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Structural conformation of ciliary dynein arms and the generation of sliding forces in Tetrahymena cilia

机译:纤毛膜纤毛中睫状达因素臂的结构构象和滑动力的产生

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摘要

The sliding tubule model of ciliary motion requires that active sliding of microtubules occur by cyclic cross-bridging of the dynein arms. When isolated, demembranated Tetrahymena cilia are allowed to spontaneously disintegrate in the presence of ATP, the structural conformation of the dynein arms can be clearly resolved by negative contrast electron microscopy. The arms consist of three structural subunits that occur in two basic conformations with respect to the adjacent B subfiber. The inactive conformation occurs in the absence of ATP and is characterized by a uniform, 32 degrees base-directed polarity of the arms. Inactive arms are not attached to the B subfiber of adjacent doublets. The bridged conformation occurs strictly in the presence of ATP and is characterized by arms having the same polarity as inactive arms, but the terminal subunit of the arms has become attached to the B subfiber. In most instances the bridged conformation is accompanied by substantial tip-directed sliding displacement of the bridged doublets. Because the base-directed polarity of the bridged arms is opposite to the direction required for force generation in these cilia and because the bridges occur in the presence of ATP, it is suggested that the bridged conformation may represent the initial attachment phase of the dynein cross-bridge cycle. The force-generating phase of the cycle would then require a tip-directed deflection of the arm subunit attached to the B subfiber.
机译:纤毛运动的滑动小管模型要求微管的主动滑动是通过动力蛋白臂的周期性交叉桥发生的。当分离时,允许去膜的四膜膜纤毛在ATP存在下自发分解,可以通过负对比电子显微镜清楚地分辨出动力蛋白臂的结构构象。臂由三个结构亚单元组成,相对于相邻的B亚纤维,它们以两种基本构象出现。非活性构象在不存在ATP的情况下发生,其特征是臂的均匀32位碱基指向极性。无效的臂未连接到相邻双峰的B子纤维上。桥接构象严格在ATP存在下发生,并且特征在于具有与非活性臂相同极性的臂,但是臂的末端亚基已连接至B亚纤维。在大多数情况下,桥连构型伴随着桥连双峰的大量末端导向的滑动位移。由于桥接臂的碱基指向极性与这些纤毛中产生力的方向相反,并且由于桥接是在存在ATP的情况下发生的,因此建议桥接构象可能代表了达力宁十字的初始附着相-桥接周期。循环的力产生阶段将需要连接到B子纤维的臂子单元的尖端定向偏转。

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