首页> 外文期刊>The Journal of biological chemistry >Membrane-induced Lever Arm Expansion Allows Myosin VI to Walk with Large and Variable Step Sizes
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Membrane-induced Lever Arm Expansion Allows Myosin VI to Walk with Large and Variable Step Sizes

机译:膜诱导的杠杆臂膨胀允许肌球蛋白vi用大而可变的一步尺寸走动

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Myosin VI, the only known minus-ended actin filament-dependent motor, plays diverse cellular roles both as a processive motor and as a mechanical anchor. Although myosin VI has a short lever arm containing only one “IQ-motif” and a unique insertion for CaM binding, the motor walks with large and variable step sizes of ~30–36 nm. Here, we show that the previously predicted coiled-coil domain immediately following the IQ-motifs (referred to as the lever arm extension (LAE)) adopts a stable monomeric, three-helix bundle fold in solution. Importantly, the LAE can undergo reversible, lipid membrane-dependent conformational changes. Upon exposure to lipid membranes, the LAE adopts a partially extended rod shape, and the removal of lipids from the LAE converts it back into the compact helix bundle structure. Molecular dynamics simulations indicate that lipid membrane binding may initiate unfolding and thereby trigger the LAE expansion. This reversible, lipid membrane-dependent expansion of the LAE provides a mechanistic base for myosin VI to walk with large and variable step sizes.
机译:肌球蛋白VI,唯一已知的减去肌动蛋白依赖性电动机,既可以作为加工电机和机械锚定多样的蜂窝角色。虽然肌球蛋白VI具有仅包含一个“IQ-MOTIF”的短杠杆臂和凸轮绑定的独特插入,但电机带有大而可变的尺寸为约30-36nm。这里,我们示出了先前预测的卷绕式线圈域之后的IQ-拍摄件(称为杠杆臂扩展(LaE))采用稳定的单体,三螺旋束折叠在溶液中。重要的是,LAE可以经历可逆的脂质膜依赖性构象变化。在暴露于脂质膜上时,LaE采用部分延伸的杆状,并且从LaE的脂质的去除将其转换回紧凑的螺旋束结构。分子动力学模拟表明脂膜结合可以引发展开,从而触发LAE膨胀。这种可逆的,Lae的脂质膜依赖性膨胀为肌球蛋白VI提供了一种机械基础,以便使用大而可变的阶梯尺寸。

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