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大肠杆菌血清抗性的研究。

Studies on serum resistance in Escherichia coli.

作者信息

Kubens B S, Opferkuch W

机构信息

Institut für Hygiene und Mikrobiologie, Ruhr-Universität Bochum.

出版信息

Zentralbl Bakteriol Mikrobiol Hyg A. 1988 Nov;270(1-2):52-65. doi: 10.1016/s0176-6724(88)80141-x.

Abstract

Serum-sensitive mutants and their serum-resistant smooth parental E. coli strains (Wf8, Wf26, and WF 52) have been investigated in respect to their binding of different complement components. These pairs consisting of a wild-type and its mutants represent a better model for the investigation of the mechanism of serum resistance than the comparison of unrelated strains. Both strains of a pair bind equivalent amounts of C3. In binding assays using radiolabeled terminal components C6, C7, C8, and C9, the serum-sensitive strains do bind more late acting components than their resistant parental strains. An active membrane attack complex stably bound to the cell surface was found on the mutants, whereas with wild-type bacteria a complex could be isolated from the supernatant which is composed of the late acting complement components and S-protein. This complex is released from the surface of the wild-type bacteria without participation of C9.

摘要

已经对血清敏感突变体及其血清抗性光滑亲本大肠杆菌菌株(Wf8、Wf26和WF 52)结合不同补体成分的情况进行了研究。由野生型及其突变体组成的这些配对,相较于不相关菌株的比较,是研究血清抗性机制的更好模型。一对菌株中,两种菌株结合等量的C3。在使用放射性标记的终末成分C6、C7、C8和C9的结合试验中,血清敏感菌株比其抗性亲本菌株确实结合更多的后期作用成分。在突变体上发现有活性的膜攻击复合物稳定地结合在细胞表面,而对于野生型细菌,可从上清液中分离出一种复合物,该复合物由后期作用的补体成分和S蛋白组成。这种复合物在没有C9参与的情况下从野生型细菌表面释放出来。

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