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Kinesin crouches to sprint but resists pushing.

机译:Kinesin蹲伏着冲刺,但拒绝推动。

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Recent optical trap experiments have applied resisting, assisting, and sideways loads to conventional kinesin moving on microtubules at fixed [ATP]. To gain insight into intermediate motions when the motor protein takes its 8.2-nm steps, the velocity and randomness data have been analyzed by using discrete-state stochastic models with a three-dimensional "energy landscape." The bead size and tether angle play a crucial role. The analysis implies that on binding ATP the motor crouches, junction moving downward toward the microtubule by 0.5-0.7 nm, while inching forward by only 0.1-0.2 nm, before completing the step from a transition state by a unitary "sprint" of approximately 7.8 nm. These inferences accord with high-resolution observations that exclude a previously predicted substep of 1.8-2.1 nm. Assisting and leftward loads are opposed in that the perpendicular component of the tension in the tether is enhanced by approximately 2 pN, which reduces the velocity, but sideways lurching is not supported.
机译:最近的光阱实验已对固定于[ATP]的微管上移动的常规驱动蛋白施加了阻力,辅助作用和侧向载荷。为了深入了解运动蛋白以8.2 nm步进时的中间运动,通过使用具有三维“能量分布”的离散状态随机模型对速度和随机性数据进行了分析。珠子的大小和系绳角度起着至关重要的作用。分析表明,在结合ATP时,马达会蹲伏,连接处朝着微管向下移动0.5-0.7 nm,而仅向前移动0.1-0.2 nm,然后从过渡状态开始以大约7.8的单一“冲刺”完成步纳米这些推论与高分辨率观察结果一致,该高分辨率观察结果排除了先前预测的1.8-2.1 nm子步骤。辅助和向左的负载是相反的,因为系绳中张力的垂直分量增加了大约2 pN,这降低了速度,但不支持侧向倾斜。

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