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1.
Autophagy Rep ; 3(1)2024.
Artigo em Inglês | MEDLINE | ID: mdl-39070663

RESUMO

Autophagy is important for many physiological processes; and disordered autophagy can contribute to the pathogenesis of a broad range of systemic disorders. C. elegans is a useful model organism for studying the genetics of autophagy, however, current methods for studying autophagy are labor-intensive and not readily amenable to high-throughput procedures. Here we describe a fluorescent reporter, GFP::LGG-1::mKate2, which is useful for monitoring autophagic flux in live animals. In the intestine, the fusion protein is processed by endogenous ATG-4 to generate GFP::LGG-1 and mKate2 proteins. We provide data indicating that the GFP:mKate ratio is a suitable readout for measuring cellular autophagic flux. Using this reporter, we measured autophagic flux in L1 larvae to day 7 adult animals. We show that basal autophagic flux is relatively low during larval development but increases markedly in reproductive adults before decreasing with age. Furthermore, we show that wild-type, eat-2, and daf-2 mutant animals have distinct autophagic flux profiles through post-embryonic development. Finally, we demonstrate the utility of this reporter by performing a high-content small molecule screen to identify compounds that alter autophagic flux in C. elegans.

2.
Genes (Basel) ; 12(9)2021 08 31.
Artigo em Inglês | MEDLINE | ID: mdl-34573350

RESUMO

In newborns, severe congenital heart defects are rarer than mild ones. This epidemiological relationship between heart defect severity and incidence lacks explanation. Here, an analysis of ~10,000 Nkx2-5+/- mice from two inbred strain crosses illustrates the fundamental role of epistasis. Modifier genes raise or lower the risk of specific defects via pairwise (G×GNkx) and higher-order (G×G×GNkx) interactions with Nkx2-5. Their effect sizes correlate with the severity of a defect. The risk loci for mild, atrial septal defects exert predominantly small G×GNkx effects, while the loci for severe, atrioventricular septal defects exert large G×GNkx and G×G×GNkx effects. The loci for moderately severe ventricular septal defects have intermediate effects. Interestingly, G×G×GNkx effects are three times more likely to suppress risk when the genotypes at the first two loci are from the same rather than different parental inbred strains. This suggests the genetic coadaptation of interacting G×G×GNkx loci, a phenomenon that Dobzhansky first described in Drosophila. Thus, epistasis plays dual roles in the pathogenesis of congenital heart disease and the robustness of cardiac development. The empirical results suggest a relationship between the fitness cost and genetic architecture of a disease phenotype and a means for phenotypic robustness to have evolved.


Assuntos
Aptidão Genética , Comunicação Interatrial/genética , Comunicação Interventricular/genética , Defeitos dos Septos Cardíacos/genética , Proteína Homeobox Nkx-2.5/genética , Animais , Animais Recém-Nascidos , Modelos Animais de Doenças , Feminino , Loci Gênicos , Defeitos dos Septos Cardíacos/diagnóstico , Comunicação Interatrial/diagnóstico , Comunicação Interventricular/diagnóstico , Humanos , Masculino , Camundongos , Camundongos Transgênicos , Índice de Gravidade de Doença
3.
Sci Rep ; 7: 46438, 2017 04 13.
Artigo em Inglês | MEDLINE | ID: mdl-28406175

RESUMO

The muscular ventricular septum separates the flow of oxygenated and de-oxygenated blood in air-breathing vertebrates. Defects within it, termed muscular ventricular septal defects (VSDs), are common, yet less is known about how they arise than rarer heart defects. Mutations of the cardiac transcription factor NKX2-5 cause cardiac malformations, including muscular VSDs. We describe here a genetic interaction between Nkx2-5 and Sarcospan (Sspn) that affects the risk of muscular VSD in mice. Sspn encodes a protein in the dystrophin-glycoprotein complex. Sspn knockout (SspnKO) mice do not have heart defects, but Nkx2-5+/-/SspnKO mutants have a higher incidence of muscular VSD than Nkx2-5+/- mice. Myofibers in the ventricular septum follow a stereotypical pattern that is disrupted around a muscular VSD. Subendocardial myofibers normally run in parallel along the left ventricular outflow tract, but in the Nkx2-5+/-/SspnKO mutant they commonly deviate into the septum even in the absence of a muscular VSD. Thus, Nkx2-5 and Sspn act in a pathway that affects the alignment of myofibers during the development of the ventricular septum. The malalignment may be a consequence of a defect in the coalescence of trabeculae into the developing ventricular septum, which has been hypothesized to be the mechanistic basis of muscular VSDs.


Assuntos
Proteínas de Transporte/genética , Técnicas de Inativação de Genes , Comunicação Interventricular/genética , Proteína Homeobox Nkx-2.5/genética , Proteínas de Membrana/genética , Mutação , Proteínas de Neoplasias/genética , Animais , Proteínas de Transporte/química , Modelos Animais de Doenças , Comunicação Interventricular/epidemiologia , Comunicação Interventricular/patologia , Humanos , Incidência , Proteínas de Membrana/química , Camundongos , Miócitos Cardíacos/patologia , Proteínas de Neoplasias/química
4.
Mol Cell Endocrinol ; 435: 94-102, 2016 11 05.
Artigo em Inglês | MEDLINE | ID: mdl-27555292

RESUMO

Despite decades of progress, congenital heart disease remains a major cause of mortality and suffering in children and young adults. Prevention would be ideal, but formidable biological and technical hurdles face any intervention that seeks to target the main causes, genetic mutations in the embryo. Other factors, however, significantly modify the total risk in individuals who carry mutations. Investigation of these factors could lead to an alternative approach to prevention. To define the risk modifiers, our group has taken an "experimental epidemiologic" approach via inbred mouse strain crosses. The original intent was to map genes that modify an individual's risk of heart defects caused by an Nkx2-5 mutation. During the analysis of >2000 Nkx2-5(+/-) offspring from one cross we serendipitously discovered a maternal-age associated risk, which also exists in humans. Reciprocal ovarian transplants between young and old mothers indicate that the incidence of heart defects correlates with the age of the mother and not the oocyte, which implicates a maternal pathway as the basis of the risk. The quantitative risk varies between strain backgrounds, so maternal genetic polymorphisms determine the activity of a factor or factors in the pathway. Most strikingly, voluntary exercise by the mother mitigates the risk. Therefore, congenital heart disease can in principle be prevented by targeting a maternal pathway even if the embryo carries a causative mutation. Further mechanistic insight is necessary to develop an intervention that could be implemented on a broad scale, but the physiology of maternal-fetal interactions, aging, and exercise are notoriously complex and undefined. This suggests that an unbiased genetic approach would most efficiently lead to the relevant pathway. A genetic foundation would lay the groundwork for human studies and clinical trials.


Assuntos
Modelos Animais de Doenças , Predisposição Genética para Doença , Cardiopatias Congênitas/etiologia , Cardiopatias Congênitas/prevenção & controle , Idade Materna , Polimorfismo de Nucleotídeo Único , Complicações na Gravidez/genética , Animais , Exercício Físico , Feminino , Cardiopatias Congênitas/genética , Humanos , Camundongos , Gravidez , Fatores de Risco
5.
Nature ; 520(7546): 230-3, 2015 Apr 09.
Artigo em Inglês | MEDLINE | ID: mdl-25830876

RESUMO

Maternal age is a risk factor for congenital heart disease even in the absence of any chromosomal abnormality in the newborn. Whether the basis of this risk resides with the mother or oocyte is unknown. The impact of maternal age on congenital heart disease can be modelled in mouse pups that harbour a mutation of the cardiac transcription factor gene Nkx2-5 (ref. 8). Here, reciprocal ovarian transplants between young and old mothers establish a maternal basis for the age-associated risk in mice. A high-fat diet does not accelerate the effect of maternal ageing, so hyperglycaemia and obesity do not simply explain the mechanism. The age-associated risk varies with the mother's strain background, making it a quantitative genetic trait. Most remarkably, voluntary exercise, whether begun by mothers at a young age or later in life, can mitigate the risk when they are older. Thus, even when the offspring carry a causal mutation, an intervention aimed at the mother can meaningfully reduce their risk of congenital heart disease.


Assuntos
Envelhecimento/fisiologia , Cardiopatias/congênito , Cardiopatias/prevenção & controle , Idade Materna , Condicionamento Físico Animal/fisiologia , Prenhez/fisiologia , Idade de Início , Envelhecimento/genética , Animais , Animais Recém-Nascidos , Dieta Hiperlipídica , Feminino , Predisposição Genética para Doença , Coração/fisiologia , Coração/fisiopatologia , Cardiopatias/etiologia , Cardiopatias/genética , Proteína Homeobox Nkx-2.5 , Proteínas de Homeodomínio/genética , Hiperglicemia , Camundongos , Obesidade , Ovário/transplante , Fenótipo , Gravidez , Prenhez/genética , Locos de Características Quantitativas/genética , Risco , Fatores de Transcrição/genética
6.
Circ Cardiovasc Genet ; 5(3): 293-300, 2012 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-22534315

RESUMO

BACKGROUND: The occurrence of a congenital heart defect has long been thought to have a multifactorial basis, but the evidence is indirect. Complex trait analysis could provide a more nuanced understanding of congenital heart disease. METHODS AND RESULTS: We assessed the role of genetic and environmental factors on the incidence of ventricular septal defects (VSDs) caused by a heterozygous Nkx2-5 knockout mutation. We phenotyped >3100 hearts from a second-generation intercross of the inbred mouse strains C57BL/6 and FVB/N. Genetic linkage analysis mapped loci with lod scores of 5 to 7 on chromosomes 6, 8, and 10 that influence the susceptibility to membranous VSDs in Nkx2-5(+/-) animals. The chromosome 6 locus overlaps one for muscular VSD susceptibility. Multiple logistic regression analysis for environmental variables revealed that maternal age is correlated with the risk of membranous and muscular VSD in Nkx2-5(+/-) but not wild-type animals. The maternal age effect is unrelated to aneuploidy or a genetic polymorphism in the affected individuals. The risk of a VSD is not only complex but dynamic. Whereas the effect of genetic modifiers on risk remains constant, the effect of maternal aging increases over time. CONCLUSIONS: Enumerable factors contribute to the presentation of a congenital heart defect. The factors that modify rather than cause congenital heart disease substantially affect risk in predisposed individuals. Their characterization in a mouse model offers the potential to narrow the search space in human studies and to develop alternative strategies for prevention.


Assuntos
Comunicação Interventricular/genética , Proteínas de Homeodomínio/genética , Fatores de Transcrição/genética , Aneuploidia , Animais , Variações do Número de Cópias de DNA , Feminino , Ligação Genética , Heterozigoto , Proteína Homeobox Nkx-2.5 , Proteínas de Homeodomínio/metabolismo , Modelos Logísticos , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Mutação , Polimorfismo Genético , Fatores de Risco , Fatores de Transcrição/deficiência , Fatores de Transcrição/metabolismo
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