Giese Arnaud P J, Parker Andrew, Rehman Sakina, Brown Steve D M, Riazuddin Saima, Vander Kooi Craig W, Bowl Michael R, Ahmed Zubair M
Department of Otorhinolaryngology - Head & Neck Surgery, University of Maryland School of Medicine, Baltimore, MD, USA.
MRC Harwell Institute, Mammalian Genetics Unit, Harwell Campus, Oxfordshire, OX11 0RD, UK.
bioRxiv. 2024 Jul 31:2024.07.30.605852. doi: 10.1101/2024.07.30.605852.
Variations in genes coding for calcium and integrin binding protein 2 (CIB2) and whirlin cause deafness both in humans and mice. We previously reported that CIB2 binds to whirlin, and is essential for normal staircase architecture of auditory hair cells stereocilia. Here, we refine the interacting domains between these proteins and provide evidence that both proteins have distinct role in the development and organization of stereocilia bundles required for auditory transduction. Using a series of CIB2 and whirlin deletion constructs and nanoscale pulldown (NanoSPD) assays, we localized the regions of CIB2 that are critical for interaction with whirlin. AlphaFold 2 multimer, independently identified the same interacting regions between CIB2 and whirlin proteins, providing a detailed structural model of the interaction between the CIB2 EF2 domain and whirlin HHD2 domain. Next, we investigated genetic interaction between murine and using genetic approaches. Hearing in mice double heterozygous for functionally null alleles ( ) was similar to age-matched wild type mice, indicating that partial deficiency for both and does not impair hearing. Double homozygous mutant mice ( ) had profound hearing loss and cochlear stereocilia exhibited a predominant phenotype seen in single mutants. Furthermore, over-expression of in mice did not rescue the stereocilia morphology. These data suggest that, CIB2 is multifunctional, with key independent functions in development and/or maintenance of stereocilia staircase pattern in auditory hair cells.
编码钙和整合素结合蛋白2(CIB2)及whirlin的基因变异在人类和小鼠中都会导致耳聋。我们之前报道过CIB2与whirlin结合,并且对听觉毛细胞静纤毛的正常阶梯结构至关重要。在此,我们细化了这些蛋白质之间的相互作用结构域,并提供证据表明这两种蛋白质在听觉转导所需的静纤毛束的发育和组织中具有不同作用。通过一系列CIB2和whirlin缺失构建体以及纳米级下拉(NanoSPD)分析,我们确定了CIB2中与whirlin相互作用至关重要的区域。AlphaFold 2多聚体独立鉴定出了CIB2和whirlin蛋白之间相同的相互作用区域,提供了CIB2 EF2结构域与whirlin HHD2结构域之间相互作用的详细结构模型。接下来,我们使用遗传学方法研究了小鼠中CIB2和whirlin的遗传相互作用。功能无效等位基因双杂合(Cib2+/-;Whrn+/-)小鼠的听力与年龄匹配的野生型小鼠相似,这表明CIB2和whirlin的部分缺陷不会损害听力。双纯合突变小鼠(Cib2-/-;Whrn-/-)有严重的听力损失,耳蜗静纤毛表现出在单个Cib2-/-突变体中常见的主要表型。此外,在Cib2-/-小鼠中过表达whirlin并不能挽救静纤毛形态。这些数据表明,CIB2具有多种功能,在听觉毛细胞静纤毛阶梯模式的发育和/或维持中具有关键的独立功能。