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烟草肌球蛋白-11的动力学机制定义了一种新型的前进运动蛋白。

Kinetic mechanism of Nicotiana tabacum myosin-11 defines a new type of a processive motor.

作者信息

Diensthuber Ralph P, Tominaga Motoki, Preller Matthias, Hartmann Falk K, Orii Hidefumi, Chizhov Igor, Oiwa Kazuhiro, Tsiavaliaris Georgios

机构信息

Institute for Biophysical Chemistry, Hannover Medical School, Hannover, Germany;

Live Cell Molecular Imaging Research Team, RIKEN Center for Advanced Photonics, Wako, Saitama, Japan; Science and Technology Agency, PRESTO, Saitama, Japan;

出版信息

FASEB J. 2015 Jan;29(1):81-94. doi: 10.1096/fj.14-254763. Epub 2014 Oct 17.

Abstract

The 175-kDa myosin-11 from Nicotiana tabacum (Nt(175kDa)myosin-11) is exceptional in its mechanical activity as it is the fastest known processive actin-based motor, moving 10 times faster than the structurally related class 5 myosins. Although this ability might be essential for long-range organelle transport within larger plant cells, the kinetic features underlying the fast processive movement of Nt(175kDa)myosin-11 still remain unexplored. To address this, we generated a single-headed motor domain construct and carried out a detailed kinetic analysis. The data demonstrate that Nt(175kDa)myosin-11 is a high duty ratio motor, which remains associated with actin most of its enzymatic cycle. However, different from other processive myosins that establish a high duty ratio on the basis of a rate-limiting ADP-release step, Nt(175kDa)myosin-11 achieves a high duty ratio by a prolonged duration of the ATP-induced isomerization of the actin-bound states and ADP release kinetics, both of which in terms of the corresponding time constants approach the total ATPase cycle time. Molecular modeling predicts that variations in the charge distribution of the actin binding interface might contribute to the thermodynamic fine-tuning of the kinetics of this myosin. Our study unravels a new type of a high duty ratio motor and provides important insights into the molecular mechanism of processive movement of higher plant myosins.

摘要

烟草(Nicotiana tabacum)的175 kDa肌球蛋白-11(Nt(175kDa)肌球蛋白-11)在机械活性方面表现出色,因为它是已知最快的基于肌动蛋白的持续性马达蛋白,其移动速度比结构相关的5类肌球蛋白快10倍。尽管这种能力对于大型植物细胞内的长距离细胞器运输可能至关重要,但Nt(175kDa)肌球蛋白-11快速持续性运动的动力学特征仍未得到探索。为了解决这个问题,我们构建了一个单头马达结构域并进行了详细的动力学分析。数据表明,Nt(175kDa)肌球蛋白-11是一种高占空比马达蛋白,在其大部分酶促循环中都与肌动蛋白结合。然而,与其他基于限速ADP释放步骤建立高占空比的持续性肌球蛋白不同,Nt(175kDa)肌球蛋白-11通过延长ATP诱导的肌动蛋白结合状态异构化持续时间和ADP释放动力学来实现高占空比,这两个过程的相应时间常数都接近总ATP酶循环时间。分子建模预测,肌动蛋白结合界面电荷分布的变化可能有助于对这种肌球蛋白动力学进行热力学微调。我们的研究揭示了一种新型的高占空比马达蛋白,并为高等植物肌球蛋白持续性运动的分子机制提供了重要见解。

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