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A Highlights from MBoC Selection: The stable actin core of mechanosensory stereocilia features continuous turnover of actin cross-linkers

机译:MBoC选择的亮点:机械感觉性立体纤毛的稳定肌动蛋白核心具有连续的肌动蛋白交联剂周转特性

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摘要

Stereocilia are mechanosensitive protrusions on the surfaces of sensory hair cells in the inner ear that detect sound, gravity, and head movement. Their cores are composed of parallel actin filaments that are cross-linked and stabilized by several actin-binding proteins, including fascin-2, plastin-1, espin, and XIRP2. The actin filaments are the most stable known, with actin turnover primarily occurring at the stereocilia tips. While stereocilia actin dynamics has been well studied, little is known about the behavior of the actin cross-linking proteins, which are the most abundant type of protein in stereocilia after actin and are critical for stereocilia morphogenesis and maintenance. Here, we developed a novel transgenic mouse to monitor EGFP-fascin-2 incorporation. In contrast to actin, EGFP-fascin-2 readily enters the stereocilia core. We also compared the effect of EGFP-fascin-2 expression on developing and mature stereocilia. When it was induced during hair cell development, we observed increases in both stereocilia length and width. Interestingly, stereocilia size was not affected when EGFP-fascin-2 was induced in adult stereocilia. Regardless of the time of induction, EGFP-fascin-2 displaced both espin and plastin-1 from stereocilia. Altering the actin cross-linker composition, even as the actin filaments exhibit little to no turnover, provides a mechanism for ongoing remodeling and repair important for stereocilia homeostasis.
机译:体毛症是内耳感觉毛细胞表面上的机械敏感突起,可检测声音,重力和头部运动。它们的核心由平行的肌动蛋白丝组成,这些肌动蛋白丝通过多种肌动蛋白结合蛋白(包括fascin-2,plastin-1,espin和XIRP2)交联并稳定。肌动蛋白丝是已知最稳定的,肌动蛋白周转主要发生在纤毛末端。虽然已经对立体纤毛肌动蛋白的动力学进行了深入研究,但对肌动蛋白交联蛋白的行为知之甚少,肌动蛋白交联蛋白是继肌动蛋白之后的立体肌中最丰富的蛋白类型,对于立体纤毛的形态发生和维持至关重要。在这里,我们开发了一种新型的转基因小鼠来监测EGFP-fascin-2的掺入。与肌动蛋白相反,EGFP-fascin-2容易进入立体纤毛核心。我们还比较了EGFP-fascin-2表达对发育中和成熟的立体纤毛的影响。当它在毛细胞发育过程中被诱导时,我们观察到纤毛长度和宽度都增加了。有趣的是,当在成年的纤毛中诱导EGFP-fascin-2时,纤毛的大小不受影响。无论诱导时间如何,EGFP-fascin-2都取代了立体纤毛的espin和plastin-1。改变肌动蛋白交联剂的组成,即使肌动蛋白丝几乎没有或几乎没有周转,也为持续的重塑和修复提供了一种机制,对纤毛稳态具有重要意义。

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