Liu Xiaoqing, Bulgakov Oleg V, Darrow Keith N, Pawlyk Basil, Adamian Michael, Liberman M Charles, Li Tiansen
Berman-Gund Laboratory for the Study of Retinal Degenerations and Eaton-Peabody Laboratory, Harvard Medical School, Massachusetts Eye and Ear Infirmary, 243 Charles Street, Boston, MA 02114, USA.
Proc Natl Acad Sci U S A. 2007 Mar 13;104(11):4413-8. doi: 10.1073/pnas.0610950104. Epub 2007 Mar 5.
Usher syndrome type IIA (USH2A), characterized by progressive photoreceptor degeneration and congenital moderate hearing loss, is the most common subtype of Usher syndrome. In this article, we show that the USH2A protein, also known as usherin, is an exceptionally large ( approximately 600-kDa) matrix protein expressed specifically in retinal photoreceptors and developing cochlear hair cells. In mammalian photoreceptors, usherin is localized to a spatially restricted membrane microdomain at the apical inner segment recess that wraps around the connecting cilia, corresponding to the periciliary ridge complex described for amphibian photoreceptors. In sensory hair cells of the cochlea, it is associated transiently with the hair bundles during postnatal development. Targeted disruption of the Ush2a gene in mice leads to progressive photoreceptor degeneration and a moderate but nonprogressive hearing impairment, mimicking the visual and hearing deficits in USH2A patients. These data suggest that usherin is required for the long-term maintenance of retinal photoreceptors and for the development of cochlear hair cells. We propose a model in which usherin in photoreceptors is tethered via its C terminus to the plasma membrane and its large extracellular domain projecting into the periciliary matrix, where they may interact with the connecting cilium to fulfill important structural or signaling roles.
IIA型Usher综合征(USH2A)以进行性光感受器退化和先天性中度听力损失为特征,是Usher综合征最常见的亚型。在本文中,我们表明USH2A蛋白,也称为usherin,是一种特别大(约600 kDa)的基质蛋白,专门在视网膜光感受器和发育中的耳蜗毛细胞中表达。在哺乳动物光感受器中,usherin定位于顶端内段凹陷处一个空间受限的膜微区,该微区围绕连接纤毛,对应于两栖动物光感受器中描述的睫周嵴复合体。在耳蜗的感觉毛细胞中,它在出生后发育过程中与毛束短暂相关。在小鼠中靶向破坏Ush2a基因会导致进行性光感受器退化和中度但非进行性听力障碍,模拟USH2A患者的视觉和听力缺陷。这些数据表明usherin是视网膜光感受器长期维持和耳蜗毛细胞发育所必需的。我们提出了一个模型,其中光感受器中的usherin通过其C末端与质膜相连,其大的细胞外结构域伸入睫周基质,在那里它们可能与连接纤毛相互作用以发挥重要的结构或信号作用。