On noxious desmin:: functional effects of a novel heterozygous desmin insertion mutation on the extrasarcomeric desmin cytoskeleton and mitochondria

被引:82
作者
Schröder, R
Goudeau, B
Simon, MC
Fischer, D
Eggermann, T
Clemen, CS
Li, ZL
Reimann, J
Xue, ZG
Rudnik-Schöneborn, S
Zerres, K
van der Ven, PFM
Fürst, DO
Kunz, WS
Vicart, P
机构
[1] Univ Hosp Bonn, Dept Neurol, D-53105 Bonn, Germany
[2] Univ Paris 06, Lab Cytosquelette & Dev, Paris, France
[3] Rhein Westfal TH Aachen, Inst Human Genet, D-52057 Aachen, Germany
[4] Univ Cologne, Fac Med, Ctr Biochem 1, D-50931 Cologne, Germany
[5] Univ Paris 07, Paris, France
[6] Univ Potsdam, Dept Cell Biol, D-14471 Potsdam, Germany
[7] Univ Hosp Bonn, Dept Epileptol, D-53105 Bonn, Germany
关键词
D O I
10.1093/hmg/ddg060
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Recent studies in desmin (-/-) mice have shown that the targeted ablation of desmin leads to pathological changes of the extrasarcomeric intermediate filament cytoskeleton, as well as structural and functional abnormalities of mitochondria in striated muscle. Here, we report on a novel heterozygous single adenine insertion mutation (c.5141(-)5143insA) in a 40-year-old patient with a distal myopathy. The insertion mutation leads to a frameshift and a truncated desmin (K239fs242). Using transfection studies in SW13 and BHK21 cells, we show that the K239fsX242 desmin mutant is incapable of forming a desmin intermediate filament network. Furthermore, it induces the collapse of a pre-existing desmin cytoskeleton, alters the subcellular distribution of mitochondria and leads to abnormal cytoplasmic protein aggregates reminiscent of desminimmunoreactive granulofilamentous material seen in the ultrastructural analysis of the patient's muscle. Analysis of mitochondrial function in isolated saponin-permeablized skeletal muscle fibres from our patient showed decreased maximal rates of respiration with the NAD-dependent substrate combination glutamate and malate, as well as a higher amytal sensitivity of respiration, indicating an in vivo inhibition of complex I activity. Our findings suggest that the heterozygous K239fsX242 desmin insertion mutation has a dominant negative effect on the polymerization process of desmin intermediate filaments and affects not only the subcellular distribution, but also biochemical properties of mitochondria in diseased human skeletal muscle. As a consequence, the intermediate filament pathology-induced mitochondrial dysfunction may contribute to the degeneration/regeneration process leading to progressive muscle dysfunction in human desminopathies.
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页码:657 / 669
页数:13
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