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1.
BMC Genomics ; 15: 798, 2014 Sep 17.
Article in English | MEDLINE | ID: mdl-25227120

ABSTRACT

BACKGROUND: MicroRNAs (miRNAs) are an abundant class of small single-stranded non-coding RNA molecules ranging from 18 to 24 nucleotides. They negatively regulate gene expression at the post-transcriptional level and play key roles in many biological processes, including skeletal development and cartilage maturation. In addition, miRNAs involvement in osteoarticular diseases has been proved and some of them were identified as suitable biomarkers for pathological conditions. Equine osteochondrosis (OC) is one of the most prevalent juvenile osteoarticular disorders in horses and represents a major concern for animal welfare and economic reasons. Its etiology and pathology remain controversial and biological pathways as well as molecular mechanisms involved in the physiopathology are still unclear. This study aims to investigate the potential role of miRNAs in equine osteochondrosis (OC) physiopathology.Short-read NGS technology (SOLID™, Life Technologies) was used to establish a comprehensive repertoire of miRNA expressed in either equine cartilage or subchondral bone. Undamaged cartilage and subchondral bone samples from healthy (healthy samples) and OC-affected (predisposed samples) 10-month Anglo-Arabian foals were analysed. Samples were also subjected or not to an experimental mechanical loading to evaluate the role of miRNAs in the regulation of mechano-transduction pathways. Predicted targets of annotated miRNAs were identified using miRmap. RESULTS: Epiphyseal cartilage and subchondral bone miRNome were defined, including about 300 new miRNAs. Differentially expressed miRNAs were identified between bone and cartilage from healthy and OC foals, as well as after an experimental mechanical loading. In cartilage, functional annotation of their predicted targets suggests a role in the maintenance of cartilage integrity through the control of cell cycle and differentiation, energy production and metabolism as well as extracellular matrix structure and dynamics. In bone, miRNA predicited targets were associated with osteoblasts and osteoclasts differentiation, though the regulation of energy production, vesicle transport and some growth factor signaling pathways. CONCLUSION: Taken together, our results suggest a role of miRNAs in equine OC physiopathology and in the cellular response to biomechanical stress in cartilage and bone. In silico target prediction and functional enrichment analysis provides new insight into OC molecular physiopathology.


Subject(s)
Bone and Bones/metabolism , Cartilage/metabolism , High-Throughput Nucleotide Sequencing , Horse Diseases/genetics , Horses/genetics , MicroRNAs/genetics , Osteochondrosis/genetics , Animals , Biomechanical Phenomena , Bone and Bones/physiopathology , Cartilage/physiopathology , Horse Diseases/physiopathology , Molecular Sequence Annotation , Osteochondrosis/physiopathology , Sequence Analysis, RNA , Weight-Bearing
2.
Exp Mol Pathol ; 96(3): 328-38, 2014 Jun.
Article in English | MEDLINE | ID: mdl-24657499

ABSTRACT

Osteochondrosis (OC) is a developmental bone disorder affecting several mammalian species including the horse. Equine OC is described as a focal disruption of endochondral ossification, leading to osteochondral lesions (osteochondritis dissecans, OCD) that may release free bodies within the joint. OCD lesions trigger joint swelling, stiffness and lameness and affects about 30% of the equine population. OCD is considered as multifactorial but its physiopathology is still poorly understood and genes involved in genetic predisposition are still unknown. Our study compared two healthy and two OC-affected 18-month-old French Trotters diagnosed with OCD lesions at the intermediate ridge of the distal tibia. A comparative shot-gun proteomic analysis of non-wounded cartilage and sub-chondral bone from healthy (healthy samples) and OC-affected foals (predisposed samples) identified 83 and 53 modulated proteins, respectively. These proteins are involved in various biological pathways including matrix structure and maintenance, protein biosynthesis, folding and transport, mitochondrial activity, energy and calcium metabolism. Transmission electron microscopy revealed typical features of mitochondrial swelling and ER-stress, such as large, empty mitochondria, and hyper-dilated rough endoplasmic reticulum, in the deep zone of both OC lesions and predisposed cartilage. Abnormal fibril organization surrounding chondrocytes and abnormal features at the ossification front were also observed. Combining these findings with quantitative trait loci and whole genome sequencing results identified about 140 functional candidate genes carrying putative damaging mutations in 30 QTL regions. In summary, our study suggests that OCD lesions may result from defective hypertrophic terminal differentiation associated with mitochondrial dysfunction and ER-stress, leading to impaired cartilage and bone biomechanical properties, making them prone to fractures. In addition, 11 modulated proteins and several candidate mutations located in QTL regions were identified, bringing new insight into the molecular physiopathology and genetic basis of OCD.


Subject(s)
Endoplasmic Reticulum Stress , Mitochondria/pathology , Osteochondritis Dissecans/physiopathology , Osteochondritis Dissecans/veterinary , Animals , Cartilage/physiopathology , Cartilage/ultrastructure , Chondrocytes/pathology , Chondrocytes/ultrastructure , Horses , Joints/physiopathology , Joints/ultrastructure , Microscopy, Electron, Transmission , Mitochondria/ultrastructure , Osteochondritis Dissecans/genetics , Osteogenesis , Proteomics , Quantitative Trait Loci , Tibia/physiopathology , Tibia/ultrastructure
3.
Cell Stress Chaperones ; 15(4): 343-9, 2010 Jul.
Article in English | MEDLINE | ID: mdl-19838832

ABSTRACT

Susceptibility to scrapie is mainly controlled by point mutations at the PRNP locus. However, additional quantitative trait loci (QTL) have been identified across the genome including a region in OAR18. The gene which encodes the inducible form of the cytoplasmic Hsp90 chaperone (HSP90AA1) maps within this region and seems to be associated with the resistance/susceptibility to scrapie in sheep. Here, we have analyzed several polymorphisms which were previously described in the ovine HSP90AA1 5' flanking region and in intron 10 in two naturally scrapie infected Romanov sheep populations. First, we have studied 58 ARQ/VRQ animals pertaining to the sire family where the QTL influencing scrapie incubation period in OAR18 was detected. We have found a significant association between polymorphisms localized at -660 and -528 in the HSP90AA1 5' flanking region and the scrapie incubation period. These two polymorphisms have also been studied in a second sample constituted by 62 VRQ/VRQ sheep showing an extreme incubation period. Results are concordant with the first dataset. Finally, we have studied the HSP90AA1 expression in scrapie and control animals (N = 41) with different HSP90AA1 genotypes by real time PCR on blood samples. The HSP90AA1 expression rate was equivalent in CC(-600)AA(-528) and CG(-600)AG(-528) scrapie resistant animals (ARR/ARR) and was higher in their CC(-600)AA(-528) than in their CG(-600)AG(-528) scrapie susceptible counterparts (VRQ/VRQ). Our results support the hypothesis that the ovine HSP90AA1 gene acts as a modulator of scrapie susceptibility, contributing to the observed differences in the incubation period of scrapie infected animals with the same PRNP genotype.


Subject(s)
HSP90 Heat-Shock Proteins/genetics , Polymorphism, Genetic , Scrapie/genetics , 5' Flanking Region , Animals , Genetic Predisposition to Disease , Genotype , Introns , Quantitative Trait Loci , Sheep
4.
FEBS Lett ; 583(19): 3296-300, 2009 Oct 06.
Article in English | MEDLINE | ID: mdl-19766638

ABSTRACT

The prion protein PrP has a key role in transmissible spongiform encephalopathies but its biological function remains largely unknown. Recently, a related protein, Shadoo, was discovered. Its biological properties and brain distribution partially overlap that of PrP. We report that the Shadoo-encoding gene knockdown in PrP-knockout mouse embryos results in a lethal phenotype, occurring between E8 and E11, not observed on the wild-type genetic background. It reveals that these two proteins play a shared, crucial role in mammalian embryogenesis, explaining the lack of severe phenotype in PrP-knockout mammals, an appreciable step towards deciphering the biological role of this protein family.


Subject(s)
Embryonic Development/genetics , Genes, Lethal , Nerve Tissue Proteins/metabolism , Prions/metabolism , Animals , Down-Regulation , GPI-Linked Proteins , Gene Knockdown Techniques , Lentivirus , Mice , Mice, Knockout , Nerve Tissue Proteins/genetics , Prions/genetics
5.
BMC Genomics ; 7: 194, 2006 Aug 01.
Article in English | MEDLINE | ID: mdl-16882342

ABSTRACT

BACKGROUND: Comparative mapping provides new insights into the evolutionary history of genomes. In particular, recent studies in mammals have suggested a role for segmental duplication in genome evolution. In some species such as Drosophila or maize, transposable elements (TEs) have been shown to be involved in chromosomal rearrangements. In this work, we have explored the presence of interspersed repeats in regions of chromosomal rearrangements, using an updated high-resolution integrated comparative map among cattle, man and mouse. RESULTS: The bovine, human and mouse comparative autosomal map has been constructed using data from bovine genetic and physical maps and from FISH-mapping studies. We confirm most previous results but also reveal some discrepancies. A total of 211 conserved segments have been identified between cattle and man, of which 33 are new segments and 72 correspond to extended, previously known segments. The resulting map covers 91% and 90% of the human and bovine genomes, respectively. Analysis of breakpoint regions revealed a high density of species-specific interspersed repeats in the human and mouse genomes. CONCLUSION: Analysis of the breakpoint regions has revealed specific repeat density patterns, suggesting that TEs may have played a significant role in chromosome evolution and genome plasticity. However, we cannot rule out that repeats and breakpoints accumulate independently in the few same regions where modifications are better tolerated. Likewise, we cannot ascertain whether increased TE density is the cause or the consequence of chromosome rearrangements. Nevertheless, the identification of high density repeat clusters combined with a well-documented repeat phylogeny should highlight probable breakpoints, and permit their precise dating. Combining new statistical models taking the present information into account should help reconstruct ancestral karyotypes.


Subject(s)
Chromosome Mapping/methods , Evolution, Molecular , Genome/genetics , Animals , Cattle , Chromosome Breakage , Humans , Mice , Repetitive Sequences, Nucleic Acid , Translocation, Genetic
6.
Genet Sel Evol ; 37 Suppl 1: S55-64, 2005.
Article in English | MEDLINE | ID: mdl-15601595

ABSTRACT

In goats, the PIS (polled intersex syndrome) mutation is responsible for both the absence of horns in males and females and sex-reversal affecting exclusively XX individuals. The mode of inheritance is dominant for the polled trait and recessive for sex-reversal. In XX PIS-/- mutants, the expression of testis-specific genes is observed very precociously during gonad development. Nevertheless, a delay of 4-5 days is observed in comparison with normal testis differentiation in XY males. By positional cloning, we demonstrate that the PIS mutation is an 11.7-kb regulatory-deletion affecting the expression of two genes, PISRT1 and FOXL2 which could act synergistically to promote ovarian differentiation. The transcriptional extinction of these two genes leads, very early, to testis-formation in XX homozygous PIS-/- mutants. According to their expression profiles and bibliographic data, we propose that FOXL2 may be an ovary-differentiating gene, and the non-coding RNA PISRT1, an anti-testis factor repressing SOX9, a key regulator of testis differentiation. Under this hypothesis, SRY, the testis-determining factor would inhibit these two genes in the gonads of XY males, to ensure testis differentiation.


Subject(s)
Gene Expression Regulation, Developmental/genetics , Genetic Linkage , Goats/genetics , Mutation/genetics , Sex Differentiation/genetics , Animals , Chromosomes, Artificial, Bacterial , DNA-Binding Proteins/genetics , DNA-Binding Proteins/metabolism , Disorders of Sex Development , Female , Goats/embryology , High Mobility Group Proteins/metabolism , Male , Ovary/embryology , Regulatory Sequences, Nucleic Acid/genetics , SOX9 Transcription Factor , Testis/embryology , Transcription Factors/genetics , Transcription Factors/metabolism
7.
Genet Sel Evol ; 36(1): 105-22, 2004.
Article in English | MEDLINE | ID: mdl-14713413

ABSTRACT

A first generation clone-based physical map for the bovine genome was constructed combining, fluorescent double digestion fingerprinting and sequence tagged site (STS) marker screening. The BAC clones were selected from an Inra BAC library (105,984 clones) and a part of the CHORI-240 BAC library (26,500 clones). The contigs were anchored using the screening information for a total of 1303 markers (451 microsatellites, 471 genes, 127 EST, and 254 BAC ends). The final map, which consists of 6615 contigs assembled from 100,923 clones, will be a valuable tool for genomic research in ruminants, including targeted marker production, positional cloning or targeted sequencing of regions of specific interest.


Subject(s)
Cattle/genetics , Chromosomes, Artificial, Bacterial , Physical Chromosome Mapping , Animals , DNA Fingerprinting , Genetic Markers , Genome , Polymerase Chain Reaction , Sequence Tagged Sites
8.
Chromosome Res ; 10(5): 369-78, 2002.
Article in English | MEDLINE | ID: mdl-12296519

ABSTRACT

A chromosome region involved in scrapie incubation time was identified on sheep chromosome 18 (OAR18). Since OAR18 (and OAR7) share conserved chromosome segments with human chromosomes HSA14 and HSA15, a dense map of type I markers was constructed by FISH mapping of bacterial artificial chromosomes containing genes located on these human chromosomes. In this study, we used the complete human sequence information (gene positions in megabases, Mb) to locate approximately one gene every 2 Mb on HSA15 (19 genes mapped between 19.51 and 66.02 Mb) and on HSA14 (11 genes between 73.24 and 102.62 Mb). Combined with previous work carried out in cattle and goats, our results made it possible to refine the comparative map between ruminants and humans for these two highly rearranged chromosomes (10 segments on HSA15 and 7 on HSA14). Furthermore, we identified relatively short intervals containing evolutionary breakpoints, which is a prerequisite to position them precisely. This work is also the first step in the cloning of the region involved in scrapie incubation period in sheep.


Subject(s)
Chromosomes, Human, Pair 14 , Chromosomes, Human, Pair 15 , Gene Rearrangement , Ruminants/genetics , Scrapie/genetics , Animals , Cattle , Chromosome Mapping , Chromosomes , Chromosomes, Bacterial , Cloning, Molecular , Humans , In Situ Hybridization, Fluorescence , Physical Chromosome Mapping/veterinary , Sheep
9.
Dev Dyn ; 224(1): 39-50, 2002 May.
Article in English | MEDLINE | ID: mdl-11984872

ABSTRACT

The association of polledness and intersexuality in domestic goats (PIS mutation) made them a practical genetic model for studying mammalian female-to-male sex reversal. In this study, gonads from XX sex-reversed goats (PIS-/-) were thoroughly characterized at the molecular and histologic level from the first steps of gonadal differentiation (36 days post coitum [dpc]) to birth. The first histologic signs of gonadal sex reversal were detectable between 36 and 40 dpc (4-5 days later than the XY male) and were mainly characterized by the reduction of the ovarian cortex and the organization of seminiferous cords. As early as 36 dpc, aromatase (CYP19) gene expression was decreased in XX (PIS-/-) gonads, whereas genes normally up-regulated in males, such as SOX9 and AMH, showed an increased expression level from 40 dpc. Thereafter, steroidogenic cell precursors were affected, and at 56 dpc, WNT4 and 3beta-HSD were expressed in a male-specific manner in sex-reversed gonads. Another noticeable feature was a progressive disappearance of germ cells, clearly visible in testicular cords around 70 dpc where 50-75% of germ cells were absent in XX (PIS-/-) gonads. These observations indicated that the causal mutation of PIS acts very early in the sex-determining cascade and affects primarily the supporting cells of the gonad.


Subject(s)
Disorders of Sex Development , Glycoproteins , Goats/genetics , Gonads/physiology , Sex Differentiation/physiology , Animals , Anti-Mullerian Hormone , Female , Genitalia/anatomy & histology , Genotype , Goats/physiology , Gonads/cytology , Growth Inhibitors/metabolism , Humans , Male , Phenotype , Testicular Hormones/metabolism
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