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剪接位点A的选择将质膜Ca2+ -ATP酶同工型2靶向到毛细胞束。

Splice-site A choice targets plasma-membrane Ca2+-ATPase isoform 2 to hair bundles.

作者信息

Hill Jennifer K, Williams Diane E, LeMasurier Meredith, Dumont Rachel A, Strehler Emanuel E, Gillespie Peter G

机构信息

Oregon Hearing Research Center, Vollum Institute, Oregon Health & Science University, Portland, Oregon 97239, USA.

出版信息

J Neurosci. 2006 Jun 7;26(23):6172-80. doi: 10.1523/JNEUROSCI.0447-06.2006.

Abstract

Localization of mechanotransduction in sensory hair cells to hair bundles requires selective targeting of essential proteins to specific locations. Isoform 2 of the plasma-membrane Ca2+-ATPase (PMCA2), required for hearing and balance, is found exclusively in hair bundles. We determined the contribution of splicing at the two major splicing sites (A and C) to hair-cell targeting of PMCA2. When PMCA2 isoforms were immunoprecipitated from purified hair bundles of rat utricle, 2w was the only site A variant detected; moreover, immunocytochemistry for 2w in rat vestibular and cochlear tissues indicated that this splice form was located solely in bundles. To demonstrate the necessity of the 2w sequence, we transfected hair cells with PMCA2 containing different variants at splice sites A and C. Although native hair bundles exclusively use the 2a form at splice-site C, epitope-tagged PMCA2w/a and PMCA2w/b were both concentrated in bundles, indicating that site C is not involved in bundle targeting. In contrast, PMCA2z/a was excluded from bundles and was instead targeted to the basolateral plasma membrane. Bundle-specific targeting of PMCA2w/a tagged with green fluorescent protein (GFP) was diminished, suggesting that GFP interfered with splice-site A. Together, these data demonstrate that PMCA2w/a is the hair-bundle isoform of PMCA in rat hair cells and that 2w targets PMCA2 to bundles. The 2w sequence is thus the first targeting signal identified for a hair-bundle membrane protein; moreover, the striking distribution of inner-ear PMCA isoforms dictated by selective targeting suggests a critical functional role for segregated pathways of Ca2+ transport.

摘要

机械转导在感觉毛细胞中定位于毛束需要将必需蛋白选择性地靶向特定位置。质膜Ca2+ -ATP酶(PMCA2)的同工型2是听力和平衡所必需的,仅在毛束中发现。我们确定了两个主要剪接位点(A和C)的剪接对PMCA2在毛细胞中的靶向作用。当从大鼠椭圆囊的纯化毛束中免疫沉淀PMCA2同工型时,2w是唯一检测到的位点A变体;此外,大鼠前庭和耳蜗组织中2w的免疫细胞化学表明,这种剪接形式仅位于毛束中。为了证明2w序列的必要性,我们用在剪接位点A和C含有不同变体的PMCA2转染毛细胞。尽管天然毛束在剪接位点C仅使用2a形式,但表位标记的PMCA2w/a和PMCA2w/b都集中在毛束中,表明位点C不参与毛束靶向。相反,PMCA2z/a被排除在毛束之外,而是靶向基底外侧质膜。用绿色荧光蛋白(GFP)标记的PMCA2w/a的毛束特异性靶向作用减弱,表明GFP干扰了剪接位点A。总之,这些数据表明PMCA2w/a是大鼠毛细胞中PMCA的毛束同工型,并且2w将PMCA2靶向毛束。因此,2w序列是第一个被鉴定的毛束膜蛋白靶向信号;此外,由选择性靶向决定的内耳PMCA同工型的显著分布表明Ca2+转运的分离途径具有关键的功能作用。

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