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首页> 外文期刊>The Journal of Experimental Biology >THE MODE OF ATP-DEPENDENT MICROTUBULE-KINESIN SLIDING IN THE AUXOTONIC CONDITION
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THE MODE OF ATP-DEPENDENT MICROTUBULE-KINESIN SLIDING IN THE AUXOTONIC CONDITION

机译:在声压条件下取决于ATP的微管动力学滑模

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摘要

Kinesin is a motor protein that converts chemical energy derived from ATP hydrolysis into mechanical work to transport cellular components along microtubules, We studied the properties of ATP-dependent microtubule-kinesin sliding with two different in vitro assay systems, In one assay system, a kinesin-coated glass microneedle (elastic coefficient, 1-2.5 pN mu m(-1)) was made to slide along an axoneme, Using this system, we obtained the relationship between the force (=load) on the microneedle and the velocity of microneedle-kinesin sliding in the auxotonic condition, in which the load on the microtubule-kinesin contacts increased as sliding progressed, The force-velocity curve was upwardly convex (maximum velocity V-max, 0.58+/-0.15 mu ms(-1); maximum isometric force P-0, 5.0+/-1.6 pN) and was similar to that of in vitro actin-myosin sliding in the auxotonic condition, suggesting that the two motor protein systems have fundamental kinetic properties in common, In the other assay system, an axoneme attached to a glass microneedle (elastic coefficient, 4-5 pN mu m(-1)) was made to slide on a kinesin-coated glass surface (V-max, 0.68+/-0.17 mu ms(-1); P-0, 46.1+18.6 pN). The change in shape of the axoneme indicated an enormous flexibility of randomly oriented kinesin molecules. [References: 18]
机译:驱动蛋白是一种运动蛋白,它将来自ATP水解的化学能转化为机械功,以沿微管运输细胞成分。我们用两种不同的体外测定系统研究了ATP依赖性微管驱动素的特性。使涂有涂层的玻璃微针(弹性系数为1-2.5 pNμm(-1))沿着轴突滑动,使用该系统,我们获得了微针上的力(=负载)与微针速度之间的关系-驱动蛋白在辅助状态下滑动,其中微管-驱动蛋白接触上的负荷随着滑动的进行而增加,力-速度曲线向上凸(最大速度V-max,0.58 +/- 0.15μms(-1);最大等轴测力P-0,5.0 +/- 1.6 pN),与在非声压条件下滑动的体外肌动蛋白-肌球蛋白相似,表明这两种运动蛋白系统具有共同的基本动力学特性。 m,使附着于玻璃微针的轴突(弹性系数为4-5 pNμm(-1))在涂有驱动蛋白的玻璃表面上滑动(V-max,0.68 +/- 0.17μms(-1) ); P-0,46.1 + 18.6 pN)。轴突形状的改变表明随机取向的驱动蛋白分子具有极大的灵活性。 [参考:18]

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