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Mal3通过抑制收缩和促进挽救来掩盖粟酒裂殖酵母微管中的灾难事件。

Mal3 masks catastrophe events in Schizosaccharomyces pombe microtubules by inhibiting shrinkage and promoting rescue.

作者信息

Katsuki Miho, Drummond Douglas R, Osei Michael, Cross Robert A

机构信息

Molecular Motors Group, Marie Curie Reaerch Institute, Oxted, Surrey RH80TL, United Kingdom.

出版信息

J Biol Chem. 2009 Oct 23;284(43):29246-50. doi: 10.1074/jbc.C109.052159. Epub 2009 Sep 9.

Abstract

Schizosaccharomyces pombe Mal3 is a member of the EB family of proteins, which are proposed to be core elements in a tip-tracking network that regulates microtubule dynamics in cells. How Mal3 itself influences microtubule dynamics is unclear. We tested the effects of full-length recombinant Mal3 on dynamic microtubules assembled in vitro from purified S. pombe tubulin, using dark field video microscopy to avoid fluorescent tagging and data-averaging techniques to improve spatiotemporal resolution. We find that catastrophe occurs stochastically as a fast (<2.2 s) transition from constant speed growth to constant speed shrinkage with a constant probability that is independent of the Mal3 concentration. This implies that Mal3 neither stabilizes nor destabilizes microtubule tips. Mal3 does, however, stabilize the main part of the microtubule lattice, inhibiting shrinkage and increasing the frequency of rescues, consistent with recent models in which Mal3 on the lattice forms stabilizing lateral links between neighboring protofilaments. At high concentrations, Mal3 can entirely block shrinkage and induce very rapid rescue, making catastrophes impossible to detect, which may account for the apparent suppression of catastrophe by Mal3 and other EBs in vivo. Overall, we find that Mal3 stabilizes microtubules not by preventing catastrophe at the microtubule tip but by inhibiting lattice depolymerization and enhancing rescue. We argue that this implies that Mal3 binds microtubules in different modes at the tip and on the lattice.

摘要

粟酒裂殖酵母Mal3是EB蛋白家族的成员之一,该家族被认为是调节细胞中微管动力学的尖端追踪网络的核心元件。目前尚不清楚Mal3自身如何影响微管动力学。我们使用暗场视频显微镜以避免荧光标记,并采用数据平均技术来提高时空分辨率,测试了全长重组Mal3对从纯化的粟酒裂殖酵母微管蛋白体外组装的动态微管的影响。我们发现,微管灾变以快速(<2.2秒)的方式随机发生,即从匀速生长转变为匀速收缩,其恒定概率与Mal3浓度无关。这意味着Mal3既不使微管尖端稳定,也不使其不稳定。然而,Mal3确实稳定了微管晶格的主要部分,抑制了收缩并增加了微管重生的频率,这与最近的模型一致,即在晶格上的Mal3在相邻原纤维之间形成稳定的侧向连接。在高浓度下,Mal3可以完全阻止收缩并诱导非常快速的重生,使得灾变无法被检测到,这可能解释了Mal3和其他EB蛋白在体内对灾变的明显抑制作用。总体而言,我们发现Mal3稳定微管不是通过阻止微管尖端的灾变,而是通过抑制晶格解聚和增强重生。我们认为,这意味着Mal3在微管尖端和晶格上以不同模式结合微管。

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