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Myo4p is a monomeric myosin with motility uniquely adapted to transport mRNA

机译:Myo4p是一种单体肌球蛋白具有独特的运动能力可以转运mRNA

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摘要

The yeast Saccharomyces cerevisiae uses two class V myosins to transport cellular material into the bud: Myo2p moves secretory vesicles and organelles, whereas Myo4p transports mRNA. To understand how Myo2p and Myo4p are adapted to transport physically distinct cargos, we characterize Myo2p and Myo4p in yeast extracts, purify active Myo2p and Myo4p from yeast lysates, and analyze their motility. We find several striking differences between Myo2p and Myo4p. First, Myo2p forms a dimer, whereas Myo4p is a monomer. Second, Myo4p generates higher actin filament velocity at lower motor density. Third, single molecules of Myo2p are weakly processive, whereas individual Myo4p motors are nonprocessive. Finally, Myo4p self-assembles into multi-motor complexes capable of processive motility. We show that the unique motility of Myo4p is not due to its motor domain and that the motor domain of Myo2p can transport ASH1 mRNA in vivo. Our results suggest that the oligomeric state of Myo4p is important for its motility and ability to transport mRNA.
机译:酵母酿酒酵母使用两种V类肌球蛋白将细胞物质转运到芽中:Myo2p移动分泌性囊泡和细胞器,而Myo4p转运mRNA。为了了解Myo2p和Myo4p如何适应运输物理上不同的货物,我们对酵母提取物中的Myo2p和Myo4p进行了表征,从酵母裂解物中纯化了活性Myo2p和Myo4p,并分析了它们的运动能力。我们发现Myo2p和Myo4p之间有一些明显的不同。首先,Myo2p形成二聚体,而Myo4p是单体。其次,Myo4p在较低的马达密度下产生较高的肌动蛋白丝速度。第三,Myo2p的单分子是弱过程性的,而单个Myo4p马达是非过程性的。最后,Myo4p自组装成能够进行运动的多运动复合体。我们显示,Myo4p的独特动力不是由于其运动结构域,而是Myo2p的运动结构域可以在体内转运ASH1 mRNA。我们的结果表明,Myo4p的寡聚状态对于其运动性和转运mRNA的能力很重要。

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