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霍乱弧菌甘露糖敏感血凝素分泌和结构亚基基因座的物理连锁:mshG编码序列的鉴定。

Physical linkage of the Vibrio cholerae mannose-sensitive hemagglutinin secretory and structural subunit gene loci: identification of the mshG coding sequence.

作者信息

Marsh J W, Sun D, Taylor R K

机构信息

Department of Microbiology, Dartmouth Medical School, Hanover, New Hampshire 03755, USA.

出版信息

Infect Immun. 1996 Feb;64(2):460-5. doi: 10.1128/iai.64.2.460-465.1996.

Abstract

Vibrio cholerae O1 expresses a variety of cell surface factors which mediate bacterial adherence and colonization at the intestinal epithelium. The mannose-sensitive hemagglutinin (MSHA), a type IV pilus, is a potential attachment factor of the V. cholerae El Tor biotype. We describe a TnphoA mutant that is defective in its ability to hemagglutinate mouse erythrocytes. The TnphoA insertion maps to a recently identified genetic locus that encodes products that are predicted to be essential for assembly and export of the MSHA pilus. Insertional disruption at this locus in a mshA-phoA reporter strain provides evidence for a role of this locus in the latter stages of pilus assembly and/or export. These constructs have provided physical markers by which we have established close physical linkage of this secretion locus to a set of genes that includes the mshA structural gene. Sequence analysis of the intervening region between these two loci has revealed the presence of an open reading frame with homology to pilus biogenesis genes of several gram-negative bacteria. This genetic organization suggests an entire operon encoding the MSHA pilus and the components necessary for its assembly and secretion to the bacterial cell surface. The nomenclature of the MSHA structural and secretory locus has been redefined accordingly.

摘要

霍乱弧菌O1型表达多种细胞表面因子,这些因子介导细菌在肠道上皮细胞的黏附和定植。甘露糖敏感血凝素(MSHA),一种IV型菌毛,是霍乱弧菌埃尔托生物型的潜在黏附因子。我们描述了一个在凝集小鼠红细胞能力上有缺陷的TnphoA突变体。TnphoA插入位点定位于一个最近鉴定出的基因座,该基因座编码的产物预计对MSHA菌毛的组装和输出至关重要。在mshA - phoA报告菌株的这个基因座处进行插入破坏,为该基因座在菌毛组装和/或输出后期的作用提供了证据。这些构建体提供了物理标记,通过这些标记我们确定了这个分泌基因座与一组包括mshA结构基因的基因之间紧密的物理连锁关系。对这两个基因座之间间隔区域的序列分析揭示了一个开放阅读框的存在,该开放阅读框与几种革兰氏阴性菌的菌毛生物合成基因具有同源性。这种基因组织表明存在一个完整的操纵子,其编码MSHA菌毛及其组装和分泌到细菌细胞表面所需的成分。因此,MSHA结构和分泌基因座的命名已相应重新定义。

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