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Structural plugs at microtubule ends may regulate polymer dynamics in vitro

机译:微管末端的结构塞可以在体外调节聚合物动力学

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AbstractMicrotubules contain in their lumens distinct structures (plugs) that influence their dynamic behavior in vitro. As observed by electron microscopy, plugs are stainoccluding structures 10–30 nm in length that occur along the lengths and at the ends of microtubules. Plugs occur at a frequency of 20–40 at the ends of microtubules assembled from cycled microtubule protein containing MAPs. While the composition of plugs is not known, preliminary evidence suggests that they are accretions of tubulin, that they are labile, and that they are more common in preparations containing MAPs. When polymers are induced to depolymerize by endwise subuit dissociation, the frequency of plugged microtubule ends increases transiently, suggesting that plugs temporarily stabilize microtubules. The functional significance of plugs may be that they prevent the sudden complete loss of microtubules through catastrophic disassembly. It is possible that plugs, by slowing the rate of disassembly, enable a polymer to add GTP‐tubulin subunits, thereby forming a stabilizing GTP‐cap. These observations suggest that plugs may stabilize polymers and account for the frequent transitions from shortening to growing phases that characterize dynamic inst
机译:摘要微管的管腔中含有影响其体外动态行为的不同结构(栓塞)。正如通过电子显微镜观察到的那样,栓子是沿微管长度和末端出现的长度为 10-30 nm 的染色闭塞结构。栓子的发生频率为 20-40%,位于由含有 MAP 的环状微管蛋白组装而成的微管末端。虽然栓子的组成尚不清楚,但初步证据表明它们是微管蛋白的吸积物,它们不稳定,并且在含有 MAP 的制剂中更常见。当聚合物通过末端亚溶解诱导解聚时,堵塞的微管末端的频率瞬时增加,表明塞子暂时稳定了微管。塞子的功能意义可能在于它们可以防止微管因灾难性拆卸而突然完全丧失。塞子可能通过减慢拆卸速度,使聚合物能够添加GTP-微管蛋白亚基,从而形成稳定的GTP-帽。这些观察结果表明,塞子可以稳定聚合物,并解释从缩短阶段到生长期的频繁转变,这是动态研究所的特征。

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