Rossjohn J, Feil S C, McKinstry W J, Tsernoglou D, van der Goot G, Buckley J T, Parker M W
Ian Potter Foundation Protein Crystallography Laboratory, St. Vincent's Institute of Medical Research, Fitzroy, Victoria, Australia.
J Struct Biol. 1998;121(2):92-100. doi: 10.1006/jsbi.1997.3947.
The determination of the crystal structure of the bacterial protein proaerolysin provided the first view of a pore-forming toxin constructed mainly from beta-sheet. The structure that was obtained and subsequent crystallographic and biochemical studies have together allowed us to explain how the toxin is transformed from a water-soluble dimer to a heptameric transmembrane pore. Recent discoveries of structural similarities between aerolysin and other toxins suggest that the structure/function studies we have made may prove useful in understanding the actions of a number of pore-forming proteins.
细菌蛋白原气溶素晶体结构的确定,首次揭示了一种主要由β折叠构成的成孔毒素的结构。所获得的结构以及后续的晶体学和生化研究,共同使我们能够解释该毒素是如何从水溶性二聚体转变为七聚体跨膜孔的。最近发现气溶素与其他毒素之间存在结构相似性,这表明我们所进行的结构/功能研究可能有助于理解许多成孔蛋白的作用。