RIKEN Center for Life Science Technologies, Yokohama, Japan.
RIKEN SPring-8 Center, Hyogo, Japan.
J Cell Biol. 2018 Dec 3;217(12):4155-4163. doi: 10.1083/jcb.201711182. Epub 2018 Oct 1.
The Tau family microtubule-associated proteins (MAPs) promote microtubule stabilization and regulate microtubule-based motility. They share the C-terminal microtubule-binding domain, which includes three to five tubulin-binding repeats. Different numbers of repeats formed by alternative splicing have distinct effects on the activities of these proteins, and the distribution of these variants regulates fundamental physiological phenomena in cells. In this study, using cryo-EM, we visualized the MAP4 microtubule complex with the molecular motor kinesin-1. MAP4 bound to the C-terminal domains of tubulins along the protofilaments stabilizes the longitudinal contacts of the microtubule. The strongest bond of MAP4 was found around the intertubulin-dimer interface such that MAP4 coexists on the microtubule with kinesin-1 bound to the intratubulin-dimer interface as well. MAP4, consisting of five repeats, further folds and accumulates above the intertubulin-dimer interface, interfering with kinesin-1 movement. Therefore, these cryo-EM studies reveal new insight into the structural basis of microtubule stabilization and inhibition of kinesin motility by the Tau family MAPs.
微管相关蛋白 Tau 家族(MAPs)促进微管稳定并调节基于微管的运动。它们共享 C 端微管结合结构域,该结构域包含三到五个微管结合重复序列。通过选择性剪接形成的不同数量的重复序列对这些蛋白质的活性有不同的影响,这些变体的分布调节细胞中的基本生理现象。在这项研究中,我们使用 cryo-EM 可视化了与分子马达 kinesin-1 结合的 MAP4 微管复合物。MAP4 结合到沿原纤维的微管蛋白 C 末端结构域,稳定微管的纵向接触。在 MAP4 与结合到微管蛋白内二聚体界面的 kinesin-1 共存的情况下,我们发现 MAP4 与微管蛋白之间的最强结合发生在 tubulin-dimer 界面周围。由五个重复序列组成的 MAP4 进一步折叠并在 tubulin-dimer 界面上方堆积,干扰 kinesin-1 的运动。因此,这些 cryo-EM 研究揭示了 Tau 家族 MAPs 稳定微管和抑制 kinesin 运动的结构基础的新见解。