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双联丝蛋白2调节耳蜗静纤毛中肌动蛋白丝的长度。

Twinfilin 2 regulates actin filament lengths in cochlear stereocilia.

作者信息

Peng Anthony W, Belyantseva Inna A, Hsu Patrick D, Friedman Thomas B, Heller Stefan

机构信息

Department of Otolaryngology-Head & Neck Surgery, Stanford University School of Medicine, Stanford, California 94305, USA.

出版信息

J Neurosci. 2009 Dec 2;29(48):15083-8. doi: 10.1523/JNEUROSCI.2782-09.2009.

Abstract

Inner ear sensory hair cells convert mechanical stimuli into electrical signals. This conversion happens in the exquisitely mechanosensitive hair bundle that protrudes from the cell's apical surface. In mammals, cochlear hair bundles are composed of 50-100 actin-filled stereocilia, which are organized in three rows in a staircase manner. Stereocilia actin filaments are uniformly oriented with their barbed ends toward stereocilia tips. During development, the actin core of each stereocilium undergoes elongation due to addition of actin monomers to the barbed ends of the filaments. Here we show that in the mouse cochlea the barbed end capping protein twinfilin 2 is present at the tips of middle and short rows of stereocilia from postnatal day 5 (P5) onward, which correlates with a time period when these rows stop growing. The tall stereocilia rows, which do not display twinfilin 2 at their tips, continue to elongate between P5 and P15. When we expressed twinfilin 2 in LLC/PK1-CL4 (CL4) cells, we observed a reduction of espin-induced microvilli length, pointing to a potent function of twinfilin 2 in suppressing the elongation of actin filaments. Overexpression of twinfilin 2 in cochlear inner hair cells resulted in a significant reduction of stereocilia length. Our results suggest that twinfilin 2 plays a role in the regulation of stereocilia elongation by restricting excessive elongation of the shorter row stereocilia thereby maintaining the mature staircase architecture of cochlear hair bundles.

摘要

内耳感觉毛细胞将机械刺激转化为电信号。这种转化发生在从细胞顶端表面伸出的极其敏感的机械性毛束中。在哺乳动物中,耳蜗毛束由50 - 100根充满肌动蛋白的静纤毛组成,它们以阶梯状排列成三排。静纤毛肌动蛋白丝统一排列,其带刺端朝向静纤毛尖端。在发育过程中,由于肌动蛋白单体添加到丝的带刺端,每个静纤毛的肌动蛋白核心会发生伸长。在这里我们表明,在小鼠耳蜗中,从出生后第5天(P5)起,带刺端封端蛋白双丝蛋白2存在于中排和短排静纤毛的尖端,这与这些排停止生长的时间段相关。尖端未显示双丝蛋白2的高排静纤毛在P5和P15之间继续伸长。当我们在LLC/PK1 - CL4(CL4)细胞中表达双丝蛋白2时,我们观察到espin诱导的微绒毛长度减少,这表明双丝蛋白2在抑制肌动蛋白丝伸长方面具有强大功能。在耳蜗内毛细胞中过表达双丝蛋白2导致静纤毛长度显著减少。我们的结果表明,双丝蛋白2通过限制较短排静纤毛的过度伸长,从而维持耳蜗毛束成熟的阶梯结构,在静纤毛伸长的调节中发挥作用。

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