Department of Biochemistry, Molecular Biology, and Biophysics, University of Minnesota, Minneapolis, Minnesota 55455, USA.
J Neurosci. 2013 May 8;33(19):8114-21. doi: 10.1523/JNEUROSCI.0238-13.2013.
Stereocilia are actin-based protrusions on auditory sensory hair cells that are deflected by sound waves to initiate the conversion of mechanical energy to neuronal signals. Stereocilia maintenance is essential because auditory hair cells are not renewed in mammals. This process requires both β-actin and γ-actin as knock-out mice lacking either isoform develop distinct stereocilia pathology during aging. In addition, stereocilia integrity may hinge on immobilizing actin, which outside of a small region at stereocilia tips turns over with a very slow, months-long half-life. Here, we establish that β-actin and the actin crosslinking protein fascin-2 cooperate to maintain stereocilia length and auditory function. We observed that mice expressing mutant fascin-2 (p.R109H) or mice lacking β-actin share a common phenotype including progressive, high-frequency hearing loss together with shortening of a defined subset of stereocilia in the hair cell bundle. Fascin-2 binds β-actin and γ-actin filaments with similar affinity in vitro and fascin-2 does not depend on β-actin for localization in vivo. Nevertheless, double-mutant mice lacking β-actin and expressing fascin-2 p.R109H have a more severe phenotype suggesting that each protein has a different function in a common stereocilia maintenance pathway. Because the fascin-2 p.R109H mutant binds but fails to efficiently crosslink actin filaments, we propose that fascin-2 crosslinks function to slow actin depolymerization at stereocilia tips to maintain stereocilia length.
纤毛是听觉感觉毛细胞上的肌动蛋白突起,它们会被声波偏转,从而将机械能转化为神经元信号。纤毛的维持是至关重要的,因为哺乳动物的听觉毛细胞不会再生。这个过程既需要β-肌动蛋白,也需要γ-肌动蛋白,因为缺乏这两种同工型的敲除小鼠在衰老过程中会出现明显的纤毛病变。此外,纤毛的完整性可能取决于肌动蛋白的固定,在纤毛尖端的一个小区域之外,肌动蛋白的周转率非常缓慢,半衰期长达数月。在这里,我们确定β-肌动蛋白和肌动蛋白交联蛋白 fascin-2 合作来维持纤毛的长度和听觉功能。我们观察到表达突变 fascin-2(p.R109H)的小鼠或缺乏β-肌动蛋白的小鼠表现出共同的表型,包括进行性高频听力损失,以及毛细胞束中一组特定的纤毛缩短。Fascin-2 在体外以相似的亲和力结合β-肌动蛋白和γ-肌动蛋白丝,并且 fascin-2 在体内的定位不依赖于β-肌动蛋白。然而,缺乏β-肌动蛋白并表达 fascin-2 p.R109H 的双突变小鼠表现出更严重的表型,这表明每种蛋白在共同的纤毛维持途径中具有不同的功能。由于 fascin-2 p.R109H 突变体结合但不能有效地交联肌动蛋白丝,我们提出 fascin-2 交联功能是通过减缓纤毛尖端的肌动蛋白解聚来维持纤毛长度。