McGuirt W T, Prasad S D, Griffith A J, Kunst H P, Green G E, Shpargel K B, Runge C, Huybrechts C, Mueller R F, Lynch E, King M C, Brunner H G, Cremers C W, Takanosu M, Li S W, Arita M, Mayne R, Prockop D J, Van Camp G, Smith R J
Molecular Otolaryngology Research Laboratories, Department of Otolaryngology-Head and Neck Surgery, University of Iowa, Iowa City, Iowa, USA.
Nat Genet. 1999 Dec;23(4):413-9. doi: 10.1038/70516.
We report that mutation of COL11A2 causes deafness previously mapped to the DFNA13 locus on chromosome 6p. We found two families (one American and one Dutch) with autosomal dominant, non-syndromic hearing loss to have mutations in COL11A2 that are predicted to affect the triple-helix domain of the collagen protein. In both families, deafness is non-progressive and predominantly affects middle frequencies. Mice with a targeted disruption of Col11a2 also were shown to have hearing loss. Electron microscopy of the tectorial membrane of these mice revealed loss of organization of the collagen fibrils. Our findings revealed a unique ultrastructural malformation of inner-ear architecture associated with non-syndromic hearing loss, and suggest that tectorial membrane abnormalities may be one aetiology of sensorineural hearing loss primarily affecting the mid-frequencies.
我们报告称,COL11A2基因突变会导致耳聋,此前该基因已被定位到6号染色体短臂上的DFNA13位点。我们发现两个家族(一个美国家族和一个荷兰家族)患有常染色体显性非综合征性听力损失,其COL11A2基因发生了突变,预计会影响胶原蛋白的三螺旋结构域。在这两个家族中,耳聋不会进展,主要影响中频。对Col11a2进行靶向破坏的小鼠也表现出听力损失。对这些小鼠的盖膜进行电子显微镜检查发现,胶原纤维的组织结构遭到破坏。我们的研究结果揭示了一种与非综合征性听力损失相关的内耳结构独特的超微结构畸形,并表明盖膜异常可能是主要影响中频的感音神经性听力损失的病因之一。