Atkins A, Wyborn N R, Wallace A J, Stillman T J, Black L K, Fielding A B, Hisakado M, Artymiuk P J, Green J
Krebs Institute, Department of Molecular Biology and Biotechnology, University of Sheffield, Sheffield S10 2TN, United Kingdom.
J Biol Chem. 2000 Dec 29;275(52):41150-5. doi: 10.1074/jbc.M005420200.
The novel pore-forming toxin hemolysin E (HlyE, ClyA, or SheA) consists of a long four-helix bundle with a subdomain (beta tongue) that interacts with target membranes at one pole and an additional helix (alpha(G)) that, with the four long helices, forms a five-helix bundle (tail domain) at the other pole. Random amino acid substitutions that impair hemolytic activity were clustered mostly, but not exclusively, within the tail domain, specifically amino acids within, adjacent to, or interacting with alpha(G). Deletion of amino acids downstream of alpha(G) did not affect activity, but deletions encompassing alpha(G) yielded insoluble and inactive proteins. In the periplasm Cys-285 (alpha(G)) is linked to Cys-87 (alpha(B)) of the four-helix bundle via an intramolecular disulfide. Oxidized HlyE did not form spontaneously in vitro but could be generated by addition of Cu(II) or mimicked by treatment with Hg(II) salts to yield inactive proteins. Such treatments did not affect binding to target membranes nor assembly into non-covalently linked octameric complexes once associated with a membrane. However, gel filtration analyses suggested that immobilizing alpha(G) inhibits oligomerization in solution. Thus once associated with a membrane, immobilizing alpha(G) inhibits HlyE activity at a late stage of pore formation, whereas in solution it prevents aggregation and consequent inactivation.
新型成孔毒素溶血素E(HlyE、ClyA或SheA)由一个长的四螺旋束组成,该四螺旋束带有一个在一端与靶膜相互作用的亚结构域(β舌),以及另一个螺旋(α(G)),该螺旋与四个长螺旋在另一端形成一个五螺旋束(尾结构域)。损害溶血活性的随机氨基酸取代大多(但并非全部)聚集在尾结构域内,特别是在α(G)内、与α(G)相邻或与α(G)相互作用的氨基酸。删除α(G)下游的氨基酸不影响活性,但包含α(G)的缺失会产生不溶性和无活性的蛋白质。在周质中,半胱氨酸-285(α(G))通过分子内二硫键与四螺旋束的半胱氨酸-87(α(B))相连。氧化型HlyE在体外不会自发形成,但可通过添加铜(II)产生,或用汞(II)盐处理模拟产生,从而产生无活性的蛋白质。这些处理既不影响与靶膜的结合,也不影响一旦与膜结合后组装成非共价连接的八聚体复合物。然而,凝胶过滤分析表明,固定α(G)会抑制溶液中的寡聚化。因此,一旦与膜结合,固定α(G)会在孔形成的后期抑制HlyE活性,而在溶液中它会防止聚集和随之而来的失活。