Intrafamilial Phenotypic Variability of Collagen VI-Related Myopathy Due to a New Mutation in the COL6A1 Gene

Author:

Bardakov Sergey N.1,Deev Roman V.23,Magomedova Raisat M.4,Umakhanova Zoya R.4,Allamand Valérie5,Gartioux Corine5,Zulfugarov Kamil Z.4,Akhmedova Patimat G.4,Tsargush Vadim A.1,Titova Angelina A.6,Mavlikeev Mikhail O.3,Zorin Vadim L.2,Chernets Ekaterina N.3,Dalgatov Gimat D.7,Konovalov Fedor A.8,Isaev Artur A.2

Affiliation:

1. S.M. Kirov Military Medical Academy, St. Petersburg, Russia

2. Human Stem Cells Institute, Moscow, Russia

3. I.I. Mechnikov North-Western State Medical University, St. Petersburg, Russia

4. Dagestan State Medical Academy, Makhachkala, Russia

5. Sorbonne Université UPMC Paris 06 –Inserm UMRS974, Research Center in Myology, Hospital Pitié-Salpêtrière, Paris, France

6. Institute of Fundamental Medicine and Biology, Kazan (Volga Region) Federal University, Kazan, Russia

7. Scientific-Clinical Center of Otorhinolaryngology FMBA of Russia Moscow, Russia

8. Independent Clinical Bioinformatics Laboratory, Moscow, Russia

Abstract

A family of five male siblings (three survivors at 48, 53 and 58 years old; two deceased at 8 months old and 2.5 years old) demonstrating significant phenotypic variability ranging from intermediate to the myosclerotic like Bethlem myopathy is presented. Whole-exome sequencing (WES) identified a new homozygous missense mutation chr21:47402679 T > C in the canonical splice donor site of the second intron (c.227 + 2T>C) in the COL6A1 gene. mRNA analysis confirmed skipping of exon 2 encoding 925 amino-acids in 94–95% of resulting transcripts. Three sibs presented with intermediate phenotype of collagen VI-related dystrophies (48, 53 and 2.5 years old) while the fourth sibling (58 years old) was classified as Bethlem myopathy with spine rigidity. The two older siblings with the moderate progressive phenotype (48 and 53 years old) lost their ability to maintain a vertical posture caused by pronounced contractures of large joints, but continued to ambulate throughout life on fully bent legs without auxiliary means of support. Immunofluorescence analysis of dermal fibroblasts demonstrated that no type VI collagen was secreted in any of the siblings’ cells, regardless of clinical manifestations severity while fibroblast proliferation and colony formation ability was decreased. The detailed genetic and long term clinical data contribute to broadening the genotypic and phenotypic spectrum of COL6A1 related disease.

Publisher

IOS Press

Subject

Clinical Neurology,Neurology

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