Creative Research Institution Sousei, Hokkaido University, Sapporo 001-0021, Japan.
Protein Sci. 2011 Feb;20(2):448-56. doi: 10.1002/pro.579.
Staphylococcal α-hemolysin is expressed as a water-soluble monomeric protein and assembles on membranes to form a heptameric pore structure. The heptameric pore structure of α-hemolysin can be prepared from monomer in vitro only in the presence of deoxycholate detergent micelles, artificially constructed phospholipid bilayers, or erythrocytes. Here, we succeeded in preparing crystals of the heptameric form of α-hemolysin without any detergent but with 2-methyl-2,4-pentanediol (MPD), and determined its structure. The structure of the heptameric pore was similar to that reported previously. In the structure, two molecules of MPD were bound around Trp179, around which phospholipid head groups were bound in the heptameric pore structure reported previously. Size exclusion chromatography showed that α-hemolysin did not assemble spontaneously even when stored for 1 year. SDS-PAGE analysis revealed that, among the compounds in the crystallizing buffer, MPD could induce heptamer formation. The concentration of MPD that most efficiently induced oligomerization was between 10 and 30%. Based on these observations, we propose MPD as a reagent that can facilitate heptameric pore formation of α-hemolysin without membrane binding.
葡萄球菌α-溶血素以水溶性单体蛋白的形式表达,并在膜上组装成七聚体孔结构。只有在去氧胆酸钠洗涤剂胶束、人工构建的磷脂双层或红细胞存在的情况下,α-溶血素的七聚体孔结构才能从单体在体外制备。在这里,我们成功地制备了无任何洗涤剂但有 2-甲基-2,4-戊二醇(MPD)的α-溶血素七聚体形式的晶体,并确定了其结构。七聚体孔的结构与以前报道的相似。在该结构中,两个 MPD 分子结合在 Trp179 周围,在以前报道的七聚体孔结构中,磷脂头部基团结合在 Trp179 周围。分子筛层析表明,即使储存 1 年,α-溶血素也不会自发组装。SDS-PAGE 分析表明,在结晶缓冲液中的化合物中,MPD 可以诱导七聚体形成。最有效地诱导寡聚化的 MPD 浓度在 10%至 30%之间。基于这些观察,我们提出 MPD 作为一种试剂,可在没有膜结合的情况下促进α-溶血素的七聚体孔形成。