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CIB2,在孤立性耳聋中缺陷,是听觉毛细胞机械转导和存活的关键。

CIB2, defective in isolated deafness, is key for auditory hair cell mechanotransduction and survival.

机构信息

Génétique et Physiologie de l'Audition, Institut Pasteur, Paris, France.

Unité Mixte de Recherche- UMRS 1120, Institut National de la Santé et de la Recherche Médicale, Paris, France.

出版信息

EMBO Mol Med. 2017 Dec;9(12):1711-1731. doi: 10.15252/emmm.201708087.

Abstract

Defects of CIB2, calcium- and integrin-binding protein 2, have been reported to cause isolated deafness, DFNB48 and Usher syndrome type-IJ, characterized by congenital profound deafness, balance defects and blindness. We report here two new nonsense mutations (pGln12* and pTyr110*) in patients displaying nonsyndromic profound hearing loss, with no evidence of vestibular or retinal dysfunction. Also, the generated mice display an early onset profound deafness and have normal balance and retinal functions. In these mice, the mechanoelectrical transduction currents are totally abolished in the auditory hair cells, whilst they remain unchanged in the vestibular hair cells. The hair bundle morphological abnormalities of mice, unlike those of mice defective for the other five known USH1 proteins, begin only after birth and lead to regression of the stereocilia and rapid hair-cell death. This essential role of CIB2 in mechanotransduction and cell survival that, we show, is restricted to the cochlea, probably accounts for the presence in mice and patients, unlike in Usher syndrome, of isolated hearing loss without balance and vision deficits.

摘要

CIB2 是钙和整合素结合蛋白 2,其缺陷可导致孤立性耳聋、DFNB48 和 I-J 型 Usher 综合征,其特征为先天性深度耳聋、平衡缺陷和失明。我们在此报告了两名新的无义突变(pGln12和 pTyr110)患者,他们表现为非综合征性深度听力损失,无前庭或视网膜功能障碍的证据。此外,产生的突变小鼠表现出早期深度耳聋,且具有正常的平衡和视网膜功能。在这些小鼠中,听觉毛细胞中的机电转导电流完全被消除,而前庭毛细胞中的电流则保持不变。与其他五种已知的 USH1 蛋白缺陷的小鼠不同,突变小鼠的毛束形态异常仅在出生后开始,并导致静纤毛的退化和毛细胞的快速死亡。我们发现,CIB2 在机械转导和细胞存活中的这种关键作用仅局限于耳蜗,这可能解释了突变小鼠和患者中存在孤立性听力损失而无平衡和视力缺陷的原因,而不像 Usher 综合征那样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b4d/5709726/9609d56fda39/EMMM-9-1711-g002.jpg

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