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Structure-based Molecular Simulations Reveal the Enhancement of Biased Brownian Motions in Single-headed Kinesin

机译:基于结构的分子模拟揭示了单头驱动蛋白偏向布朗运动的增强。

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Kinesin is a family of molecular motors that move unidirectionally along microtubules (MT) using ATP hydrolysis free energy. In the family, the conventional two-headed kinesin was experimentally characterized to move unidirectionally through “walking” in a hand-over-hand fashion by coordinated motions of the two heads. Interestingly a single-headed kinesin, a truncated KIF1A, still can generate a biased Brownian movement along MT, as observed by in vitro single molecule experiments. Thus, KIF1A must use a different mechanism from the conventional kinesin to achieve the unidirectional motions. Based on the energy landscape view of proteins, for the first time, we conducted a set of molecular simulations of the truncated KIF1A movements over an ATP hydrolysis cycle and found a mechanism exhibiting and enhancing stochastic forward-biased movements in a similar way to those in experiments. First, simulating stand-alone KIF1A, we did not find any biased movements, while we found that KIF1A with a large friction cargo-analog attached to the C-terminus can generate clearly biased Brownian movements upon an ATP hydrolysis cycle. The linked cargo-analog enhanced the detachment of the KIF1A from MT. Once detached, diffusion of the KIF1A head was restricted around the large cargo which was located in front of the head at the time of detachment, thus generating a forward bias of the diffusion. The cargo plays the role of a diffusional anchor, or cane, in KIF1A “walking.”
机译:驱动蛋白是分子马达家族,利用ATP水解自由能沿微管(MT)单向运动。在这个家庭中,传统的两头驱动蛋白的特征是通过两个头的协调运动以“越过”方式单向移动“行走”。有趣的是,单头驱动蛋白(一种截短的KIF1A)仍然可以沿MT产生偏布朗运动,如体外单分子实验所观察到的。因此,KIF1A必须使用与常规驱动蛋白不同的机制来实现单向运动。基于蛋白质的能量态势视图,我们首次对在ATP水解循环中截短的KIF1A运动进行了一系列分子模拟,发现了一种机制,该机制以类似于和增强KIF1A的随机向前偏运动的方式表现出来。实验。首先,模拟独立的KIF1A,我们没有发现任何偏斜的运动,而我们发现,在C末端连接大摩擦模拟物的KIF1A可以在ATP水解循环中产生明显偏斜的布朗运动。链接的模拟货物增强了MT与KIF1A的分离。一旦分离,KIF1A磁头的扩散就被限制在分离时位于磁头前面的大货物周围,从而产生扩散的正向偏差。货物在KIF1A“行走”中起着扩散锚或甘蔗的作用。

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