首页 | 本学科首页   官方微博 | 高级检索  
     


Noncompaction cardiomyopathy is caused by a novel in‐frame desmin (DES) deletion mutation within the 1A coiled‐coil rod segment leading to a severe filament assembly defect
Authors:Andrey V. Marakhonov  Andreas Brodehl  Roman P. Myasnikov  Peter A. Sparber  Anna V. Kiseleva  Olga V. Kulikova  Alexey N. Meshkov  Anastasia A. Zharikova  Serguey N. Koretsky  Maria S. Kharlap  Caroline Stanasiuk  Elena A. Mershina  Valentin E. Sinitsyn  Alexey O. Shevchenko  Natalia P. Mozheyko  Oksana M. Drapkina  Sergey A. Boytsov  Hendrik Milting  Mikhail Yu. Skoblov
Abstract:Mutations in DES, encoding desmin protein, are associated with different kinds of skeletal and/or cardiac myopathies. However, it is unknown, whether DES mutations are associated with left ventricular hypertrabeculation (LVHT). Here, we performed a clinical examination and subsequent genetic analysis in a family, with two individuals presenting LVHT with conduction disease and skeletal myopathy. The genetic analysis revealed a novel small in‐frame deletion within the DES gene, p.Q113_L115del, affecting the α‐helical rod domain. Immunohistochemistry analysis of explanted myocardial tissue from the index patient revealed an abnormal cytoplasmic accumulation of desmin and a degraded sarcomeric structure. Cell transfection experiments with wild‐type and mutant desmin verified the cytoplasmic aggregation and accumulation of mutant desmin. Cotransfection experiments were performed to model the heterozygous state of the patients and revealed a dominant negative effect of the mutant desmin on filament assembly. DES:p.Q113_L115del is classified as a pathogenic mutation associated with dilated cardiomyopathy with prominent LVHT.
Keywords:1A coiled‐coil rod segment  desmin  left ventricular noncompaction cardiomyopathy (LVNC)  small in‐frame deletion
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号