Biochemistry and Biophysics Reports (Dec 2024)

MYH7, c.2011C>T, is responsible for congenital scoliosis in a Chinese family

  • Ping Wei,
  • Fulong Xu,
  • Caixia Xian,
  • Yanhan Liu,
  • Yibo Xu,
  • Ting Zhang,
  • Weizhe Shi,
  • Sihong Huang,
  • Xiang Zhou,
  • Mingwei Zhu,
  • Hongwen Xu

Journal volume & issue
Vol. 40
p. 101845

Abstract

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Neuromuscular scoliosis can be caused by muscular or nervous system dysfunction resulting from genetic variants. Variation in MYH7 may cause hypertrophic or dilated cardiomyopathy, skeletal myopathies, or a combination of both; however, scoliosis has rarely been reported. We analyzed a Chinese pedigree with two members suffering from scoliosis. Whole-exome sequencing identified a variant (NM_000257.4:c.2011C > T) of MYH7 that cosegregated with the scoliosis phenotype. The variant resulted in a change in the evolutionarily conserved amino acid residue 671 from arginine to cystine (p.R671C), which was predicted to disrupt the structure and function of the motor domain of the slow/β-cardiac myosin heavy chain encoded by MYH7. To date, 913 MYH7 variants were associated with cardiomyopathy and/or skeletal myopathies according to the Human Gene Mutation Database. However, only 15 cases of scoliosis have been reported. In our case, the c.2011C > T variant caused scoliosis with 100 % penetrance and hypertrophic cardiomyopathy with partial penetrance.

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