Cell Biology Program, Hospital for Sick Children, Toronto, ON M5G 1X8, Canada.
Department of Biochemistry, University of Toronto, Toronto, ON M5G 1A8, Canada.
Mol Biol Cell. 2021 Feb 1;32(3):289-300. doi: 10.1091/mbc.E20-06-0398. Epub 2020 Dec 2.
Septins are conserved GTP-binding cytoskeletal proteins that polymerize into filaments by end-to-end joining of hetero-oligomeric complexes. In human cells, both hexamers and octamers exist, and crystallography studies predicted the order of the hexamers to be SEPT7-SEPT6-SEPT2-SEPT2-SEPT6-SEPT7, while octamers are thought to have the same core, but with SEPT9 at the ends. However, based on this septin organization, octamers and hexamers would not be expected to copolymerize due to incompatible ends. Here we isolated hexamers and octamers of specific composition from human cells and show that hexamers and octamers polymerize individually and, surprisingly, with each other. Binding of the Borg homology domain 3 (BD3) domain of Borg3 results in distinctive clustering of each filament type. Moreover, we show that the organization of hexameric and octameric complexes is inverted compared with its original prediction. This revised septin organization is congruent with the organization and behavior of yeast septins suggesting that their properties are more conserved than was previously thought.
septins 是保守的 GTP 结合细胞骨架蛋白,通过异源寡聚体复合物的末端到末端连接聚合成长丝。在人类细胞中,既存在六聚体也存在八聚体,晶体学研究预测六聚体的顺序为 SEPT7-SEPT6-SEPT2-SEPT2-SEPT6-SEPT7,而八聚体被认为具有相同的核心,但在末端有 SEPT9。然而,根据这种 septin 组织,由于末端不兼容,不应期望八聚体和六聚体共聚。在这里,我们从人类细胞中分离出具有特定组成的六聚体和八聚体,并表明六聚体和八聚体各自聚合,并且令人惊讶的是,它们彼此聚合。 Borg3 的 Borg 同源结构域 3 (BD3) 域的结合导致每种纤维类型的独特聚集。此外,我们表明,与最初的预测相比,六聚体和八聚体复合物的组织是颠倒的。这种修正的 septin 组织与酵母 septin 的组织和行为一致,表明它们的特性比以前认为的更保守。