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Plastin 1 widens stereocilia by transforming actin filament packing from hexagonal to liquid

机译:Plastin 1通过将肌动蛋白丝堆积从六边形转变为液体来扩大立体纤毛

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摘要

With their essential role in inner ear function, stereocilia of sensory hair cells demonstrate the importance of cellular actin protrusions. Actin packing in stereocilia is mediated by cross-linkers of the plastin, fascin, and espin families. Although mice lacking espin (ESPN) have no vestibular or auditory function, we found that mice that either lacked plastin 1 (PLS1) or had nonfunctional fascin 2 (FSCN2) had reduced inner ear function, with double-mutant mice most strongly affected. Targeted mass spectrometry indicated that PLS1 was the most abundant cross-linker in vestibular stereocilia and the second most abundant protein overall; ESPN only accounted for ∼15% of the total cross-linkers in bundles. Mouse utricle stereocilia lacking PLS1 were shorter and thinner than wild-type stereocilia. Surprisingly, although wild-type stereocilia had random liquid packing of their actin filaments, stereocilia lacking PLS1 had orderly hexagonal packing. Although all three cross-linkers are required for stereocilia structure and function, PLS1 biases actin toward liquid packing, which allows stereocilia to grow to a greater diameter.
机译:感觉毛细胞的立体纤毛在内耳功能中起着至关重要的作用,证明了细胞肌动蛋白突起的重要性。立体纤毛中的肌动蛋白堆积是由塑体,fascin和espin家族的交联剂介导的。尽管缺少espin(ESPN)的小鼠没有前庭或听觉功能,但我们发现缺少plastin 1(PLS1)或无功能fascin 2(FSCN2)的小鼠的内耳功能降低,而双突变小鼠受到的影响最大。靶向质谱分析表明,PLS1是前庭立体纤毛中最丰富的交联剂,并且是整体上第二大最丰富的蛋白质。 ESPN仅占束中总交联剂的约15%。缺少PLS1的小鼠脐带状纤毛比野生型纤毛更短更细。出人意料的是,尽管野生型立体纤毛的肌动蛋白丝无规液体堆积,但缺乏PLS1的立体纤毛却有规则的六角形堆积。尽管所有三个交联剂对于纤毛的结构和功能都是必需的,但PLS1使肌动蛋白偏向液体堆积,从而使纤毛能够生长到更大的直径。

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