Suppr超能文献

最快的运动蛋白——轮藻肌球蛋白的动力学机制。

Kinetic mechanism of the fastest motor protein, Chara myosin.

作者信息

Ito Kohji, Ikebe Mitsuo, Kashiyama Taku, Mogami Toshifumi, Kon Takahide, Yamamoto Keiichi

机构信息

Department of Biology, Chiba University, Inage-ku, Chiba 263-8522, Japan.

出版信息

J Biol Chem. 2007 Jul 6;282(27):19534-45. doi: 10.1074/jbc.M611802200. Epub 2007 May 7.

Abstract

Chara corallina class XI myosin is by far the fastest molecular motor. To investigate the molecular mechanism of this fast movement, we performed a kinetic analysis of a recombinant motor domain of Chara myosin. We estimated the time spent in the strongly bound state with actin by measuring rate constants of ADP dissociation from actin.motor domain complex and ATP-induced dissociation of the motor domain from actin. The rate constant of ADP dissociation from acto-motor domain was >2800 s(-1), and the rate constant of ATP-induced dissociation of the motor domain from actin at physiological ATP concentration was 2200 s(-1). From these data, the time spent in the strongly bound state with actin was estimated to be <0.82 ms. This value is the shortest among known values for various myosins and yields the duty ratio of <0.3 with a V(max) value of the actin-activated ATPase activity of 390 s(-1). The addition of the long neck domain of myosin Va to the Chara motor domain largely increased the velocity of the motility without increasing the ATP hydrolysis cycle rate, consistent with the swinging lever model. In addition, this study reveals some striking kinetic features of Chara myosin that are suited for the fast movement: a dramatic acceleration of ADP release by actin (1000-fold) and extremely fast ATP binding rate.

摘要

轮藻珊瑚藻十一类肌球蛋白是迄今为止最快的分子马达。为了研究这种快速运动的分子机制,我们对轮藻肌球蛋白的重组马达结构域进行了动力学分析。我们通过测量ADP从肌动蛋白-马达结构域复合物解离的速率常数以及ATP诱导马达结构域从肌动蛋白解离的速率常数,估算了马达结构域与肌动蛋白紧密结合状态下所花费的时间。ADP从肌动蛋白-马达结构域解离的速率常数>2800 s⁻¹,在生理ATP浓度下,ATP诱导马达结构域从肌动蛋白解离的速率常数为2200 s⁻¹。根据这些数据,估算出马达结构域与肌动蛋白紧密结合状态下所花费的时间<0.82毫秒。该值是各种肌球蛋白已知值中最短的,在肌动蛋白激活的ATP酶活性的V(max)值为390 s⁻¹时,产生的占空比<0.3。将肌球蛋白Va的长颈部结构域添加到轮藻马达结构域上,在不增加ATP水解循环速率的情况下,大大提高了运动速度,这与摆动杠杆模型一致。此外,本研究揭示了轮藻肌球蛋白一些适合快速运动的显著动力学特征:肌动蛋白使ADP释放显著加速(1000倍)以及ATP结合速率极快。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验