Mutations in the skeletal muscle α-actin gene in patients with actin myopathy and nemaline myopathy

丝状体肌病 错义突变 肌动蛋白 生物 肌丝 肌球蛋白 肌病 骨骼肌 MYH7 遗传学 先天性肌病 突变 内科学 基因 内分泌学 细胞生物学 肌球蛋白轻链激酶 医学 肌肉活检 活检
作者
Kristen J. Nowak,Duangrurdee Wattanasirichaigoon,Hans H. Goebel,Matthew C.J. Wilce,Katarina Pelin,Kati Donner,R. Jacob,Christoph Hübner,Konrad Oexle,Janice R. Anderson,Christopher M. Verity,Kathryn N. North,Susan T. Iannaccone,Clemens R. Müller,Peter Nürnberg,Francesco Muntoni,Caroline Sewry,Imelda Hughes,Rebecca Sutphen,Atilano Lacson,Kathryn J. Swoboda,Jaqueline Vigneron,Carina Wallgren-Pettersson,Alan H. Beggs,Nigel G. Laing
出处
期刊:Nature Genetics [Nature Portfolio]
卷期号:23 (2): 208-212 被引量:354
标识
DOI:10.1038/13837
摘要

Muscle contraction results from the force generated between the thin filament protein actin and the thick filament protein myosin, which causes the thick and thin muscle filaments to slide past each other. There are skeletal muscle, cardiac muscle, smooth muscle and non-muscle isoforms of both actin and myosin. Inherited diseases in humans have been associated with defects in cardiac actin (dilated cardiomyopathy and hypertrophic cardiomyopathy), cardiac myosin (hypertrophic cardiomyopathy) and non-muscle myosin (deafness). Here we report that mutations in the human skeletal muscle alpha-actin gene (ACTA1) are associated with two different muscle diseases, 'congenital myopathy with excess of thin myofilaments' (actin myopathy) and nemaline myopathy. Both diseases are characterized by structural abnormalities of the muscle fibres and variable degrees of muscle weakness. We have identified 15 different missense mutations resulting in 14 different amino acid changes. The missense mutations in ACTA1 are distributed throughout all six coding exons, and some involve known functional domains of actin. Approximately half of the patients died within their first year, but two female patients have survived into their thirties and have children. We identified dominant mutations in all but 1 of 14 families, with the missense mutations being single and heterozygous. The only family showing dominant inheritance comprised a 33-year-old affected mother and her two affected and two unaffected children. In another family, the clinically unaffected father is a somatic mosaic for the mutation seen in both of his affected children. We identified recessive mutations in one family in which the two affected siblings had heterozygous mutations in two different exons, one paternally and the other maternally inherited. We also identified de novo mutations in seven sporadic probands for which it was possible to analyse parental DNA.

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