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不仅仅是一个货物适配器,黑素磷蛋白延长并减缓肌球蛋白 Va 的连续运行。

More than just a cargo adapter, melanophilin prolongs and slows processive runs of myosin Va.

机构信息

From the Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, Vermont 05405.

出版信息

J Biol Chem. 2013 Oct 11;288(41):29313-22. doi: 10.1074/jbc.M113.476929. Epub 2013 Aug 26.

Abstract

Myosin Va (myoVa) is a molecular motor that processively transports cargo along actin tracks. One well studied cargo in vivo is the melanosome, a pigment organelle that is moved first by kinesin on microtubules and then handed off to myoVa for transport in the actin-rich dendritic periphery of melanocytes. Melanophilin (Mlph) is the adapter protein that links Rab27a-melanosomes to myoVa. Using total internal reflection fluorescence microscopy and quantum dot-labeled full-length myoVa, we show at the single-molecule level that Mlph increases the number of processively moving myoVa motors by 17-fold. Surprisingly, myoVa-Mlph moves ~4-fold slower than myoVa alone and with twice the run length. These two changes greatly increase the time spent on actin, a property likely to enhance the transfer of melanosomes to the adjacent keratinocyte. In contrast to the variable stepping pattern of full-length myoVa, the myoVa-Mlph complex shows a normal gating pattern between the heads typical of a fully active motor and consistent with a cargo-dependent activation mechanism. The Mlph-dependent changes in myoVa depend on a positively charged cluster of amino acids in the actin binding domain of Mlph, suggesting that Mlph acts as a "tether" that links the motor to the track. Our results provide a molecular explanation for the uncharacteristically slow speed of melanosome movement by myoVa in vivo. More generally, these data show that proteins that link motors to cargo can modify motor properties to enhance their biological role.

摘要

肌球蛋白 Va(myoVa)是一种沿肌动蛋白轨道进行连续运输货物的分子马达。在体内,研究得比较透彻的货物之一是黑素体,这是一种色素细胞器,最初由驱动蛋白沿微管运输,然后由肌球蛋白 Va 接手,在黑素细胞富含肌动蛋白的树突状边缘进行运输。黑素瘤关联蛋白(Mlph)是将 Rab27a-黑素体连接到肌球蛋白 Va 的衔接蛋白。使用全内反射荧光显微镜和量子点标记的全长肌球蛋白 Va,我们在单分子水平上表明,Mlph 将连续运动的肌球蛋白 Va 马达的数量增加了 17 倍。令人惊讶的是,肌球蛋白 Va-Mlph 的运动速度比单独的肌球蛋白 Va 慢 4 倍,运行长度也增加了两倍。这两个变化大大增加了肌球蛋白 Va 在肌动蛋白上的停留时间,这一特性可能增强了黑素体向相邻角质形成细胞的转移。与全长肌球蛋白 Va 的可变步移模式相反,肌球蛋白 Va-Mlph 复合物显示出典型的完全活性马达的头部之间的正常门控模式,与依赖货物的激活机制一致。肌球蛋白 Va 中依赖 Mlph 的变化取决于 Mlph 肌动蛋白结合域中带正电荷的氨基酸簇,这表明 Mlph 充当“系绳”,将马达与轨道连接起来。我们的结果为肌球蛋白 Va 在体内驱动黑素体运动的异常缓慢速度提供了分子解释。更普遍地说,这些数据表明,将马达与货物连接的蛋白质可以修饰马达特性,以增强其生物学作用。

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