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通过 septin9 调节微管正极端动力学。

Regulation of microtubule plus end dynamics by septin 9.

机构信息

Department of Biology, Drexel University, Philadelphia, Pennsylvania.

出版信息

Cytoskeleton (Hoboken). 2019 Jan;76(1):83-91. doi: 10.1002/cm.21488. Epub 2018 Nov 14.

Abstract

Septins are GTP-binding proteins that associate with the microtubule (MT) and actin cytoskeleton. Septins affect MT organization and posttranslational modifications, but their role in MT dynamics is less understood. Here, we reconstituted MT dynamics in the presence of the MT-binding septin (SEPT9) using an in vitro cell-free assay, which images the polymerization of tubulin from guanosine-5'-[(α,β)-methyleno]triphosphate (GMPCPP)-stabilized MT seeds. We found that submicromolar concentrations of SEPT9 suppress MT catastrophe and enhance the growth of MT plus ends to great lengths, while low micromolar concentrations of SEPT9 stabilize MTs by inhibiting dynamic instability. We show that SEPT9 associates preferentially with the lattice of GMPCPP-stabilized MT seeds and surprisingly recruits soluble tubulin to the MT lattice. Notably, the effects of SEPT9 on MT dynamics are dependent on its G-G dimerization interface, which is formed by the pockets of the GTP-binding domains. A mutation (H530D) that disrupts G-G dimerization abrogates the effects of SEPT9 on MT dynamics and diminishes its ability to recruit tubulin to the MT lattice. Taken together, these results suggest that SEPT9 promotes the formation and maintenance of long stable MTs through a mechanism that may involve recruitment of unpolymerized tubulin to the MT lattice.

摘要

septins 是一种与微管 (MT) 和肌动蛋白细胞骨架结合的 GTP 结合蛋白。septins 影响 MT 组织和翻译后修饰,但它们在 MT 动力学中的作用知之甚少。在这里,我们使用体外无细胞测定法在 MT 结合 septin (SEPT9) 的存在下重新构建了 MT 动力学,该测定法从鸟苷-5'-[(α,β)-亚甲基]三磷酸 (GMPCPP) 稳定的 MT 种子中成像微管蛋白的聚合。我们发现,亚微摩尔浓度的 SEPT9 抑制 MT 崩溃并增强 MT 加端的生长到很长的长度,而低微摩尔浓度的 SEPT9 通过抑制动态不稳定性稳定 MT。我们表明 SEPT9 优先与 GMPCPP 稳定的 MT 种子晶格结合,并令人惊讶地将可溶性微管蛋白招募到 MT 晶格上。值得注意的是,SEPT9 对 MT 动力学的影响依赖于其 G-G 二聚化界面,该界面由 GTP 结合域的口袋形成。破坏 G-G 二聚化的突变 (H530D) 消除了 SEPT9 对 MT 动力学的影响,并降低了其将微管蛋白招募到 MT 晶格的能力。总之,这些结果表明,SEPT9 通过一种可能涉及将未聚合的微管蛋白招募到 MT 晶格的机制,促进长稳定 MT 的形成和维持。

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Regulation of microtubule plus end dynamics by septin 9.通过 septin9 调节微管正极端动力学。
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