首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Microtubule Severing by Katanin p60 AAA+ ATPase Requires the C-terminal Acidic Tails of Both α- and β-Tubulins and Basic Amino Acid Residues in the AAA+ Ring Pore
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Microtubule Severing by Katanin p60 AAA+ ATPase Requires the C-terminal Acidic Tails of Both α- and β-Tubulins and Basic Amino Acid Residues in the AAA+ Ring Pore

机译:Katanin p60 AAA + ATPase切断微管需要AAA +环孔中的α-和β-微管蛋白的C末端酸性尾巴和碱性氨基酸残基

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摘要

The microtubule (MT) network is highly dynamic and undergoes dramatic reorganizations during the cell cycle. Dimers of α- and β-tubulins rapidly polymerize to and depolymerize from the end of MT fibrils in an intrinsic GTP-dependent manner. MT severing by ATP-driven enzymes such as katanin and spastin contributes significantly to microtubule dynamics, and it has been shown that katanin p60, a AAA+ family protein, has ATPase and MT-severing activities. The mechanism of MT severing by katanin p60 is poorly understood, and the residues in katanin p60 and tubulins important for severing activity were therefore explored in this study. MT-severing activity, but not ATPase activity, was inhibited by mutations of the conserved aromatic residue and the flanking basic residues in the pore region of the katanin p60 hexameric ring. When the acidic residue-rich C-terminal unstructured segment of either α- or β-tubulin was removed, polymerized MTs were resistant to katanin p60 treatment. Interactions between katanin p60 and the mutant MTs, on the other hand, were unaffected. Taken together, these findings led us to propose that the interactions between the positively charged residues of katanin p60 and the acidic tails of both tubulins are essential for efficient severing of MTs.
机译:微管(MT)网络是高度动态的,并且在细胞周期中会发生剧烈的重组。 α-和β-微管蛋白的二聚体以固有的GTP依赖性方式快速聚合至MT原纤维末端并从其解聚。由ATP驱动的酶(如katanin和spastin)切断MT显着促进微管动力学,并且已显示tan + AAA +家族蛋白p60具有ATPase和MT切断活性。对katanin p60切断MT的机制了解甚少,因此在这项研究中探索了katanin p60和微管蛋白中对切断活性重要的残基。 MT切割活性,而不是ATPase活性,被katanin p60六聚环的孔区域中保守的芳香族残基和侧翼碱性残基突变抑制。当除去α-或β-微管蛋白的富含酸性残基的C-末端非结构化片段时,聚合的MT对katanin p60处理具有抗性。另一方面,katanin p60和突变型MTs之间的相互作用不受影响。综上所述,这些发现使我们提出,katanin p60带正电荷的残基与两种微管蛋白的酸性尾巴之间的相互作用对于有效切断MT是必不可少的。

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