Sung Chang Kyoo, Morrison Donald A
Laboratory for Molecular Biology, University of Illinois at Chicago, IL 60607, USA.
J Bacteriol. 2005 May;187(9):3052-61. doi: 10.1128/JB.187.9.3052-3061.2005.
Natural genetic transformation in Streptococcus pneumoniae is controlled by a quorum-sensing system, which acts through the competence-stimulating peptide (CSP) for transient activation of genes required for competence. More than 100 genes have been identified as CSP regulated by use of DNA microarray analysis. One of the CSP-induced genes required for genetic competence is comW. As the expression of this gene depended on the regulator ComE, but not on the competence sigma factor ComX (sigma(X)), and as expression of several genes required for DNA processing was affected in a comW mutant, comW appears to be a new regulatory gene. Immunoblotting analysis showed that the amount of the sigma(X) protein is dependent on ComW, suggesting that ComW may be directly or indirectly involved in the accumulation of sigma(X). As sigma(X) is stabilized in clpP mutants, a comW mutation was introduced into the clpP background to ask whether the synthesis of sigma(X) depends on ComW. The clpP comW double mutant accumulated an amount of sigma(X) higher (threefold) than that seen in the wild type but was not transformable, suggesting that while comW is not needed for sigma(X) synthesis, it acts both in stabilization of sigma(X) and in its activation. Modification of ComW with a histidine tag at its C or N terminus revealed that both amino and carboxyl termini are important for increasing the stability of sigma(X), but only the N terminus is important for stimulating its activity.
肺炎链球菌中的自然遗传转化受群体感应系统控制,该系统通过感受态刺激肽(CSP)起作用,以瞬时激活感受态所需基因。通过DNA微阵列分析已鉴定出100多个受CSP调控的基因。遗传感受态所需的CSP诱导基因之一是comW。由于该基因的表达依赖于调节因子ComE,而不依赖于感受态σ因子ComX(σ(X)),并且由于DNA加工所需的几个基因的表达在comW突变体中受到影响,comW似乎是一个新的调控基因。免疫印迹分析表明,σ(X)蛋白的量依赖于ComW,这表明ComW可能直接或间接参与σ(X)的积累。由于σ(X)在clpP突变体中稳定,因此将comW突变引入clpP背景中,以研究σ(X)的合成是否依赖于ComW。clpP comW双突变体积累的σ(X)量比野生型高(三倍),但不能进行转化,这表明虽然σ(X)的合成不需要comW,但它在σ(X)的稳定及其激活中均起作用。在ComW的C或N末端用组氨酸标签进行修饰表明,氨基末端和羧基末端对于增加σ(X)的稳定性都很重要,但只有N末端对于刺激其活性很重要。