease, with strong evidence implicating genetic factors. As low heritability has been reported in isolated CDH, family-based genetic methods have yet to identify the genetic factors associated with the defect. Using the Utah Population Database, we identified distantly related patients from several extended families with a high incidence of isolated CDH. Using high-density genotyping, seven patients were analyzed by homozygosity exclusion rare allele mapping (HERAM) and phased haplotype sharing (HapShare), two methods we developed to map shared chromosome regions. Our patient cohort shared three regions not previously associated with CDH, that is, 2q11.2-q12.1, 4p13 and 7q11.2, and two regions previously involved in CDH, that is, 8p23.1 and 15q26.2. The latter regions contain GATA4 and NR2F2, two genes implicated in diaphragm formation in mice. Interestingly, three patients shared the 8p23.1 locus and one of them also harbored the 15q26.2 segment. No coding variants were identified in GATA4 or NR2F2, but a rare shared variant was found in intron 1 of GATA4. This work shows the role of heritability in isolated CDH. Our family-based strategy uncovers new chromosomal regions possibly associated with disease, and suggests that non-coding variants of GATA4 and NR2F2 may contribute to the development of isolated CDH. This approach could speed up the discovery of the genes and regulatory elements causing multifactorial diseases, such as isolated CDH.


Subject(s)
Chromosomes, Human , Hernias, Diaphragmatic, Congenital , Adult , COUP Transcription Factor II/genetics , Case-Control Studies , Child , Cohort Studies , DNA/blood , DNA/genetics , Diaphragm/abnormalities , Family Health , Female , GATA4 Transcription Factor/genetics , Gene Dosage , Genetic Predisposition to Disease , Genotype , Hernia, Diaphragmatic/blood , Hernia, Diaphragmatic/genetics , Humans , Male , Pedigree , Polymorphism, Single Nucleotide
8.
Circ Cardiovasc Genet ; 5(2): 175-82, 2012 Apr 01.
Article in English | MEDLINE | ID: mdl-22337856

ABSTRACT

BACKGROUND: A number of single gene defects have been identified in patients with isolated or nonsyndromic congenital heart defects (CHDs). However, due to significant genetic heterogeneity, candidate gene approaches have had limited success in finding high-risk alleles in most cases. The purpose of this study was to use exome sequencing to identify high-risk gene variants in a family with highly penetrant pleiotropic CHD. METHODS AND RESULTS: DNA samples from 2 members of a family with diverse CHD were analyzed by exome sequencing. Variants were filtered to eliminate common variants and sequencing artifacts and then prioritized based on the predicted effect of the variant and on gene function. The remainder of the family was screened using polymerase chain reaction, high-resolution melting analysis, and DNA sequencing to evaluate variant segregation. After filtering, >2000 rare variants (including single nucleotide substitutions and indels) were shared by the 2 individuals. Of these, 46 were nonsynonymous, 3 were predicted to alter splicing, and 6 resulted in a frameshift. Prioritization reduced the number of variants potentially involved in CHD to 18. None of the variants completely segregated with CHD in the kindred. However, 1 variant, Myh6 Ala290Pro, was identified in all but 1 affected individual. This variant was previously identified in a patient with tricuspid atresia and large secundum atrial septal defect. CONCLUSIONS: It is likely that next-generation sequencing will become the method of choice for unraveling the complex genetics of CHD, but information gained by analysis of transmission through families will be crucial.


Subject(s)
Exome , Heart Defects, Congenital/genetics , Adolescent , Adult , Aged , Female , Genetic Predisposition to Disease , Humans , Male , Middle Aged , Pedigree , Polymorphism, Single Nucleotide , Sequence Analysis, DNA , Young Adult
9.
J Invest Dermatol ; 130(12): 2768-72, 2010 Dec.
Article in English | MEDLINE | ID: mdl-20668468

ABSTRACT

Testing of ∼25,000 putative functional single-nucleotide polymorphisms (SNPs) across the human genome in a genetic association study has identified three psoriasis genes, IL12B, IL23R, and IL13. We now report evidence for the association of psoriasis risk with missense SNPs in the interferon induced with helicase C domain 1 gene (IFIH1). The rare alleles of two independent SNPs were associated with decreased risk of psoriasis--rs35667974 (Ile923Val): odds ratio (OR) for minor allele carriers is 0.43, P=2.36 × 10(-5) (2,098 cases vs. 1,748 controls); and rs10930046 (His460Arg): OR for minor allele carriers is 0.51, P=6.47 × 10(-4) (2,098 cases vs. 1,744 controls). Compared to noncarriers, carriers of the 923Val and/or 460Arg variants were protected from psoriasis (OR=0.46, P=5.56 × 10(-8)). To our knowledge, these results suggest that IFIH1 is a previously unreported psoriasis gene.


Subject(s)
DEAD-box RNA Helicases/genetics , Heterozygote , Mutation, Missense , Psoriasis/epidemiology , Psoriasis/genetics , Adult , Autoimmunity/genetics , Female , Genetic Predisposition to Disease/epidemiology , Humans , Interferon-Induced Helicase, IFIH1 , Male , Polymorphism, Single Nucleotide , Risk Factors
10.
J Med Genet ; 47(10): 692-9, 2010 Oct.
Article in English | MEDLINE | ID: mdl-20522424

ABSTRACT

BACKGROUND: Colorectal cancer is the fourth most common type of cancer and the second most common cause of cancer death. Fewer than 5% of colon cancers arise in the presence of a clear hereditary cancer condition; however, current estimates suggest that an additional 15-25% of colorectal cancers arise on the basis of unknown inherited factors. AIM: To identify additional genetic factors responsible for colon cancer. METHODS: A large kindred with excess colorectal cancer was identified through the Utah Population Database and evaluated clinically and genetically for inherited susceptibility. RESULTS: A major genetic locus segregating with colonic polyps and cancer in this kindred was identified on chromosome 13q with a non-parametric linkage score of 24 (LOD score of 2.99 and p=0.001). The genetic region spans 21 Mbp and contains 27 RefSeq genes. Sequencing of all candidate genes in this region failed to identify a clearly deleterious mutation; however, polymorphisms segregating with the phenotype were identified. Chromosome 13q is commonly gained and overexpressed in colon cancers and correlates with metastasis, suggesting the presence of an important cancer progression gene. Evaluation of tumours from the kindred revealed a gain of 13q as well. CONCLUSIONS: This identified region may contain a novel gene responsible for colon cancer progression in a significant proportion of sporadic cancers. Identification of the precise gene and causative genetic change in the kindred will be an important next step to understanding cancer progression and metastasis.


Subject(s)
Adenoma/genetics , Chromosomes, Human, Pair 13/genetics , Colorectal Neoplasms/genetics , Genetic Linkage/genetics , Adult , Aged , Aged, 80 and over , Chromosome Mapping , Databases, Genetic , Family , Genetic Markers , Haplotypes , Humans , Middle Aged , Pedigree , Phenotype , Utah
11.
Am J Hypertens ; 23(8): 917-23, 2010 Aug.
Article in English | MEDLINE | ID: mdl-20414195

ABSTRACT

BACKGROUND: Much remains unknown about the genetic factors that contribute to essential hypertension. The Utah Genetic Reference Project (UGRP) large pedigree collection provides new opportunities to study quantitative relationships between genetic variation, endophenotypes, and blood pressure. METHODS: We analyzed the relationship between common single-nucleotide polymorphisms (SNPs) and haplotypes spanning the angiotensinogen (AGT) gene and promoter region, plasma AGT levels, and systolic (SBP) and diastolic blood pressure (DBP) in 424 individuals from 41 two-generation UGRP families. RESULTS: Plasma AGT levels are significantly correlated among UGRP family members. Correlations are higher for males than for females. Parent-offspring correlations for plasma AGT (0.30) are higher than those for SBP (0.26) and DBP (0.17) (all P values <0.01). The additive heritability (h(2)) for plasma AGT is high (0.74) and substantially exceeds heritability estimates for SBP (0.26) and DBP (0.16) (all P values <0.01). Significant linkage (logarithm of the odds (LOD) >3) is found between six AGT SNPs and plasma AGT. A model that utilizes three AGT haplotype groups produces the best LOD score (5.1) that exceeds the best single SNP LOD score (3.8). Plasma AGT and blood pressure were not significantly correlated. CONCLUSIONS: Plasma AGT levels demonstrate high heritability in 41 UGRP families. Locus-specific heritability estimates for AGT SNPs and haplotypes approach 67%, indicating that variation at AGT accounts for a large percentage of the heritability of plasma AGT. A three-way haplotype model outperforms single SNPs for quantitative linkage analysis to plasma AGT. In these predominantly normotensive individuals, plasma AGT did not correlate significantly with blood pressure.


Subject(s)
Angiotensinogen/genetics , Blood Pressure/genetics , Hypertension/genetics , Adult , Aged , Angiotensinogen/blood , Female , Genetic Linkage , Haplotypes , Humans , Male , Middle Aged , Pedigree , Polymorphism, Single Nucleotide , Quantitative Trait, Heritable
12.
J Proteome Res ; 9(6): 3083-90, 2010 Jun 04.
Article in English | MEDLINE | ID: mdl-20408573

ABSTRACT

Chronic obstructive pulmonary disease (COPD), characterized by chronic airflow limitation, is a serious public health concern. In this study, we used proton nuclear magnetic resonance ((1)H NMR) spectroscopy to identify and quantify metabolites associated with lung function in COPD. Plasma and urine were collected from 197 adults with COPD and from 195 without COPD. Samples were assayed using a 600 MHz NMR spectrometer, and the resulting spectra were analyzed against quantitative spirometric measures of lung function. After correcting for false discoveries and adjusting for covariates (sex, age, smoking) several spectral regions in urine were found to be significantly associated with baseline lung function. These regions correspond to the metabolites trigonelline, hippurate and formate. Concentrations of each metabolite, standardized to urinary creatinine, were associated with baseline lung function (minimum p-value = 0.0002 for trigonelline). No significant associations were found with plasma metabolites. Urinary hippurate and formate are often related to gut microflora. This could suggest that the microbiome varies between individuals with different lung function. Alternatively, the associated metabolites may reflect lifestyle differences affecting overall health. Our results will require replication and validation, but demonstrate the utility of NMR metabolomics as a screening tool for identifying novel biomarkers of pulmonary outcomes.


Subject(s)
Lung/physiology , Metabolomics/methods , Nuclear Magnetic Resonance, Biomolecular/methods , Pulmonary Disease, Chronic Obstructive/urine , Respiratory Function Tests/methods , Adult , Alkaloids/urine , Biomarkers/urine , Clinical Trials as Topic , Female , Formates/urine , Hippurates/urine , Humans , Least-Squares Analysis , Lung/physiopathology , Male , Middle Aged
13.
Blood ; 115(23): 4923-33, 2010 Jun 10.
Article in English | MEDLINE | ID: mdl-20203263

ABSTRACT

T-cell immunotherapy that targets minor histocompatibility (H) antigens presented selectively by recipient hematopoietic cells, including leukemia, could prevent and treat leukemic relapse after hematopoietic cell transplantation without causing graft-versus-host disease. To provide immunotherapy that can be applied to a majority of transplantation recipients, it is necessary to identify leukemia-associated minor H antigens that result from gene polymorphisms that are balanced in the population and presented by common human leukocyte antigen alleles. Current approaches for deriving minor H antigen-specific T cells, which provide essential reagents for the molecular identification and characterization of the polymorphic genes that encode the antigens, rely on in vivo priming and are often unsuccessful. We show that minor H antigen-specific cytotoxic T lymphocyte precursors are found predominantly in the naive CD8(+) T-cell subset and provide an efficient strategy for in vitro priming of native T cells to generate T cells to a broad diversity of minor H antigens presented with common human leukocyte antigen alleles. We used this approach to derive a panel of stable cytotoxic T lymphocyte clones for discovery of genes that encode minor H antigens and identify a novel antigen expressed on acute myeloid leukemia stem cells and minimally in graft-versus-host disease target tissues.


Subject(s)
Alleles , CD8-Positive T-Lymphocytes/immunology , H-Y Antigen/genetics , H-Y Antigen/immunology , Leukemia, Myeloid, Acute/genetics , Leukemia, Myeloid, Acute/immunology , Neoplastic Stem Cells/immunology , Cell Line , Female , Graft vs Host Disease/genetics , Graft vs Host Disease/immunology , Graft vs Host Disease/prevention & control , Hematopoietic Stem Cell Transplantation , Humans , Leukemia, Myeloid, Acute/therapy , Male , Transplantation, Homologous
14.
COPD ; 7(1): 51-8, 2010 Feb.
Article in English | MEDLINE | ID: mdl-20214463

ABSTRACT

Chronic obstructive pulmonary disease (COPD) is a prevalent pulmonary disease characterized by a progressive decline in lung function. The identification of biomarkers capable of predicting the rate of lung function decline or capable of giving an early read on drug efficacy in clinical trials would be very useful. The aim of this study was to identify plasma biomarkers capable of accurately distinguishing patients with COPD from healthy controls. Eighty-nine plasma markers in 40 COPD patients and 20 healthy smoker controls were analyzed. The COPD patients were divided into two subgroups, rapid and slow decliners based on their rate of lung function decline measured over 15 years. Univariate analysis revealed that 25 plasma markers were statistically different between rapid decliners and controls, 4 markers were different between slow decliners and controls, and 10 markers were different between rapid and slow decliners (p < 0.05). Multivariate analysis led to the identification of groups of plasma markers capable of distinguishing rapid decliners from controls (signature 1), slow decliners from controls (signature 2) and rapid from slow decliners (signature 3) with over 90% classification accuracy. Importantly, signature 1 was shown to be longitudinally stable using plasma samples taken a year later from a subset of patients. This study describes a novel set of plasma markers differentiating slow from rapid decline of lung function in COPD. If validated in distinct and larger cohorts, the signatures identified will have important implications in both disease diagnosis, as well as the clinical evaluation of new therapies.


Subject(s)
Biomarkers/blood , Pulmonary Disease, Chronic Obstructive/blood , Pulmonary Disease, Chronic Obstructive/physiopathology , Case-Control Studies , Female , Forced Expiratory Volume/physiology , Humans , Longitudinal Studies , Male , Middle Aged , Predictive Value of Tests , Prognosis , Pulmonary Disease, Chronic Obstructive/diagnosis , Severity of Illness Index , Time Factors
15.
J Mol Diagn ; 12(2): 213-9, 2010 Mar.
Article in English | MEDLINE | ID: mdl-20093388

ABSTRACT

With the recent discovery of mutations in the STAT3 gene in the majority of patients with classic Hyper-IgE syndrome, it is now possible to make a molecular diagnosis in most of these cases. We have developed a PCR-based high-resolution DNA-melting assay to scan selected exons of the STAT3 gene for mutations responsible for Hyper-IgE syndrome, which is then followed by targeted sequencing. We scanned for mutations in 10 unrelated pedigrees, which include 16 patients with classic Hyper-IgE syndrome. These pedigrees include both sporadic and familial cases and their relatives, and we have found STAT3 mutations in all affected individuals. High-resolution melting analysis allows a single day turn-around time for mutation scanning and targeted sequencing of the STAT3 gene, which will greatly facilitate the rapid diagnosis of the Hyper-IgE syndrome, allowing prompt and appropriate therapy, prophylaxis, improved clinical outcome, and accurate genetic counseling.


Subject(s)
DNA Mutational Analysis/methods , Job Syndrome , STAT3 Transcription Factor/genetics , Exons , Female , Humans , Job Syndrome/genetics , Job Syndrome/immunology , Job Syndrome/physiopathology , Male , Molecular Sequence Data , Mutation , Pedigree , Sequence Analysis, DNA/methods
16.
Hum Mol Genet ; 19(7): 1286-301, 2010 Apr 01.
Article in English | MEDLINE | ID: mdl-20071345

ABSTRACT

Total anomalous pulmonary venous return (TAPVR) is a congenital heart defect inherited via complex genetic and/or environmental factors. We report detailed mapping in extended TAPVR kindreds and mutation analysis in TAPVR patients that implicate the PDGFRA gene in the development of TAPVR. Gene expression studies in mouse and chick embryos for both the Pdgfra receptor and its ligand Pdgf-a show temporal and spatial patterns consistent with a role in pulmonary vein (PV) development. We used an in ovo function blocking assay in chick and a conditional knockout approach in mouse to knock down Pdgfra expression in the developing venous pole during the period of PV formation. We observed that loss of PDGFRA function in both organisms causes TAPVR with low penetrance (approximately 7%) reminiscent of that observed in our human TAPVR kindreds. Intermediate inflow tract anomalies occurred in a higher percentage of embryos (approximately 30%), suggesting that TAPVR occurs at one end of a spectrum of defects. We show that the anomalous pulmonary venous connection seen in chick and mouse is highly similar to TAPVR discovered in an abnormal early stage embryo from the Kyoto human embryo collection. Whereas the embryology of the normal venous pole and PV is becoming understood, little is known about the embryogenesis or molecular pathogenesis of TAPVR. These models of TAPVR provide important insight into the pathogenesis of PV defects. Taken together, these data from human genetics and animal models support a role for PDGF-signaling in normal PV development, and in the pathogenesis of TAPVR.


Subject(s)
Heart Defects, Congenital/genetics , Pulmonary Veins/abnormalities , Receptor, Platelet-Derived Growth Factor alpha/genetics , Animals , Chick Embryo , Humans , Mice , Mice, Mutant Strains , Models, Animal , Platelet-Derived Growth Factor/metabolism , Receptor, Platelet-Derived Growth Factor alpha/metabolism
17.
Am J Med Genet B Neuropsychiatr Genet ; 153B(2): 656-662, 2010 Mar 05.
Article in English | MEDLINE | ID: mdl-19777563

ABSTRACT

Tourette syndrome (TS) is a neuropsychiatric disorder characterized by multiple motor and phonic tics. The heritability of TS has been well established, yet there is a lack of consensus in genome-wide linkage studies. The purpose of this study was to conduct a genome-wide linkage analysis on a unique, large, high-risk TS Utah pedigree. We examined a qualitative trait (TS1) where cases had a definitive diagnosis of TS as observed by a clinical interviewer (n = 66) and a quantitative phenotype based on the total Yale global motor and phonic tic severity scores (n = 102). Both parametric and non-parametric multipoint linkage analyses based on MCMC methods were performed using a 10 cM spaced micro-satellite autosomal marker set. Two regions of interest were identified under affecteds-only recessive models; a LOD score of 3.3 on chromosome 1p for Yale tic severity and a LOD score of 3.1 on chromosome 3p for the TS1 phenotype. Twenty-seven individuals shared linked segregating haplotypes for the 1p region. They had significantly higher Yale tic phonic scores than non-sharers (P = 0.01). There were 46 haplotype sharers on chromosome 3p with significantly higher percentage of females among these individuals compared to the non-sharers (P = 0.03). The significant linkage peaks on chromosomes 1p and 3p are in new areas of the genome for TS, and replication of these findings is necessary.


Subject(s)
Genetic Linkage , Tourette Syndrome/genetics , Adolescent , Child , Child, Preschool , Family Health , Female , Genotype , Haplotypes , Humans , Infant , Lod Score , Male , Microsatellite Repeats , Pedigree , Utah
18.
PLoS Genet ; 5(9): e1000649, 2009 Sep.
Article in English | MEDLINE | ID: mdl-19763161

ABSTRACT

A follow-up study of a large Utah family with significant linkage to chromosome 2q24 led us to identify a new febrile seizure (FS) gene, SCN9A encoding Na(v)1.7. In 21 affected members, we uncovered a potential mutation in a highly conserved amino acid, p.N641Y, in the large cytoplasmic loop between transmembrane domains I and II that was absent from 586 ethnically matched population control chromosomes. To establish a functional role for this mutation in seizure susceptibility, we introduced the orthologous mutation into the murine Scn9a ortholog using targeted homologous recombination. Compared to wild-type mice, homozygous Scn9a(N641Y/N641Y) knockin mice exhibit significantly reduced thresholds to electrically induced clonic and tonic-clonic seizures, and increased corneal kindling acquisition rates. Together, these data strongly support the SCN9A p.N641Y mutation as disease-causing in this family. To confirm the role of SCN9A in FS, we analyzed a collection of 92 unrelated FS patients and identified additional highly conserved Na(v)1.7 missense variants in 5% of the patients. After one of these children with FS later developed Dravet syndrome (severe myoclonic epilepsy of infancy), we sequenced the SCN1A gene, a gene known to be associated with Dravet syndrome, and identified a heterozygous frameshift mutation. Subsequent analysis of 109 Dravet syndrome patients yielded nine Na(v)1.7 missense variants (8% of the patients), all in highly conserved amino acids. Six of these Dravet syndrome patients with SCN9A missense variants also harbored either missense or splice site SCN1A mutations and three had no SCN1A mutations. This study provides evidence for a role of SCN9A in human epilepsies, both as a cause of FS and as a partner with SCN1A mutations.


Subject(s)
Abnormalities, Multiple/genetics , Epilepsy/complications , Epilepsy/genetics , Seizures, Febrile/etiology , Seizures, Febrile/genetics , Sodium Channels/genetics , Abnormalities, Multiple/physiopathology , Amino Acid Sequence , Amino Acid Substitution/genetics , Animals , Base Sequence , DNA Mutational Analysis , Electroshock , Epilepsy/physiopathology , Female , Gene Knock-In Techniques , Humans , Kindling, Neurologic/physiology , Male , Mice , Molecular Sequence Data , Mutation/genetics , NAV1.1 Voltage-Gated Sodium Channel , NAV1.7 Voltage-Gated Sodium Channel , Nerve Tissue Proteins/genetics , Pedigree , Protein Subunits/genetics , Seizures, Febrile/physiopathology , Sequence Alignment , Sodium Channels/chemistry , Syndrome
19.
Epilepsia ; 50(7): 1752-9, 2009 Jul.
Article in English | MEDLINE | ID: mdl-19453707

ABSTRACT

PURPOSE: Benign familial neonatal convulsions (BFNC) is caused by mutations in the KCNQ2 and KCNQ3 genes, which encode subunits of the M-type potassium channel. The purpose of this study was to examine the effects of orthologous BFNC-causing mutations on seizure thresholds and the acquisition of corneal kindling in mice with heterozygous expression of the mutations. METHODS: The effects of the Kcnq2 gene A306T mutation and the Kcnq3 gene G311V mutation were determined for minimal clonic, minimal tonic hindlimb extension, and partial psychomotor seizures. The rate of corneal kindling acquisition was also determined for Kcnq2 A306T and Kcnq3 G311V mice. RESULTS: Seizure thresholds were significantly altered relative to wild-type animals in the minimal clonic, minimal tonic hindlimb extension, and partial psychomotor seizure models. Differences in seizure threshold were found to be dependent on the mutation expressed, the seizure testing paradigm, the genetic background strain, and the gender of the animal. Mutations in Kcnq2 and Kcnq3 were associated with an increased rate of corneal kindling. In the Kcnq2 A306T mice, an increased incidence of death occurred during and immediately following the conclusion of the kindling acquisition period. CONCLUSIONS: These results suggest that genetic alterations in the subunits that underlie the M-current and cause BFNC alter seizure susceptibility in a sex-, mouse strain-, and seizure-test dependent manner. Although the heterozygous mice do not appear to have spontaneous seizures, the increased seizure susceptibility and incidence of death during and after kindling suggests that these mutations lead to altered excitability in these animals.


Subject(s)
Epilepsy, Benign Neonatal/genetics , KCNQ2 Potassium Channel/genetics , KCNQ3 Potassium Channel/genetics , Kindling, Neurologic/physiology , Mutation/genetics , Seizures/genetics , Action Potentials/physiology , Animals , Disease Models, Animal , Electric Stimulation , Electrocardiography , Epilepsy, Benign Neonatal/physiopathology , Female , Gene Knock-In Techniques/methods , Genetic Predisposition to Disease , Heterozygote , Humans , KCNQ2 Potassium Channel/physiology , KCNQ3 Potassium Channel/physiology , Kindling, Neurologic/genetics , Male , Mice , Mutation, Missense/genetics , Nerve Tissue Proteins/genetics , Seizures/physiopathology , Sex Factors
20.
Nicotine Tob Res ; 11(7): 785-96, 2009 Jul.
Article in English | MEDLINE | ID: mdl-19436041

ABSTRACT

INTRODUCTION: Previous research revealed significant associations between haplotypes in the CHRNA5-A3-B4 subunit cluster and scores on the Fagerström Test for Nicotine Dependence among individuals reporting daily smoking by age 17. The present study used subsamples of participants from that study to investigate associations between the CHRNA5-A3-B4 haplotypes and an array of phenotypes not analyzed previously (i.e., withdrawal severity, ability to stop smoking, and specific scales on the Wisconsin Inventory of Smoking Dependence Motives (WISDM-68) that reflect loss of control, strong craving, and heavy smoking. METHODS: Two cohorts of current or former smokers (N = 886) provided both self-report data and DNA samples. One sample (Wisconsin) comprised smokers making a quit smoking attempt, which permitted the assessment of withdrawal and relapse during the attempt. The other sample (Utah) comprised participants studied for risk factors for nicotine dependence and chronic obstructive pulmonary disease and included individuals originally recruited in the Lung Health Study. RESULTS: The CHRNA5-A3-B4 haplotypes were significantly associated with the targeted WISDM-68 scales (Tolerance, Craving, Loss of Control) in both samples of participants but only among individuals who began smoking early in life. The haplotypes were significantly associated with relapse likelihood and withdrawal severity, but these associations showed no evidence of an interaction with age at daily smoking. DISCUSSION: The CHRNA5-A3-B4 haplotypes are associated with a broad range of nicotine dependence phenotypes, but these associations are not consistently moderated by age at initial smoking.


Subject(s)
Behavior, Addictive/genetics , Nerve Tissue Proteins/genetics , Receptors, Nicotinic/genetics , Smoking/genetics , Tobacco Use Disorder/genetics , Adult , Aged , Female , Haplotypes , Humans , Male , Middle Aged , Phenotype , Polymorphism, Single Nucleotide , Risk Factors , Utah , Wisconsin
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