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   A mutation in the mitochondrial fission gene Dnm1l leads to cardiomyopathy  
   
نویسنده ashrafian h. ,docherty l. ,leo v. ,towlson c. ,neilan m. ,steeples v. ,lygate c.a. ,hough t. ,townsend s. ,williams d. ,wells s. ,norris d. ,glyn-jones s. ,land j. ,barbaric i. ,lalanne z. ,denny p. ,szumska d. ,bhattacharya s. ,griffin j.l. ,hargreaves i. ,fernandez-fuentes n. ,cheeseman m. ,watkins h. ,dear t.n.
منبع plos genetics - 2010 - دوره : 6 - شماره : 6 - صفحه:1 -18
چکیده    Mutations in a number of genes have been linked to inherited dilated cardiomyopathy (dcm). however,such mutations account for only a small proportion of the clinical cases emphasising the need for alternative discovery approaches to uncovering novel pathogenic mutations in hitherto unidentified pathways. accordingly,as part of a large-scale n-ethyl-nnitrosourea mutagenesis screen,we identified a mouse mutant,python,which develops dcm. we demonstrate that the python phenotype is attributable to a dominant fully penetrant mutation in the dynamin-1-like (dnm1l) gene,which has been shown to be critical for mitochondrial fission. the c452f mutation is in a highly conserved region of the m domain of dnm1l that alters protein interactions in a yeast two-hybrid system,suggesting that the mutation might alter intramolecular interactions within the dnm1l monomer. heterozygous python fibroblasts exhibit abnormal mitochondria and peroxisomes. homozygosity for the mutation results in the death of embryos midway though gestation. heterozygous python hearts show reduced levels of mitochondria enzyme complexes and suffer from cardiac atp depletion. the resulting energy deficiency may contribute to cardiomyopathy. this is the first demonstration that a defect in a gene involved in mitochondrial remodelling can result in cardiomyopathy,showing that the function of this gene is needed for the maintenance of normal cellular function in a relatively tissue-specific manner. this disease model attests to the importance of mitochondrial remodelling in the heart; similar defects might underlie human heart muscle disease. © 2010 ashrafian et al.
آدرس department of cardiovascular medicine and wellcome trust,centre for human genetics,university of oxford,oxford, United Kingdom, mammalian genetics of disease unit,school of medicine,university of sheffield,sheffield, United Kingdom, leeds institute of molecular medicine,wellcome trust brenner building,st. james's university hospital,leeds, United Kingdom, mammalian genetics of disease unit,school of medicine,university of sheffield,sheffield, United Kingdom, mammalian genetics of disease unit,school of medicine,university of sheffield,sheffield, United Kingdom, department of cardiovascular medicine and wellcome trust,centre for human genetics,university of oxford,oxford, United Kingdom, department of cardiovascular medicine and wellcome trust,centre for human genetics,university of oxford,oxford, United Kingdom, leeds institute of molecular medicine,wellcome trust brenner building,st. james's university hospital,leeds, United Kingdom, leeds institute of molecular medicine,wellcome trust brenner building,st. james's university hospital,leeds, United Kingdom, mary lyon centre and mammalian genetics unit,medical research council,harwell, United Kingdom, mary lyon centre and mammalian genetics unit,medical research council,harwell, United Kingdom, mary lyon centre and mammalian genetics unit,medical research council,harwell, United Kingdom, department of biochemistry,university of cambridge,cambridge, United Kingdom, neurometabolic unit,national hospital,london, United Kingdom, department of biomedical science,university of sheffield,sheffield, United Kingdom, mary lyon centre and mammalian genetics unit,medical research council,harwell, United Kingdom, mary lyon centre and mammalian genetics unit,medical research council,harwell, United Kingdom, department of cardiovascular medicine and wellcome trust,centre for human genetics,university of oxford,oxford, United Kingdom, department of cardiovascular medicine and wellcome trust,centre for human genetics,university of oxford,oxford, United Kingdom, department of biochemistry,university of cambridge,cambridge, United Kingdom, neurometabolic unit,national hospital,london, United Kingdom, leeds institute of molecular medicine,wellcome trust brenner building,st. james's university hospital,leeds, United Kingdom, mary lyon centre and mammalian genetics unit,medical research council,harwell, United Kingdom, department of cardiovascular medicine and wellcome trust,centre for human genetics,university of oxford,oxford, United Kingdom, mammalian genetics of disease unit,school of medicine,university of sheffield,sheffield,united kingdom,leeds institute of molecular medicine,wellcome trust brenner building,st. james's university hospital,leeds,united kingdom,mary lyon centre and mammalian genetics unit,medical research council,harwell, United Kingdom
 
     
   
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