Furukawa Yukio, Imada Katsumi, Vonderviszt Ferenc, Matsunami Hideyuki, Sano Ken-ichi, Kutsukake Kazuhiro, Namba Keiichi
Protonic NanoMachine Project, ERATO, JST, 3-4 Hikaridai, Seika, Kyoto 619-0237, Japan.
J Mol Biol. 2002 May 3;318(3):889-900. doi: 10.1016/S0022-2836(02)00139-0.
The axial structure of the bacterial flagellum is composed of many different proteins, such as hook protein and flagellin, and each protein forms a short or long axial segment one after another in a well-defined order along the axis. Under physiological conditions, most of these proteins are stable in the monomeric state in solution, and spontaneous polymerization appears to be suppressed, as demonstrated clearly for flagellin, probably to avoid undesirable self-assembly in the cytoplasmic space. However, no systematic studies of the possible associations between monomeric axial proteins in solution have been carried out. We therefore studied self and cross-association between hook protein, flagellin and three hook-associated proteins, HAP1, HAP2 and HAP3, in all possible pairs, by gel-filtration and analytical centrifugation, and found interactions in the following two cases only. Flagellin facilitated HAP3 aggregation into beta-amyloid-like filaments, but without stable binding between the two. Addition of HAP3 to HAP2 resulted in disassembly of preformed HAP2 decamers and formation of stable HAP2-HAP3 heterodimers. HAP2 missing either of its disordered terminal regions did not form the heterodimer, whereas HAP3 missing either of its disordered terminal regions showed stable heterodimer formation. This polarity in the heterodimer interactions suggests that the interactions between HAP2 and HAP3 in solution are basically the same as those in the flagellar axial structure. We discuss these results in relation to the assembly mechanism of the flagellum.
细菌鞭毛的轴向结构由许多不同的蛋白质组成,如钩形蛋白和鞭毛蛋白,并且每种蛋白质沿着轴以明确的顺序依次形成短的或长的轴向片段。在生理条件下,这些蛋白质中的大多数在溶液中以单体状态稳定存在,自发聚合似乎受到抑制,鞭毛蛋白的情况已得到明确证明,这可能是为了避免在细胞质空间中发生不良的自组装。然而,尚未对溶液中单体轴向蛋白质之间可能的关联进行系统研究。因此,我们通过凝胶过滤和分析离心,研究了钩形蛋白、鞭毛蛋白与三种钩相关蛋白HAP1、HAP2和HAP3之间所有可能组合的自缔合和交叉缔合,结果仅在以下两种情况下发现了相互作用。鞭毛蛋白促进HAP3聚集成β-淀粉样细丝,但两者之间没有稳定结合。向HAP2中添加HAP3会导致预先形成的HAP2十聚体解体,并形成稳定的HAP2-HAP3异二聚体。缺失其任一无序末端区域的HAP2不会形成异二聚体,而缺失其任一无序末端区域的HAP3则显示出稳定的异二聚体形成。这种异二聚体相互作用中的极性表明,溶液中HAP2和HAP3之间的相互作用与鞭毛轴向结构中的相互作用基本相同。我们结合鞭毛的组装机制讨论了这些结果。