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GTP-dependent twisting of dynamin implicates constriction and tension in membrane fission

机译:GTP依赖的动力蛋白扭曲牵连在膜裂变中的收缩和张力

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摘要

Dynamin, a crucial factor in endocytosis(1-3), is a member of a family of GTPases that participates in membrane fission(4-6). It was initially proposed to act as a machine that constricts and cuts the neck of nascent vesicles in a GTP-hydrolysis-dependent reaction(4,5), but subsequent studies suggested alternative models(2,7,8). Here we monitored the effect of nucleotides on dynamin-coated lipid tubules in real time. Addition of GTP, but not of GDP or GTP-gamma S, resulted in twisting of the tubules and supercoiling, suggesting a rotatory movement of the helix turns relative to each other during GTP hydrolysis. Rotation was confirmed by the movement of beads attached to the tubules. Twisting activity produced a longitudinal tension that was released by tubule breakage when both ends of the tubule were anchored. Fission also occurred when dynamin and GTP were added to lipid tubules that had been generated from liposomes by the motor activity of kinesin on microtubules. No fission events were observed in the absence of longitudinal tension. These findings demonstrate a mechanoenzyme activity of dynamin in endocytosis, but also imply that constriction is not sufficient for fission. At the short necks of endocytic vesicles, other factors(6,9,10) leading to tension may cooperate with the constricting activity of dynamin to induce fission(11-13).
机译:动力蛋白是内吞作用的重要因素(1-3),是参与膜裂变的GTPases家族的成员(4-6)。最初被提议作为一种机器来收缩和切割依赖于GTP水解反应的新生囊泡的颈部(4,5),但随后的研究提出了替代模型(2,7,8)。在这里,我们实时监测了核苷酸对动力剂包被的脂质小管的影响。 GTP的添加而不是GDP或GTP-γS的添加导致细管扭曲和超螺旋,这表明在GTP水解过程中螺旋线匝相对于彼此发生旋转运动。通过附着在肾小管上的珠子的运动来确认旋转。扭转活动产生了纵向张力,当将细管的两端锚定时,细管的断裂会释放这种纵向张力。当动力蛋白在微管上的运动活性从脂质体产生的脂质小管中加入动力蛋白和GTP时,也会发生裂变。在没有纵向张力的情况下未观察到裂变事件。这些发现证明了动力蛋白在胞吞作用中的机械酶活性,但也暗示收缩不足以引起裂变。在内吞囊泡的短颈处,其他导致张力的因素(6,9,10)可能与动力蛋白的收缩活动协同引起裂变(11-13)。

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