Mazé Alain, Boël Grégory, Poncet Sandrine, Mijakovic Ivan, Le Breton Yoann, Benachour Abdellah, Monedero Vicente, Deutscher Josef, Hartke Axel
Laboratoire de Microbiologie et Génétique Moléculaire, INRA-INAPG-CNRS, Thiverval-Grignon, France.
J Bacteriol. 2004 Jul;186(14):4543-55. doi: 10.1128/JB.186.14.4543-4555.2004.
A proteome analysis of Lactobacillus casei mutants that are affected in carbon catabolite repression revealed that a 15-kDa protein was strongly overproduced in a ptsHI47T mutant. This protein was identified as EIIA of a mannose class phosphotransferase system (PTS). A 7.1-kb DNA fragment containing the EIIA-encoding open reading frame and five other genes was sequenced. The first gene encodes a protein resembling the RpoN (sigma54)-dependent Bacillus subtilis transcription activator LevR. The following pentacistronic operon is oriented in the opposite direction and encodes four proteins with strong similarity to the proteins of the B. subtilis Lev-PTS and one protein of unknown function. The genes present on the 7.1-kb DNA fragment were therefore called levR and levABCDX. The levABCDX operon was induced by fructose and mannose. No "-12, -24" promoter typical of RpoN-dependent genes precedes the L. casei lev operon, and its expression was therefore RpoN independent but required LevR. Phosphorylation of LevR by P approximately His-HPr stimulates its activity, while phosphorylation by P approximately EIIBLev inhibits it. Disruption of the EIIBLev-encoding levB gene therefore led to strong constitutive expression of the lev operon, which was weaker in a strain carrying a ptsI mutation preventing phosphorylation by both P approximately EIIBLev and P approximately His-HPr. Expression of the L. casei lev operon is also subject to P-Ser-HPr-mediated catabolite repression. The observed slow phosphoenolpyruvate- and ATP-dependent phosphorylation of HPrI47T as well as the slow phosphoryl group transfer from the mutant P approximately His-HPr to EIIALev are assumed to be responsible for the elevated expression of the lev operon in the ptsHI47T mutant.
对受碳分解代谢物阻遏影响的干酪乳杆菌突变体进行的蛋白质组分析表明,一种15 kDa的蛋白质在ptsHI47T突变体中大量过量产生。该蛋白质被鉴定为甘露糖类磷酸转移酶系统(PTS)的EIIA。对包含EIIA编码开放阅读框和其他五个基因的7.1 kb DNA片段进行了测序。第一个基因编码一种类似于依赖RpoN(σ54)的枯草芽孢杆菌转录激活因子LevR的蛋白质。随后的五顺反子操纵子方向相反,编码四种与枯草芽孢杆菌Lev-PTS的蛋白质高度相似的蛋白质和一种功能未知的蛋白质。因此,7.1 kb DNA片段上存在的基因被称为levR和levABCDX。levABCDX操纵子由果糖和甘露糖诱导。干酪乳杆菌lev操纵子之前没有典型的依赖RpoN的基因的“-12,-24”启动子,因此其表达不依赖RpoN,但需要LevR。PHis-HPr对LevR的磷酸化刺激其活性,而PEIIBLev的磷酸化则抑制它。因此,破坏编码EIIBLev的levB基因导致lev操纵子的强烈组成型表达,在携带ptsI突变的菌株中这种表达较弱,该突变阻止了PEIIBLev和PHis-HPr的磷酸化。干酪乳杆菌lev操纵子的表达也受到P-Ser-HPr介导的分解代谢物阻遏。观察到的HPrI47T的磷酸烯醇丙酮酸和ATP依赖性缓慢磷酸化以及突变体P~His-HPr向EIIALev的缓慢磷酰基转移被认为是ptsHI47T突变体中lev操纵子表达升高的原因。