Department of Biology, Drexel University, Philadelphia, PA 19104.
Mol Biol Cell. 2019 Nov 1;30(23):2913-2928. doi: 10.1091/mbc.E19-07-0362. Epub 2019 Oct 2.
Septins (SEPTs) are filamentous guanosine-5'-triphosphate (GTP)-binding proteins, which affect microtubule (MT)-dependent functions including membrane trafficking and cell division, but their precise role in MT dynamics is poorly understood. Here, in vitro reconstitution of MT dynamics with SEPT2/6/7, the minimal subunits of septin heteromers, shows that SEPT2/6/7 has a biphasic concentration-dependent effect on MT growth. Lower concentrations of SEPT2/6/7 enhance MT plus-end growth and elongation, while higher and intermediate concentrations inhibit and pause plus-end growth, respectively. We show that SEPT2/6/7 has a modest preference for GTP- over guanosine diphosphate (GDP)-bound MT lattice and competes with end-binding protein 1 (EB1) for binding to guanosine 5'--[γ-thio]triphosphate (GTPγS)-stabilized MTs, which mimic the EB1-preferred GDP-Pi state of polymerized tubulin. Strikingly, SEPT2/6/7 triggers EB1 dissociation from plus-end tips in by binding to the MT lattice and in when MT plus ends collide with SEPT2/6/7 filaments. At these intersections, SEPT2/6/7 filaments were more potent barriers than actin filaments in pausing MT growth and dissociating EB1 in vitro and in live cells. These data demonstrate that SEPT2/6/7 complexes and filaments can directly impact MT plus-end growth and the tracking of plus end-binding proteins and thereby may facilitate the capture of MT plus ends at intracellular sites of septin enrichment.
septins (SEPTs) 是丝状鸟嘌呤核苷酸-5'-三磷酸 (GTP) 结合蛋白,影响微管 (MT) 依赖的功能,包括膜运输和细胞分裂,但它们在 MT 动力学中的精确作用知之甚少。在这里,用 SEPT2/6/7(septin 异源三聚体的最小亚基)体外重建 MT 动力学,表明 SEPT2/6/7 对 MT 生长具有双相浓度依赖性影响。较低浓度的 SEPT2/6/7 增强 MT 加端生长和伸长,而较高和中等浓度分别抑制和暂停加端生长。我们表明 SEPT2/6/7 对 GDP 结合 MT 晶格具有适度的 GTP 偏好,并与末端结合蛋白 1 (EB1) 竞争结合鸟苷 5'--[γ-硫]三磷酸 (GTPγS)-稳定的 MT,模拟 EB1 优先的聚合微管的 GDP-Pi 状态。引人注目的是,SEPT2/6/7 通过与 MT 晶格结合,在 MT 加端与 SEPT2/6/7 纤维碰撞时触发 EB1 从加端尖端解离,从而触发 EB1 从加端尖端解离。在这些交点处,SEPT2/6/7 纤维比肌动蛋白纤维在体外和活细胞中更有效地阻止 MT 生长并解离 EB1。这些数据表明 SEPT2/6/7 复合物和纤维可以直接影响 MT 加端生长和加端结合蛋白的追踪,从而可能有助于在细胞内富含 septin 的部位捕获 MT 加端。