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ipa基因的非极性诱变确定IpaB、IpaC和IpaD为弗氏志贺菌进入上皮细胞的效应蛋白。

Nonpolar mutagenesis of the ipa genes defines IpaB, IpaC, and IpaD as effectors of Shigella flexneri entry into epithelial cells.

作者信息

Ménard R, Sansonetti P J, Parsot C

机构信息

Unité de Pathogénie Microbienne Moléculaire, Unité 199 Institut National de la Santé et de la Recherche Médicale, Institut Pasteur, Paris, France.

出版信息

J Bacteriol. 1993 Sep;175(18):5899-906. doi: 10.1128/jb.175.18.5899-5906.1993.

Abstract

A 31-kb fragment of the large virulence plasmid of Shigella flexneri is necessary for bacterial entry into epithelial cells in vitro. One locus of this fragment encodes the IpaA, -B, -C, and -D proteins, which are the dominant antigens of the humoral immune response during shigellosis. To address the role of the ipa genes, which are clustered in an operon, we constructed a selectable cassette that does not affect transcription of downstream genes and used this cassette to inactivate the ipaB, ipaC, and ipaD genes. Each of these nonpolar mutants was defective in entry and lysis of the phagocytic vacuole but was not impaired in adhesion to the cells. We showed that, like IpaB and IpaC, IpaD is secreted into the culture supernatant and that none of these proteins is necessary for secretion of the other two. This result differentiates the Ipa proteins, which direct the entry process, from the Mxi and Spa proteins, which direct secretion of the Ipa proteins. Moreover, lack of either IpaB or IpaD resulted in the release of larger amounts of the other Ipa polypeptides into the culture medium, which indicates that, in addition to their role in invasion, IpaB and IpaD are each involved in the maintenance of the association of the Ipa proteins with the bacterium.

摘要

福氏志贺氏菌大毒力质粒的一个31 kb片段对于细菌在体外进入上皮细胞是必需的。该片段的一个位点编码IpaA、-B、-C和-D蛋白,这些蛋白是志贺氏菌病期间体液免疫反应的主要抗原。为了研究成簇存在于操纵子中的ipa基因的作用,我们构建了一个不影响下游基因转录的可选择盒,并利用该盒使ipaB、ipaC和ipaD基因失活。这些非极性突变体中的每一个在吞噬泡的进入和裂解方面都存在缺陷,但在与细胞的黏附方面未受损害。我们发现,与IpaB和IpaC一样,IpaD也分泌到培养上清中,并且这些蛋白中没有一种对于其他两种蛋白的分泌是必需的。这一结果将指导进入过程的Ipa蛋白与指导Ipa蛋白分泌的Mxi和Spa蛋白区分开来。此外,缺乏IpaB或IpaD会导致大量其他Ipa多肽释放到培养基中,这表明,除了它们在侵袭中的作用外,IpaB和IpaD各自还参与Ipa蛋白与细菌结合的维持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4da4/206670/7b20d61922b3/jbacter00060-0166-a.jpg

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