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Molecular Characterization of the Lactococcus lactis ptsHI Operon and Analysis of the Regulatory Role of HPr

机译:乳酸乳球菌ptsHI操纵子的分子表征和HPr的调节作用分析

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摘要

The Lactococcus lactis ptsH and ptsI genes, encoding the general proteins of the phosphoenolpyruvate-dependent phosphotransferase system, HPr and enzyme I, respectively, were cloned, and the regulatory role of HPr was studied by mutational analysis of its gene. A promoter sequence was identified upstream of the ptsHI operon, and the transcription start site was mapped by primer extension. The results of Northern analyses showed the presence of two glucose-inducible transcripts, one of 0.3 kb containing ptsH and a second of 2.0 kb containing both ptsH and ptsI. Disruption of the ptsH and ptsI genes in strain NZ9800 resulted in a reduced growth rate at the expense of glucose, but no growth at the expense of sucrose and fructose, confirming the dominant role of the phosphotransferase system in the uptake of these sugars in L. lactis. Complementation of the ptsH and ptsI mutants with the intact genes under the control of a regulated promoter resulted in the restoration of the wild-type phenotype. The role of HPr(Ser-P) in the recently established CcpA-mediated control of galactose metabolism as well as glycolysis was analyzed by producing an HPr mutant carrying an aspartic acid on residue 46 which mimicks a phosphorylated serine. The results of these experiments demonstrated the role of HPr(Ser-P) as corepressor in the catabolite repression of the gal operon. Furthermore, we show for the first time that HPr(Ser-P) functions as a coactivator in the CcpA-mediated catabolite activation of the pyruvate kinase and l-lactate dehydrogenase genes.
机译:克隆了分别编码依赖磷酸烯醇丙酮酸的磷酸转移酶系统的普通蛋白,HPr和酶I的乳酸乳球菌ptsH和ptsI基因,并通过对其基因的突变分析研究了HPr的调控作用。在ptsHI操纵子的上游鉴定出启动子序列,并通过引物延伸来定位转录起始位点。 Northern分析的结果表明存在两种葡萄糖诱导的转录本,一种是包含ptsH的0.3 kb,另一种是包含ptsH和ptsI的2.0 kb。 NZ9800菌株中ptsH和ptsI基因的破坏导致以葡萄糖为代价的生长速率降低,但以蔗糖和果糖为代价则没有生长,这证实了磷酸转移酶系统在L吸收这些糖中的主导作用。乳酸菌。在受调控的启动子控制下,完整基因对ptsH和ptsI突变体的补充导致野生型表型的恢复。 HPr(Ser-P)在最近建立的CcpA介导的半乳糖代谢控制和糖酵解中的作用是通过产生在残基46上带有天冬氨酸的HPr突变体来模拟的,该突变体模仿了磷酸化的丝氨酸。这些实验的结果证明了HPr(Ser-P)在gal操纵子的分解代谢物阻遏中作为核心抑制剂的作用。此外,我们首次显示HPr(Ser-P)在丙酮酸激酶和L-乳酸脱氢酶基因的CcpA介导的分解代谢活化中起共激活剂的作用。

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