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表达血清型K2和K21a的肺炎克雷伯菌菌株之间荚膜多糖生物合成决定簇的基因交换。

Genetic exchange of determinants for capsular polysaccharide biosynthesis between Klebsiella pneumoniae strains expressing serotypes K2 and K21a.

作者信息

Ofek I, Kabha K, Athamna A, Frankel G, Wozniak D J, Hasty D L, Ohman D E

机构信息

Department of Human Microbiology, Sackler Faculty of Medicine, Tel-Aviv University, Israel.

出版信息

Infect Immun. 1993 Oct;61(10):4208-16. doi: 10.1128/iai.61.10.4208-4216.1993.

Abstract

The production of a capsular polysaccharide (CPS; K antigen) is characteristic of Klebsiella pneumoniae, but CPS structure varies among strains, and many different serotypes are now known. In this study, cps gene clusters encoding the elements of capsular polysaccharide biosynthesis were exchanged by homologous recombination between strains expressing different serotypes. The wild-type K. pneumoniae strains used for genetic exchange were KPA1 (cpsK2), expressing K2 CPS, and KPB1 (cpsK21a), expressing K21a CPS. Plasmid R68.45 was used to mobilize fragments of chromosomal DNA from auxotrophic derivatives of donor strains. Auxotrophic his alleles introduced into recipient strains provided selectable markers to coinherit the adjacent cps gene clusters from donors expressing a heterologous CPS. Each of the capsule-switched recombinants, KPA5 (cpsK21a) and KPB20 (cpsK2), was shown to have a CPS that was immunologically identical to the serotype of the respective donor. The recombinants retained their respective recipient strain background, as evidenced by a genetic marker and demonstration of a distinctive restriction fragment length polymorphism in genomic DNA. KPB1 CPS contained a sequence (mannose-alpha-2-mannose) that binds to a macrophage lectin and may be responsible for their higher susceptibility to macrophage binding and phagocytosis compared with KPA1, whose CPS lacked such sequences. The recombinant strains expressing heterologous cps genes inherited the macrophage-binding phenotype of the donor, thus confirming that relative susceptibility to phagocytosis was determined by the capsule type expressed. KPA1 was highly virulent in a mouse lethality assay, which is a feature typical of K2 strains, whereas KPB1 was not virulent in mice. Recombinant KPA5 retained relatively high virulence in mice, even though it produced the heterologous K21a CPS, which suggests that a virulence factor other than capsule biosynthesis is encoded by the KPA genomic strain background. In contrast, KPB20 gained marginal virulence in the mouse lethality assay through the inheritance and expression of the K2 CPS from the virulent strain. Thus, pathogenesis in K. pneumoniae may be multifactorial. Specific antibody was used to stabilize the CPS on the surface of K. pneumoniae, and the structural organization of the homologous and heterologous capsules was examined by electron microscopy. Recombinant KPB20, expressing heterologous K2 CPS, had a uniform layer of capsule surrounding the organism that was similar to that seen on the surfaces of the parental strains. However, KPA5, expressing the heterologous K21a CPS, was unusual in that the uniform capsular layer was physically separated from the cell wall by approximately 50 nm.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

荚膜多糖(CPS;K抗原)的产生是肺炎克雷伯菌的特征,但CPS结构在不同菌株间存在差异,目前已知有许多不同的血清型。在本研究中,编码荚膜多糖生物合成元件的cps基因簇通过表达不同血清型的菌株间同源重组进行交换。用于基因交换的野生型肺炎克雷伯菌菌株为表达K2 CPS的KPA1(cpsK2)和表达K21a CPS的KPB1(cpsK21a)。质粒R68.45用于从供体菌株的营养缺陷型衍生物中转移染色体DNA片段。引入受体菌株的营养缺陷型his等位基因提供了选择标记,以共同继承来自表达异源CPS的供体的相邻cps基因簇。每个荚膜转换重组体,KPA5(cpsK21a)和KPB20(cpsK2),均显示具有与各自供体血清型免疫相同的CPS。重组体保留了各自的受体菌株背景,这通过遗传标记以及基因组DNA中独特的限制性片段长度多态性得以证明。KPB1 CPS包含一个与巨噬细胞凝集素结合的序列(甘露糖-α-2-甘露糖),这可能是其比KPA1更容易被巨噬细胞结合和吞噬的原因,KPA1的CPS缺乏此类序列。表达异源cps基因的重组菌株继承了供体的巨噬细胞结合表型,从而证实对吞噬作用的相对敏感性由所表达的荚膜类型决定。在小鼠致死性试验中,KPA1具有高毒力,这是K2菌株的典型特征,而KPB1在小鼠中无毒力。重组体KPA5在小鼠中仍保留相对较高的毒力,尽管它产生异源K21a CPS,这表明除荚膜生物合成外,毒力因子由KPA基因组菌株背景编码。相反,KPB20通过从有毒力菌株继承和表达K2 CPS在小鼠致死性试验中获得了轻微毒力。因此,肺炎克雷伯菌的发病机制可能是多因素的。使用特异性抗体稳定肺炎克雷伯菌表面的CPS,并通过电子显微镜检查同源和异源荚膜的结构组织。表达异源K2 CPS的重组体KPB20在菌体周围有一层均匀的荚膜,类似于亲本菌株表面所见。然而,表达异源K21a CPS的KPA5则不同,其均匀的荚膜层与细胞壁在物理上相隔约50纳米。(摘要截断于400字)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0d1/281146/ea3fef1b1290/iai00022-0199-a.jpg

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