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RDX基因突变会导致DFNB24位点的非综合征性听力损失。

Mutations of the RDX gene cause nonsyndromic hearing loss at the DFNB24 locus.

作者信息

Khan Shahid Y, Ahmed Zubair M, Shabbir Muhammad I, Kitajiri Shin-ichiro, Kalsoom Saeeda, Tasneem Saba, Shayiq Sara, Ramesh Arabandi, Srisailpathy Srikumari, Khan Shaheen N, Smith Richard J H, Riazuddin Saima, Friedman Thomas B, Riazuddin Sheikh

机构信息

National Centre of Excellence in Molecular Biology, Punjab University, Lahore, Pakistan.

出版信息

Hum Mutat. 2007 May;28(5):417-23. doi: 10.1002/humu.20469.

Abstract

Ezrin, radixin, and moesin are paralogous proteins that make up the ERM family and function as cross-linkers between integral membrane proteins and actin filaments of the cytoskeleton. In the mouse, a null allele of Rdx encoding radixin is associated with hearing loss as a result of the degeneration of inner ear hair cells as well as with hyperbilirubinemia due to hepatocyte dysfunction. Two mutant alleles of RDX [c.1732G>A (p.D578N) and c.1404_1405insG (p.A469fsX487)] segregating in two consanguineous Pakistani families are associated with neurosensory hearing loss. Both of these mutant alleles are predicted to affect the actin-binding motif of radixin. Sequence analysis of RDX in the DNA samples from the original DFNB24 family revealed a c.463C>T transition substitution that is predicted to truncate the protein in the FERM domain (F for 4.1, E for ezrin, R for radixin, and M for moesin) (p.Q155X). We also report a more complete gene and protein structure of RDX, including four additional exons and five new isoforms of RDX that are expressed in human retina and inner ear. Further, high-resolution confocal microscopy in mouse inner ear demonstrates that radixin is expressed along the length of stereocilia of hair cells from both the organ of Corti and the vestibular system.

摘要

埃兹蛋白、根蛋白和膜突蛋白是构成ERM家族的同源蛋白,其功能是作为整合膜蛋白与细胞骨架肌动蛋白丝之间的交联蛋白。在小鼠中,编码根蛋白的Rdx无效等位基因与内耳毛细胞退化导致的听力丧失以及肝细胞功能障碍引起的高胆红素血症有关。在两个近亲的巴基斯坦家庭中分离出的RDX的两个突变等位基因[c.1732G>A(p.D578N)和c.1404_1405insG(p.A469fsX487)]与神经感觉性听力丧失有关。预计这两个突变等位基因都会影响根蛋白的肌动蛋白结合基序。对来自最初的DFNB24家族的DNA样本进行的RDX序列分析显示,存在一个c.463C>T转换替代,预计该替代会在FERM结构域(F代表4.1,E代表埃兹蛋白,R代表根蛋白,M代表膜突蛋白)中截断蛋白质(p.Q155X)。我们还报告了RDX更完整的基因和蛋白质结构,包括另外四个外显子和在人类视网膜和内耳中表达的五种新的RDX同工型。此外,小鼠内耳的高分辨率共聚焦显微镜显示,根蛋白沿柯蒂氏器和前庭系统的毛细胞静纤毛全长表达。

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