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从人和动物中分离出的不同小肠结肠炎耶尔森氏菌血清群中的外膜蛋白和质粒。

Outer membrane proteins and plasmids in different Yersinia enterocolitica serogroups isolated from man and animals.

作者信息

Kapperud G, Skarpeid H J, Solberg R, Bergan T

出版信息

Acta Pathol Microbiol Immunol Scand B. 1985 Feb;93(1):27-35. doi: 10.1111/j.1699-0463.1985.tb02847.x.

DOI:10.1111/j.1699-0463.1985.tb02847.x
PMID:3984743
Abstract

Human clinical isolates of Yersinia enterocolitica (serogroups 0:3, 0:8, and 0:9) harboured a 40-45 megadaltons plasmid, which was shared by strains isolated from cases of yersiniosis in animals (0:2 and 0:5) and from healthy swine (0:3 and 0:9). Possession of such plasmids was invariably correlated with expression of three temperature-regulated characteristics related to the bacterial surface: when cultivated at 37 degrees C, all plasmid-bearing strains, unlike their plasmid-cured mutants, (i) underwent autoagglutination, (ii) produced a distinct mannose-resistant haemagglutinin, and (iii) simultaneously synthesized ancillary outer membrane proteins (OMPs). None of these characters was expressed phenotypically at 22 degrees C. Dominant among the plasmid-associated, temperature-regulated OMPs was a high molecular weight protein of approximately 180 kilodaltons, which was found in strains of five different serogroups (0:2, 0:3, 0:5, 0:8, and 0:9) regardless of the source of isolation. Strains isolated from diseased animals and from healthy swine were quite similar, if not identical, to human clinical isolates with respect to these ancillary OMPs. In contrast to the plasmid-associated OMPs expressed only at 37 degrees C, a number of plasmid-independent OMPs were produced mainly at 22 degrees C.

摘要

小肠结肠炎耶尔森氏菌(血清群0:3、0:8和0:9)的人类临床分离株携带一个40 - 45兆道尔顿的质粒,从动物耶尔森氏菌病病例(0:2和0:5)以及健康猪(0:3和0:9)分离出的菌株也共享该质粒。拥有此类质粒总是与细菌表面相关的三种温度调节特性的表达相关:在37℃培养时,所有携带质粒的菌株,与其质粒消除突变体不同,(i)发生自凝,(ii)产生一种独特的抗甘露糖血凝素,以及(iii)同时合成辅助外膜蛋白(OMP)。在22℃时这些特性均未表型表达。在与质粒相关的、温度调节的OMP中占主导地位的是一种分子量约为180千道尔顿的高分子量蛋白,在五个不同血清群(0:2、0:3、0:5、0:8和0:9)的菌株中均有发现,无论分离来源如何。从患病动物和健康猪分离出的菌株在这些辅助OMP方面与人类临床分离株非常相似,甚至可以说是相同的。与仅在37℃表达的与质粒相关的OMP相反,一些不依赖质粒的OMP主要在22℃产生。

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