Bergman T, Erickson K, Galyov E, Persson C, Wolf-Watz H
Department of Cell and Molecular Biology, University of Umeå, Sweden.
J Bacteriol. 1994 May;176(9):2619-26. doi: 10.1128/jb.176.9.2619-2626.1994.
Virulent bacteria of the genus Yersinia secrete a number of virulence determinants called Yops. These proteins lack typical signal sequences and are not posttranslationally processed. Two gene loci have been identified as being involved in the specific Yop secretion system (G. Cornelis, p. 231-265, In C. E. Hormache, C. W. Penn, and C. J. Smythe, ed., Molecular Biology of Bacterial Infection, 1992; S. C. Straley, G. V. Plano, E. Skrzypek, P. L. Haddix, and K. A. Fields, Mol. Microbiol. 8:1005-1010, 1993). Here, we have shown that the lcrB/virB locus (yscN to yscU) encodes gene products essential for Yop secretion. As in previously described secretion apparatus mutants, expression of the Yop proteins was decreased in the yscN/U mutants. An lcrH yscR double mutant expressed the Yops at an increased level but did not secrete Yops into the culture supernatant. The block in Yop expression of the ysc mutants was also circumvented by overexpression of the activator LcrF in trans. Although the Yops were expressed in elevated amounts, the Yops were still not exported. This analysis showed that the ysc mutants were unable to secrete Yops and that they were also affected in the negative Ca(2+)-regulated loop. The yscN/U genes showed remarkably high homology to the spa genes of Shigella flexneri and Salmonella typhimurium with respect to both individual genes and gene organization. These findings indicate that the genes originated from a common ancestor.
耶尔森氏菌属的致病细菌分泌多种被称为Yops的毒力决定因子。这些蛋白质缺乏典型的信号序列,且不进行翻译后加工。已确定有两个基因位点参与特定的Yop分泌系统(G. 科内利斯,第231 - 265页,载于C. E. 霍尔马切、C. W. 佩恩和C. J. 斯迈思编,《细菌感染的分子生物学》,1992年;S. C. 斯特拉利、G. V. 普拉诺、E. 斯克日佩克、P. L. 哈迪克斯和K. A. 菲尔兹,《分子微生物学》8:1005 - 1010,1993年)。在此,我们已表明lcrB/virB位点(yscN至yscU)编码Yop分泌所必需的基因产物。如同先前描述的分泌装置突变体一样,Yop蛋白的表达在yscN/U突变体中降低。lcrH yscR双突变体以升高的水平表达Yops,但不将Yops分泌到培养上清液中。通过反式过表达激活剂LcrF也能规避ysc突变体中Yop表达的阻断。尽管Yops的表达量升高,但Yops仍未输出。该分析表明ysc突变体无法分泌Yops,并且它们在负性Ca(2+)调节环中也受到影响。yscN/U基因在单个基因和基因组织方面与弗氏志贺氏菌和鼠伤寒沙门氏菌的spa基因显示出极高的同源性。这些发现表明这些基因起源于一个共同的祖先。