College of Otolaryngology Head and Neck Surgery, Chinese PLA General Hospital, Chinese PLA Medical School, 28 Fuxing Road, Beijing, 100853, People's Republic of China.
National Clinical Research Center for Otolaryngologic Diseases, State Key Lab of Hearing Science, Ministry of Education, Beijing, People's Republic of China.
BMC Med Genomics. 2022 Nov 18;15(1):241. doi: 10.1186/s12920-022-01368-9.
Pathogenic variants in MYO15A are known to cause autosomal recessive nonsyndromic hearing loss (ARNSHL), DFNB3. We have previously reported on one ARNSHL family including two affected siblings and identified MYO15A c.5964+3G > A and c.8375 T > C (p.Val2792Ala) as the possible deafness-causing variants. Eight year follow up identified one new affected individual in this family, who also showed congenital, severe to profound sensorineural hearing loss. By whole exome sequencing, we identified a new splice-site variant c.5531+1G > C (maternal allele), in a compound heterozygote with previously identified missense variant c.8375 T > C (p.Val2792Ala) (paternal allele) in MYO15A as the disease-causing variants. The new affected individual underwent unilateral cochlear implantation at the age of 1 year, and 5 year follow-up showed satisfactory speech and language outcomes. Our results further indicate that MYO15A-associated hearing loss is good candidates for cochlear implantation, which is in accordance with previous report. In light of our findings and review of the literatures, 58 splice-site variants in MYO15A are correlated with a severe deafness phenotype, composed of 46 canonical splice-site variants and 12 non-canonical splice-site variants.
已知 MYO15A 中的致病性变异可导致常染色体隐性非综合征性听力损失(ARNSHL),DFNB3。我们之前曾报道过一个 ARNSHL 家族,其中包括两个受影响的兄弟姐妹,并确定 MYO15A c.5964+3G > A 和 c.8375T > C(p.Val2792Ala)为可能导致耳聋的变异。8 年的随访发现该家族中又有一个新的受影响个体,也表现出先天性、重度至极重度感音神经性听力损失。通过全外显子组测序,我们在一个复合杂合子中发现了一个新的剪接位点变异 c.5531+1G > C(母本等位基因),与之前鉴定的错义变异 c.8375T > C(p.Val2792Ala)(父本等位基因)在 MYO15A 中作为致病变异。新的受影响个体在 1 岁时接受了单侧耳蜗植入,5 年随访显示言语和语言发育良好。我们的结果进一步表明,MYO15A 相关的听力损失是耳蜗植入的良好候选者,这与之前的报告一致。根据我们的发现和文献复习,MYO15A 中的 58 个剪接位点变异与严重的耳聋表型相关,包括 46 个经典剪接位点变异和 12 个非经典剪接位点变异。