Division of Pediatric Otolaryngology/Head & Neck Surgery, Cincinnati Children's Hospital Medical Center, Ohio, USA.
Nat Genet. 2012 Nov;44(11):1265-71. doi: 10.1038/ng.2426. Epub 2012 Sep 30.
Sensorineural hearing loss is genetically heterogeneous. Here, we report that mutations in CIB2, which encodes a calcium- and integrin-binding protein, are associated with nonsyndromic deafness (DFNB48) and Usher syndrome type 1J (USH1J). One mutation in CIB2 is a prevalent cause of deafness DFNB48 in Pakistan; other CIB2 mutations contribute to deafness elsewhere in the world. In mice, CIB2 is localized to the mechanosensory stereocilia of inner ear hair cells and to retinal photoreceptor and pigmented epithelium cells. Consistent with molecular modeling predictions of calcium binding, CIB2 significantly decreased the ATP-induced calcium responses in heterologous cells, whereas mutations in deafness DFNB48 altered CIB2 effects on calcium responses. Furthermore, in zebrafish and Drosophila melanogaster, CIB2 is essential for the function and proper development of hair cells and retinal photoreceptor cells. We also show that CIB2 is a new member of the vertebrate Usher interactome.
感音神经性听力损失具有遗传异质性。在这里,我们报告说,编码钙和整合素结合蛋白的 CIB2 突变与非综合征性耳聋(DFNB48)和 1J 型 Usher 综合征(USH1J)有关。CIB2 中的一个突变是巴基斯坦常见的耳聋 DFNB48 的原因;其他 CIB2 突变导致世界其他地区的耳聋。在小鼠中,CIB2 定位于内耳毛细胞的机械感觉纤毛和视网膜光感受器和色素上皮细胞。与钙结合的分子建模预测一致,CIB2 显著降低了异源细胞中 ATP 诱导的钙反应,而耳聋 DFNB48 中的突变改变了 CIB2 对钙反应的影响。此外,在斑马鱼和黑腹果蝇中,CIB2 对于毛细胞和视网膜光感受器细胞的功能和正常发育至关重要。我们还表明,CIB2 是脊椎动物 Usher 相互作用组的新成员。