São Carlos Institute of Physics, USP, São Carlos, SP, Brazil.
Brazilian Nanotechnology National Laboratory, CNPEM, Campinas, SP, Brazil.
J Mol Biol. 2021 Jul 23;433(15):167096. doi: 10.1016/j.jmb.2021.167096. Epub 2021 Jun 9.
In order to form functional filaments, human septins must assemble into hetero-oligomeric rod-like particles which polymerize end-to-end. The rules governing the assembly of these particles and the subsequent filaments are incompletely understood. Although crystallographic approaches have been successful in studying the separate components of the system, there has been difficulty in obtaining high resolution structures of the full particle. Here we report a first cryo-EM structure for a hexameric rod composed of human septins 2, 6 and 7 with a global resolution of ~3.6 Å and a local resolution of between ~3.0 Å and ~5.0 Å. By fitting the previously determined high-resolution crystal structures of the component subunits into the cryo-EM map, we are able to provide an essentially complete model for the particle. This exposes SEPT2 NC-interfaces at the termini of the hexamer and leaves internal cavities between the SEPT6-SEPT7 pairs. The floor of the cavity is formed by the two α helices including their polybasic regions. These are locked into place between the two subunits by interactions made with the α and α helices of the neighbouring monomer together with its polyacidic region. The cavity may serve to provide space allowing the subunits to move with respect to one another. The elongated particle shows a tendency to bend at its centre where two copies of SEPT7 form a homodimeric G-interface. Such bending is almost certainly related to the ability of septin filaments to recognize and even induce membrane curvature.
为了形成功能性纤维,人类 septin 必须组装成异源寡聚棒状颗粒,这些颗粒通过末端到末端聚合。这些颗粒和随后的纤维的组装规则尚未完全理解。尽管晶体学方法在研究该系统的单独成分方面取得了成功,但获得完整颗粒的高分辨率结构一直存在困难。在这里,我们报告了第一个由人类 septin 2、6 和 7 组成的六聚体棒的冷冻电镜结构,整体分辨率约为 3.6Å,局部分辨率在 3.0Å 至 5.0Å 之间。通过将先前确定的高分辨率晶体结构的组件亚基拟合到冷冻电镜图谱中,我们能够为该颗粒提供一个基本完整的模型。这暴露了六聚体末端的 SEPT2 NC 界面,并在 SEPT6-SEPT7 对之间留下了内部空腔。空腔的底部由包括其多碱性区域的两个α螺旋形成。这些通过与相邻单体的α和α螺旋及其多酸性区域的相互作用被锁定在两个亚基之间。空腔可能为允许亚基相互移动提供空间。拉长的颗粒在其中心有弯曲的趋势,其中两个 SEPT7 形成同源二聚体 G-界面。这种弯曲几乎肯定与 septin 纤维识别甚至诱导膜曲率的能力有关。