Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, United States.
Laboratory of Physiology, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, United States.
Elife. 2018 Jun 26;7:e36306. doi: 10.7554/eLife.36306.
We investigated the role of full-length Bicaudal D (BicD) binding partners in dynein-dynactin activation for mRNA transport on microtubules. Full-length BicD robustly activated dynein-dynactin motility only when both the mRNA binding protein Egalitarian (Egl) and mRNA cargo were present, and electron microscopy showed that both Egl and mRNA were needed to disrupt a looped, auto-inhibited BicD conformation. BicD can recruit two dimeric dyneins, resulting in faster speeds and longer runs than with one dynein. Moving complexes predominantly contained two Egl molecules and one mRNA. This mRNA-bound configuration makes Egl bivalent, likely enhancing its avidity for BicD and thus its ability to disrupt BicD auto-inhibition. Consistent with this idea, artificially dimerized Egl activates dynein-dynactin-BicD in the absence of mRNA. The ability of mRNA cargo to orchestrate the activation of the mRNP (messenger ribonucleotide protein) complex is an elegant way to ensure that only cargo-bound motors are motile.
我们研究了全长 Bicaudal D(BicD)结合伴侣在 mRNA 沿微管运输过程中对动力蛋白-动力蛋白激活复合物的作用。只有当 mRNA 结合蛋白 Egalitarian(Egl)和 mRNA 货物都存在时,全长 BicD 才能强烈激活动力蛋白-动力蛋白激活复合物的运动,电子显微镜显示,Egl 和 mRNA 都需要破坏一个成环的、自动抑制的 BicD 构象。BicD 可以招募两个二聚体动力蛋白,从而产生比一个动力蛋白更快的速度和更长的运行距离。移动复合物主要包含两个 Egl 分子和一个 mRNA。这种结合了 mRNA 的构型使 Egl 具有二价性,可能增强了其与 BicD 的亲和力,从而增强了其破坏 BicD 自动抑制的能力。与这一观点一致的是,人工二聚化的 Egl 在没有 mRNA 的情况下也能激活动力蛋白-动力蛋白激活复合物。mRNA 货物协调 mRNP(信使核糖核蛋白)复合物的激活的能力是一种确保只有结合货物的马达能够运动的巧妙方式。