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嗜温气单胞菌O:11血清型对补体介导杀伤的抗性

Mesophilic Aeromonas sp. serogroup O:11 resistance to complement-mediated killing.

作者信息

Merino S, Rubires X, Aguilar A, Albertí S, Hernandez-Allés S, Benedí V J, Tomas J M

机构信息

Departamento de Microbiología, Universidad de Barcelona, Spain.

出版信息

Infect Immun. 1996 Dec;64(12):5302-9. doi: 10.1128/iai.64.12.5302-5309.1996.

Abstract

The complement activation by and resistance to complement-mediated killing of Aeromonas sp. strains from serogroup O:11 were investigated by using different wild-type strains (with an S-layer characteristic of this serogroup) and their isogenic mutants characterized for their surface components (S-layer and lipopolysaccharide [LPS]). All of the Aeromonas sp. serogroup O:11 wild-type strains are unable to activate complement, which suggested that the S-layer completely covered the LPS molecules. We found that the classical complement pathway is involved in serum killing of susceptible Aeromonas sp. mutant strains of serogroup O11, while the alternative complement pathway seems not to be involved, and that the complement activation seems to be independent of antibody. The smooth mutant strains devoid of the S-layer (S-layer isogenic mutants) or isogenic LPS mutant strains with a complete or rather complete LPS core (also without the S-layer) are able to activate complement but are resistant to complement-mediated killing. The reasons for this resistance are that C3b is rapidly degraded, and therefore the lytic membrane attack complex (C5b-9) is not formed. Isogenic LPS rough mutants with an incomplete LPS core are serum sensitive because they bind more C3b than the resistant strains, the C3b is not completely degraded, and therefore the lytic complex (C5b-9) is formed.

摘要

利用不同的野生型菌株(具有该血清群的S层特征)及其经表面成分(S层和脂多糖[LPS])鉴定的同基因突变体,研究了O:11血清群气单胞菌菌株的补体激活情况以及对补体介导杀伤的抗性。所有O:11血清群气单胞菌野生型菌株均不能激活补体,这表明S层完全覆盖了LPS分子。我们发现经典补体途径参与了O11血清群易感气单胞菌突变菌株的血清杀伤作用,而替代补体途径似乎未参与其中,并且补体激活似乎与抗体无关。缺乏S层的光滑突变菌株(S层同基因突变体)或具有完整或相当完整LPS核心(同样无S层)的同基因LPS突变菌株能够激活补体,但对补体介导的杀伤具有抗性。这种抗性的原因是C3b迅速降解,因此未形成溶细胞性膜攻击复合物(C5b-9)。具有不完整LPS核心的同基因LPS粗糙突变体对血清敏感,因为它们比抗性菌株结合更多的C3b,C3b未被完全降解,因此形成了溶细胞复合物(C5b-9)。

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本文引用的文献

3
Effect of growth temperature on complement-mediated killing of mesophilic Aeromonas spp. serotype O:34.
FEMS Microbiol Lett. 1994 May 1;118(1-2):163-6. doi: 10.1111/j.1574-6968.1994.tb06820.x.

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