Department of Physics, Faculty of Science and Engineering, Waseda University, Tokyo, Japan.
Nat Chem Biol. 2010 Apr;6(4):300-5. doi: 10.1038/nchembio.322. Epub 2010 Mar 14.
The dimeric motor myosin V transports organelles along actin filament tracks over long distances in cells. Myosin V is a smart 'walker' that is able to swiftly adjust to variable 'road conditions' to continue its processive movement across dense cellular environments. Coordination between the two heads via intramolecular load modulates biochemical kinetics and ensures highly efficient unidirectional motion. However, little is known about how load-induced regulation of the processive stepping occurs in vivo, where myosin V experiences significant off-axis loads applied in various directions. To reveal how myosin V remains processive in cells, we measured the effect of the off-axis loads, applied to individual actomyosin V bonds in a range of angles, on the coordination between the two heads and myosin V processive stepping. We found that myosin V remains highly processive under diagonal loads owing to asymmetrical ADP affinities and that the native 6IQ lever optimizes the subunit coordination, which indicates that myosin V is designed to be an intracellular transporter.
二聚体马达肌球蛋白 V 可在细胞内沿肌动蛋白丝轨道长距离运输细胞器。肌球蛋白 V 是一种聪明的“行走者”,能够迅速适应可变的“路况”,继续在密集的细胞环境中进行连续运动。通过分子内负载的协调来调节生化动力学,确保高效的单向运动。然而,对于肌球蛋白 V 在体内如何在经历各种方向的非轴向负载时发生负载诱导的调控过程,我们知之甚少。为了揭示肌球蛋白 V 在细胞内保持连续运动的机制,我们测量了施加在肌球蛋白 V 与肌动蛋白的各个键上的非轴向负载对两个头部之间的协调以及肌球蛋白 V 连续运动的影响。我们发现,由于 ADP 亲和力的不对称性,肌球蛋白 V 在对角负载下仍具有高度连续性,并且天然的 6IQ 杠杆优化了亚基协调,这表明肌球蛋白 V 是一种设计用于细胞内运输的蛋白质。