Thibodeau My Linh, Peters Colin H, Townsend Katelin N, Shen Yaoqing, Hendson Glenda, Adam Shelin, Selby Kathryn, Macleod Patrick M, Gershome Cynthia, Ruben Peter, Jones Steven J M, Friedman Jan M, Gibson William T, Horvath Gabriella A
Department of Medical Genetics, University of British Columbia, Vancouver, Canada.
Department of Biomedical Physiology and Kinesiology, Simon Fraser University, Burnaby, Canada.
Am J Med Genet A. 2017 Nov;173(11):3087-3092. doi: 10.1002/ajmg.a.38400. Epub 2017 Sep 12.
TRPV4 encodes a polymodal calcium-permeable plasma membrane channel. Dominant pathogenic mutations in TRPV4 lead to a wide spectrum of abnormal phenotypes. This is the first report of biallelic TRPV4 mutations and we describe two compound heterozygous siblings presenting with a complex phenotype including severe neuromuscular involvement. In light of previously well described dominant inheritance for TRPV4-related neuromuscular disease, our study suggests a role for compound heterozygosity and loss-of-function as a potential novel disease mechanism for this group of disorders. Profound intellectual disability was also noted in both affected children, suggesting that TRPV4 may be necessary for normal brain development.
TRPV4编码一种多模态钙通透性质膜通道。TRPV4中的显性致病突变会导致广泛的异常表型。这是关于双等位基因TRPV4突变的首次报告,我们描述了两个患有复杂表型(包括严重神经肌肉受累)的复合杂合子同胞。鉴于先前已充分描述的TRPV4相关神经肌肉疾病的显性遗传,我们的研究表明复合杂合性和功能丧失作为这组疾病潜在的新发病机制发挥了作用。两个受影响的儿童还均出现了严重智力残疾,这表明TRPV4可能是正常大脑发育所必需的。