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首页> 外文期刊>Journal of Molecular Biology >The elongation and contraction of actin bundles are induced by double-headed myosins in a motor concentration-dependent manner.
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The elongation and contraction of actin bundles are induced by double-headed myosins in a motor concentration-dependent manner.

机译:双头肌球蛋白以运动浓度依赖性方式诱导肌动蛋白束的伸长和收缩。

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摘要

Many types of myosin have been found and characterized to date, and already nearly 20 classes have been identified. However, these myosin motors can be classified more simply into two groups according to their head-structure, i.e. double- or single-headed myosins. Why do some myosin motors possess a double-headed structure? One obvious possible reason would be that the two heads improve the motor's processivity and sliding performance. Previously, to investigate the possibility that the double-headed myosins simultaneously interact with parallel arrayed two actin filaments in the presence of Mg-ATP, we developed an in vitro assay system using actin bundles formed by inert polymers. Using that system, we show here that skeletal muscle heavy meromyosin (HMM), a double-headed myosin derivative, but not subfragment-1 (S-1), a single-headed one, was able to contract or elongate actin bundles in a concentration-dependent manner. Similar elongation or contraction of actin bundles can also be induced by other double-headed myosin species isolated in the native state from Dictyostelium, from green algae Chara or from chicken brain. The results of this study confirm that double-headed myosin motors can induce sliding movements among neighboring actin filaments. The double-headed structure of myosins may also be important for generating tension or elongation in actin bundles or gels, and for organizing polarity-sorted actin networks, not just for improving their motor processivity or activity.
机译:迄今为止,已经发现了许多类型的肌球蛋白并对其进行了表征,并且已经确定了近20类。但是,根据它们的头部结构,可以将这些肌球蛋白马达更简单地分为两组,即双头或单头肌球蛋白。为什么某些肌球蛋白马达具有双头结构?一个明显的可能原因是两个磁头提高了电动机的工作效率和滑动性能。以前,为了研究在Mg-ATP存在下双头肌球蛋白同时与平行排列的两个肌动蛋白丝相互作用的可能性,我们开发了一种体外测定系统,该系统使用了由惰性聚合物形成的肌动蛋白束。使用该系统,我们在这里显示骨骼肌重肌球蛋白(HMM),一种双头肌球蛋白衍生物,而不是单片段的subfragment-1(S-1),能够在肌腱中收缩或拉长肌动蛋白束。浓度依赖性的方式。肌动蛋白束的类似的伸长或收缩也可以由天然状态下从双歧杆菌,绿藻Chara或鸡脑中分离出来的其他双头肌球蛋白来诱导。这项研究的结果证实了双头肌球蛋白电机可以引起相邻肌动蛋白丝之间的滑动运动。肌球蛋白的双头结构对于在肌动蛋白束或凝胶中产生张力或伸长,以及对极性排序的肌动蛋白网络进行组织,可能不仅对提高其运动能力或活性也很重要。

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