Dr. John T. Macdonald Foundation Department of Human Genetics, University of Miami, Miami, Florida.
Hussman Institute for Human Genomics, University of Miami, Miami, Florida.
Hum Mutat. 2018 May;39(5):635-642. doi: 10.1002/humu.23412. Epub 2018 Mar 14.
Charcot-Marie-Tooth disease (CMT) is an umbrella term for inherited neuropathies affecting an estimated one in 2,500 people. Over 120 CMT and related genes have been identified and clinical gene panels often contain more than 100 genes. Such a large genomic space will invariantly yield variants of uncertain clinical significance (VUS) in nearly any person tested. This rise in number of VUS creates major challenges for genetic counseling. Additionally, fewer individual variants in known genes are being published as the academic merit is decreasing, and most testing now happens in clinical laboratories, which typically do not correlate their variants with clinical phenotypes. For CMT, we aim to encourage and facilitate the global capture of variant data to gain a large collection of alleles in CMT genes, ideally in conjunction with phenotypic information. The Inherited Neuropathy Variant Browser provides user-friendly open access to currently reported variation in CMT genes. Geneticists, physicians, and genetic counselors can enter variants detected by clinical tests or in research studies in addition to genetic variation gathered from published literature, which are then submitted to ClinVar biannually. Active participation of the broader CMT community will provide an advance over existing resources for interpretation of CMT genetic variation.
Charcot-Marie-Tooth 病 (CMT) 是一组影响约每 2500 人中 1 人的遗传性周围神经病的统称。已经确定了超过 120 种 CMT 和相关基因,并且临床基因组合通常包含 100 多种基因。如此大的基因组空间不可避免地会在几乎所有接受测试的人中产生具有不确定临床意义的变异体 (VUS)。VUS 数量的增加给遗传咨询带来了重大挑战。此外,随着学术价值的降低,已知基因中的个体变异体的发表数量减少,并且现在大多数测试都是在临床实验室进行的,这些实验室通常不会将其变体与临床表型相关联。对于 CMT,我们旨在鼓励和促进全球捕获变体数据,以获得 CMT 基因中的大量等位基因,理想情况下与表型信息一起获得。遗传性神经病变异体浏览器为 CMT 基因中的当前报告变异提供了用户友好的开放访问。遗传学家、医生和遗传咨询师可以输入临床测试或研究中检测到的变体,以及从已发表文献中收集的遗传变异,然后每两年向 ClinVar 提交一次。更广泛的 CMT 社区的积极参与将为解释 CMT 遗传变异提供比现有资源更好的方法。