Department of Biology, Drexel University, Philadelphia, PA 19104, USA.
Department of Biology, Drexel University, Philadelphia, PA 19104, USA.
Trends Cell Biol. 2021 Dec;31(12):979-993. doi: 10.1016/j.tcb.2021.06.004. Epub 2021 Jul 9.
The intracellular long-range transport of membrane vesicles and organelles is mediated by microtubule motors (kinesins, dynein) which move cargo with spatiotemporal accuracy and efficiency. How motors navigate the microtubule network and coordinate their activity on membrane cargo are fundamental but poorly understood questions. New studies show that microtubule-dependent membrane traffic is spatially controlled by septins - a unique family of multimerizing GTPases that associate with microtubules and membrane organelles. We review how septins selectively regulate motor interactions with microtubules and membrane cargo. We posit that septins provide a novel traffic code that specifies the movement and directionality of select motor-cargo complexes on distinct microtubule tracks.
细胞内的膜泡和细胞器的长距离运输是由微管马达(驱动蛋白、动力蛋白)介导的,这些马达以时空准确性和效率来移动货物。马达如何在微管网络中导航以及协调它们在膜货物上的活性是基本但尚未被充分理解的问题。新的研究表明,微管依赖性膜运输是由 septin (一种独特的多聚化 GTPase 家族)空间控制的,septin 与微管和膜细胞器结合。我们综述了 septin 如何选择性地调节马达与微管和膜货物的相互作用。我们假设 septin 提供了一种新的运输密码,指定了特定的马达-货物复合物在不同的微管轨道上的运动和方向性。