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驱动蛋白8家族蛋白Kip3的正端特异性解聚酶活性,解释了其在酵母有丝分裂纺锤体定位中的作用。

Plus end-specific depolymerase activity of Kip3, a kinesin-8 protein, explains its role in positioning the yeast mitotic spindle.

作者信息

Gupta Mohan L, Carvalho Pedro, Roof David M, Pellman David

机构信息

Department of Pediatric Oncology, Dana-Farber Cancer Institute and Division of Hematology/Oncology, Children's Hospital Boston and Harvard Medical School, Boston, MA 02115, USA.

出版信息

Nat Cell Biol. 2006 Sep;8(9):913-23. doi: 10.1038/ncb1457. Epub 2006 Aug 13.

Abstract

The budding yeast protein Kip3p is a member of the conserved kinesin-8 family of microtubule motors, which are required for microtubule-cortical interactions, normal spindle assembly and kinetochore dynamics. Here, we demonstrate that Kip3p is both a plus end-directed motor and a plus end-specific depolymerase--a unique combination of activities not found in other kinesins. The ATPase activity of Kip3p was activated by both microtubules and unpolymerized tubulin. Furthermore, Kip3p in the ATP-bound state formed a complex with unpolymerized tubulin. Thus, motile kinesin-8s may depolymerize microtubules by a mechanism that is similar to that used by non-motile kinesin-13 proteins. Fluorescent speckle analysis established that, in vivo, Kip3p moved toward and accumulated on the plus ends of growing microtubules, suggesting that motor activity brings Kip3p to its site of action. Globally, and more dramatically on cortical contact, Kip3p promoted catastrophes and pausing, and inhibited microtubule growth. These findings explain the role of Kip3p in positioning the mitotic spindle in budding yeast and potentially other processes controlled by kinesin-8 family members.

摘要

出芽酵母蛋白Kip3p是保守的驱动蛋白-8微管马达家族的成员,微管与皮层的相互作用、正常纺锤体组装和动粒动力学都需要该家族。在此,我们证明Kip3p既是一种正端定向马达,也是一种正端特异性解聚酶——这是其他驱动蛋白中未发现的独特活性组合。微管和未聚合的微管蛋白均可激活Kip3p的ATP酶活性。此外,处于ATP结合状态的Kip3p与未聚合的微管蛋白形成复合物。因此,有运动活性的驱动蛋白-8可能通过一种类似于非运动性驱动蛋白-13蛋白所采用的机制使微管解聚。荧光斑点分析表明,在体内,Kip3p向生长中的微管正端移动并在其上积累,这表明马达活性将Kip3p带到其作用位点。在整体上,尤其是在皮层接触时,Kip3p会促进微管的灾变和暂停,并抑制微管生长。这些发现解释了Kip3p在出芽酵母中定位有丝分裂纺锤体以及可能在其他由驱动蛋白-8家族成员控制的过程中的作用。

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