Department of Chemical and Biological Engineering, Hong Kong University of Science and Technology (HKUST), Hong Kong, China.
Division of Life Science, Hong Kong University of Science and Technology (HKUST), Hong Kong, China.
FASEB J. 2019 Jun;33(6):6838-6851. doi: 10.1096/fj.201802155RR. Epub 2019 Feb 26.
The channel that governs mechanotransduction (MT) by hair cells in the inner ear has been investigated intensively for 4 decades, but its precise molecular composition remains enigmatic. Transmembrane channel-like protein 1 (TMC1) was recently identified as a component of the MT channel, and lipoma HMGIC fusion partner-like 5 (LHFPL5) is considered to be part of the MT complex and may functionally couple the tip link to the MT channel. As components of the MT complex, TMC1 and LHFPL5 are expected to localize at the lower end of the tip link in hair cells, a notion generally supported by previous studies on neonatal mice. However, the localization of these 2 proteins, particularly in the hair cells of adult mice, remains incompletely elucidated. Because determination of TMC1 and LHFPL5 localization at distinct developmental stages is essential for understanding their function and regulation, we used several approaches to examine the localization of these proteins in neonatal and adult hair cells in the mouse. We report several notable findings: ) TMC1 and LHFPL5 predominantly localize at the tip of the shorter rows of stereocilia in neonatal hair cells, which largely verifies the previously published findings in neonatal hair cells; ) LHFPL5 persists in the hair bundle of hair cells after postnatal day (P)7, which clarifies the previously reported unexpected absence of LHFPL5 after P7 and supports the view that LHFPL5 is a permanent component in the MT complex; and ) TMC1 and LHFPL5 remain at the tip of the shorter rows of stereocilia in adult outer hair cells, but in adult inner hair cells, TMC1 is uniformly distributed in both the tallest row and the shorter rows of stereocilia, whereas LHFPL5 is uniformly distributed in the shorter rows of stereocilia. These findings raise intriguing questions regarding the turnover rate, regulation, additional functions, and functional interaction of TMC1 and LHFPL5. Our study confirms the previous findings in neonatal hair cells and reveals several previously unidentified aspects of TMC1 and LHFPL5 localization in more mature hair cells.-Li, X., Yu, X., Chen, X., Liu, Z., Wang, G., Li, C., Wong, E. Y. M., Sham, M. H., Tang, J., He, J., Xiong, W., Liu, Z., Huang, P. Localization of TMC1 and LHFPL5 in auditory hair cells in neonatal and adult mice.
内耳毛细胞机械转导(MT)的通道已经被深入研究了 40 年,但它的确切分子组成仍然是个谜。跨膜通道样蛋白 1(TMC1)最近被确定为 MT 通道的一个组成部分,脂肪肉瘤 HMGIC 融合伙伴样 5(LHFPL5)被认为是 MT 复合物的一部分,并且可能将顶端连接与 MT 通道功能偶联。作为 MT 复合物的组成部分,TMC1 和 LHFPL5 预计会在毛细胞的顶端连接的下端定位,这一观点在以前对新生小鼠的研究中得到了普遍支持。然而,这些 2 种蛋白质,特别是在成年小鼠的毛细胞中的定位,仍然没有完全阐明。因为确定 TMC1 和 LHFPL5 在不同发育阶段的定位对于理解它们的功能和调节至关重要,所以我们使用了几种方法来研究这些蛋白质在新生和成年小鼠毛细胞中的定位。我们报告了一些值得注意的发现:1.)TMC1 和 LHFPL5 主要定位于新生毛细胞较短的静纤毛列的顶端,这在很大程度上验证了以前在新生毛细胞中发表的发现;2.)LHFPL5 在出生后第 7 天(P7)后仍存在于毛细胞的毛束中,这澄清了以前报道的 P7 后 LHFPL5 缺失的情况,并支持 LHFPL5 是 MT 复合物的永久组成部分的观点;3.)TMC1 和 LHFPL5 仍位于成年外毛细胞较短的静纤毛列的顶端,但在成年内毛细胞中,TMC1 均匀分布在最高的静纤毛列和较短的静纤毛列中,而 LHFPL5 均匀分布在较短的静纤毛列中。这些发现提出了关于 TMC1 和 LHFPL5 的周转率、调节、额外功能和功能相互作用的有趣问题。我们的研究证实了新生毛细胞中的先前发现,并揭示了 TMC1 和 LHFPL5 在更成熟的毛细胞中的定位的几个以前未被识别的方面。