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志贺氏菌中毒力基因的调控

Regulation of virulence genes in Shigella.

作者信息

Maurelli A T

机构信息

Department of Microbiology, Uniformed Services University of the Health Sciences, Bethesda, MD 20814-4799.

出版信息

Mol Biol Med. 1989 Oct;6(5):425-32.

PMID:2696859
Abstract

Shigella pathogenicity is a multi-genic phenomenon involving the participation of genes on both the 230 kilobase virulence plasmid and the chromosome. A key feature of the regulation of Shigella virulence is its response to growth temperature. Genes in the virulence regulon are fully expressed at 37 degrees C, the normal temperature of Shigella's mammalian host, and the regulon is repressed at lower temperatures. Virulence gene expression is regulated in both a positive and a negative fashion by several plasmid-encoded activators and at least one chromosomally encoded repressor. The use of a variety of molecular tools including gene fusions, cloning, complementation, DNA sequencing and mRNA analysis, has provided a more complete understanding of how various, unlinked genetic loci contribute in a co-ordinated fashion to the pathogenic phenotype expressed by Shigella.

摘要

志贺氏菌的致病性是一种多基因现象,涉及230千碱基毒力质粒和染色体上基因的参与。志贺氏菌毒力调节的一个关键特征是其对生长温度的反应。毒力调节子中的基因在37℃(志贺氏菌哺乳动物宿主的正常体温)时完全表达,而在较低温度下调节子受到抑制。毒力基因的表达通过几种质粒编码的激活剂和至少一种染色体编码的阻遏物以正、负两种方式进行调节。包括基因融合、克隆、互补、DNA测序和mRNA分析在内的各种分子工具的使用,使人们对各种不连锁的基因座如何以协调的方式促成志贺氏菌表达的致病表型有了更全面的了解。

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