Zhang R G, Scott D L, Westbrook M L, Nance S, Spangler B D, Shipley G G, Westbrook E M
Center for Mechanistic Biology and Biotechnology, Argonne National Laboratory, IL 60439, USA.
J Mol Biol. 1995 Aug 25;251(4):563-73. doi: 10.1006/jmbi.1995.0456.
The clinical manifestations of cholera are largely attributable to the actions of a secreted hexameric AB5 enterotoxin (choleragen). We have independently solved and refined the three-dimensional structure of choleragen at 2.5 A resolution. The structure of the crystalline toxin closely resembles that described for the heat-labile enterotoxin from Escherichia coli (LT) with which it shares 80% sequence homology. In both cases, the wedge-shaped A subunit is loosely held high above the plane of the pentameric B subunits by the tethering A2 chain. The most striking difference between the two toxins occurs at the carboxyl terminus of the A2 chain. Whereas the last 14 residues of the A2 chain of LT threading through the central pore of the B5 assembly form an extended chain with a terminal loop, the A2 chain of choleragen remains a nearly continuous alpha-helix throughout its length. The four carboxyl-terminal residues of the A2 chain (KDEL sequence), disordered in the crystal structure of LT, are clearly visible in choleragen's electron-density map. In the accompanying article we describe the three-dimensional structure of the isolated B pentamer of cholera toxin (choleragenoid). Comparison of the crystalline coordinates of choleragen, choleragenoid, and LT provides a solid three-dimensional foundation for further experimental investigation. These structures, along with those of related toxins from Shigella dysenteria and Bordetella pertussis, offer a first step towards the rational design of new vaccines and anti-microbial agents.
霍乱的临床表现很大程度上归因于一种分泌型六聚体AB5肠毒素(霍乱毒素)的作用。我们已独立解析并精修了霍乱毒素在2.5埃分辨率下的三维结构。结晶毒素的结构与大肠杆菌不耐热肠毒素(LT)的结构极为相似,二者的序列同源性为80%。在这两种情况下,楔形的A亚基通过连接A2链松散地高悬于五聚体B亚基平面上方。这两种毒素最显著的差异出现在A2链的羧基末端。LT的A2链的最后14个残基穿过B5组装体的中央孔形成一条带有末端环的延伸链,而霍乱毒素的A2链在其整个长度上几乎保持连续的α螺旋结构。在LT的晶体结构中无序的A2链的四个羧基末端残基(KDEL序列)在霍乱毒素的电子密度图中清晰可见。在随附的文章中,我们描述了霍乱毒素分离的B五聚体(类霍乱毒素)的三维结构。霍乱毒素、类霍乱毒素和LT的晶体坐标比较为进一步的实验研究提供了坚实的三维基础。这些结构以及痢疾志贺菌和百日咳博德特氏菌相关毒素的结构为新型疫苗和抗菌剂的合理设计迈出了第一步。