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分泌系统Ⅳ型在具菌毛淋病奈瑟菌变异株中的表达增加。

Increased expression of the type IV secretion system in piliated Neisseria gonorrhoeae variants.

机构信息

Department of Medical Microbiology and Immunology, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin 53706, USA.

出版信息

J Bacteriol. 2010 Apr;192(7):1912-20. doi: 10.1128/JB.01357-09. Epub 2010 Feb 5.

Abstract

Neisseria gonorrhoeae produces a type IV secretion system that secretes chromosomal DNA. The secreted DNA is active in the transformation of other gonococci in the population and may act to transfer antibiotic resistance genes and variant alleles for surface antigens, as well as other genes. We observed that gonococcal variants that produced type IV pili secreted more DNA than variants that were nonpiliated, suggesting that the process may be regulated. Using microarray analysis, we found that a piliated strain showed increased expression of the gene for the putative type IV secretion coupling protein TraD, whereas a nonpiliated variant showed increased expression of genes for transcriptional and translational machinery, consistent with its higher growth rate compared to that of the piliated strain. These results suggested that type IV secretion might be controlled by either traD expression or growth rate. A mutant with a deletion in traD was found to be deficient in DNA secretion. Further mutation and complementation analysis indicated that traD is transcriptionally and translationally coupled to traI, which encodes the type IV secretion relaxase. We were able to increase DNA secretion in a nonpiliated strain by inserting a gene cassette with a strong promoter to drive the expression of the putative operon containing traI and traD. Together, these data suggest a model in which the type IV secretion system apparatus is made constitutively, while its activity is controlled through regulation of traD and traI.

摘要

淋病奈瑟菌产生一种 IV 型分泌系统,可将染色体 DNA 分泌出去。分泌出的 DNA 可在该种群中其他淋球菌的转化中发挥作用,可能有助于转移抗生素耐药基因和表面抗原的变异等位基因,以及其他基因。我们观察到,产生 IV 型菌毛的淋球菌变体比非菌毛变体分泌更多的 DNA,这表明该过程可能受到调控。通过微阵列分析,我们发现带有菌毛的菌株表现出假定的 IV 型分泌偶联蛋白 TraD 的基因表达增加,而无菌毛的变体则表现出转录和翻译机制的基因表达增加,这与其相对于带菌毛菌株的更高生长速率一致。这些结果表明,IV 型分泌可能受到 traD 表达或生长速率的控制。我们发现一个 traD 缺失突变体在 DNA 分泌方面存在缺陷。进一步的突变和互补分析表明,traD 在转录和翻译上与编码 IV 型分泌松弛酶的 traI 偶联。我们能够通过插入带有强启动子的基因盒来驱动包含 traI 和 traD 的假定操纵子的表达,从而增加非菌毛菌株中的 DNA 分泌。这些数据共同表明,IV 型分泌系统装置是组成型的,而其活性通过 traD 和 traI 的调控来控制。

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