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Recognition of C-terminal amino acids in tubulin by pore loops in Spastin is important for microtubule severing

机译:通过Spastin中的孔环识别微管蛋白中的C末端氨基酸对于微管切断很重要

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摘要

Spastin, an AAA ATPase mutated in the neurodegenerative disease hereditary spastic paraplegia, severs microtubules. Many other AAA proteins form ring-shaped hexamers and contain pore loops, which project into the ring's central cavity and act as ratchets that pull on target proteins, leading, in some cases, to conformational changes. We show that Spastin assembles into a hexamer and that loops within the central pore recognize C-terminal amino acids of tubulin. Key pore loop amino acids are required for severing, including one altered by a disease-associated mutation. We also show that Spastin contains a second microtubule binding domain that makes a distinct interaction with microtubules and is required for severing. Given that Spastin engages the MT in two places and that both interactions are required for severing, we propose that severing occurs by forces exerted on the C-terminal tail of tubulin, which results in a conformational change in tubulin, which releases it from the polymer.
机译:Spastin是一种在神经退行性疾病遗传性痉挛性截瘫中突变的AAA ATPase,可切断微管。许多其他AAA蛋白形成环状六聚体并包含孔环,该孔环伸入环的中心腔并充当棘轮,拉动目标蛋白,在某些情况下导致构象变化。我们表明,Spastin组装成六聚体,并且在中心孔内的环识别微管蛋白的C端氨基酸。切断需要关键的孔环氨基酸,包括一种因疾病相关突变而改变的氨基酸。我们还显示,Spastin包含第二个微管结合结构域,该结构域与微管形成独特的相互作用,并且需要切断。鉴于Spastin在两个位置与MT接合,并且两个相互作用都需要进行切断,因此我们建议切断是通过施加在微管蛋白C末端尾巴上的力进行的,这会导致微管蛋白的构象变化,从而将其从聚合物中释放出来。

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