Autosomal recessive Bethlem myopathy: A clinical, genetic and functional study

胶原VI 肌病 遗传学 肌肉挛缩 肌肉活检 复合杂合度 遗传异质性 表型 生物 医学 基因 病理 活检 解剖
作者
Filomena Caria,Matilde Cescon,Francesca Gualandi,Anna Pichiecchio,Rachele Rossi,Paola Rimessi,Stefano Cotti Piccinelli,Serena Gallo Cassarino,Di Gregorio,Anna Galvagni,Alessandra Ferlini,Alessandro Padovani,Paolo Bonaldo,Massimiliano Filosto
出处
期刊:Neuromuscular Disorders [Elsevier]
卷期号:29 (9): 657-663 被引量:12
标识
DOI:10.1016/j.nmd.2019.07.007
摘要

Bethlem myopathy represents the milder form of the spectrum of Collagen VI-related dystrophies, which are characterized by a clinical continuum between the two extremities, the Bethlem myopathy and the Ullrich congenital muscular dystrophy, and include less defined intermediate phenotypes. Bethlem myopathy is mainly an autosomal dominant disorder and the causing mutations occur in the COL6A genes encoding for the α1 (COL6A1), α2 (COL6A2) and α3 (COL6A3) chains. However, few cases of recessive inheritance have been also reported. We here describe clinical, genetic and functional findings in a recessive Bethlem myopathy family harbouring two novel pathogenic mutations in the COL6A2 gene. Two adult siblings presented with muscle weakness and wasting, elbows and Achilles tendon retractions, lumbar hyperlordosis, waddling gait and positive Gowers' sign. Muscle biopsy showed a dystrophic pattern. Molecular analysis of the COL6A2 gene revealed the novel paternally-inherited nonsense p.Gln889* mutation and the maternally-inherited p.Pro260_Lys261insProPro small insertion. Fibroblast studies in both affected patients showed the concomitant reduction in the amount of normal Collagen VI (p.Gln889*) and impairment of Collagen VI secretion and assembly (p.Pro260_Lys261insProPro). Each of the two variants behave as a recessive mutation as shown by the asymptomatic heterozygous parents, while their concomitant effects determined a relatively mild Bethlem myopathy phenotype. This study confirms the occurrence of recessive inherited Bethlem myopathy and expands the genetic heterogeneity of this group of muscle diseases.

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