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GIPC3与MYO6和PDZ结构域蛋白结合,并塑造毛细胞顶端区域。

GIPC3 couples to MYO6 and PDZ domain proteins and shapes the hair cell apical region.

作者信息

Chatterjee Paroma, Morgan Clive P, Krey Jocelyn F, Benson Connor, Goldsmith Jennifer, Bateschell Michael, Ricci Anthony J, Barr-Gillespie Peter G

机构信息

Oregon Hearing Research Center & Vollum Institute, Oregon Health & Science University, Portland, Oregon, USA.

Department of Otolaryngology-Head & Neck Surgery, Stanford University, Stanford, California 94305, USA ss.

出版信息

bioRxiv. 2023 Mar 1:2023.02.28.530466. doi: 10.1101/2023.02.28.530466.

Abstract

UNLABELLED

GIPC3 has been implicated in auditory function. Initially localized to the cytoplasm of inner and outer hair cells of the cochlea, GIPC3 increasingly concentrated in cuticular plates and at cell junctions during postnatal development. Early postnatal mice had mostly normal mechanotransduction currents, but had no auditory brainstem response at one month of age. Cuticular plates of hair cells did not flatten during development as did those of controls; moreover, hair bundles were squeezed along the cochlear axis in mutant hair cells. Junctions between inner hair cells and adjacent inner phalangeal cells were also severely disrupted in cochleas. GIPC3 bound directly to MYO6, and the loss of MYO6 led to altered distribution of GIPC3. Immunoaffinity purification of GIPC3 from chicken inner ear extracts identified co-precipitating proteins associated with adherens junctions, intermediate filament networks, and the cuticular plate. Several of immunoprecipitated proteins contained GIPC-family consensus PDZ binding motifs (PBMs), including MYO18A, which binds directly to the PDZ domain of GIPC3. We propose that GIPC3 and MYO6 couple to PBMs of cytoskeletal and cell-junction proteins to shape the cuticular plate.

SUMMARY STATEMENT

The PDZ-domain protein GIPC3 couples the molecular motors MYO6 and MYO18A to actin cytoskeleton structures in hair cells. GIPC3 is necessary for shaping the hair cell’s cuticular plate and hence the arrangement of the stereocilia in the hair bundle.

摘要

未标记

GIPC3与听觉功能有关。GIPC3最初定位于耳蜗内、外毛细胞的细胞质中,在出生后发育过程中,它越来越多地集中在表皮板和细胞连接处。出生后早期的小鼠大多具有正常的机械转导电流,但在1月龄时没有听觉脑干反应。与对照组相比,毛细胞的表皮板在发育过程中没有变平;此外,突变毛细胞中的毛束沿耳蜗轴被挤压。在内耳毛细胞与相邻内指细胞之间的连接在耳蜗中也受到严重破坏。GIPC3直接与MYO6结合,而MYO6的缺失导致GIPC3的分布改变。从鸡内耳提取物中对GIPC3进行免疫亲和纯化,鉴定出与黏着连接、中间丝网络和表皮板相关的共沉淀蛋白。几种免疫沉淀的蛋白含有GIPC家族共有的PDZ结合基序(PBMs),包括直接与GIPC3的PDZ结构域结合的MYO18A。我们提出,GIPC3和MYO6与细胞骨架和细胞连接蛋白的PBMs结合,以塑造表皮板。

总结陈述

PDZ结构域蛋白GIPC3将分子马达MYO6和MYO18A与毛细胞中的肌动蛋白细胞骨架结构偶联。GIPC3对于塑造毛细胞的表皮板以及因此毛束中静纤毛的排列是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d36/10002731/720f3faeebb2/nihpp-2023.02.28.530466v1-f0001.jpg

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