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作为理解乳酸乳球菌中乳糖操纵子形成工具的控制分析

Control analysis as a tool to understand the formation of the las operon in Lactococcus lactis.

作者信息

Koebmann Brian, Solem Christian, Jensen Peter Ruhdal

机构信息

Microbial Physiology and Genetics, BioCentrum-DTU, Technical University of Denmark, Kgs Lyngby, Denmark.

出版信息

FEBS J. 2005 May;272(9):2292-303. doi: 10.1111/j.1742-4658.2005.04656.x.

Abstract

In Lactococcus lactis the enzymes phosphofructokinase (PFK), pyruvate kinase (PK) and lactate dehydrogenase (LDH) are uniquely encoded in the las operon. We used metabolic control analysis to study the role of this organization. Earlier studies have shown that, at wild-type levels, LDH has no control over glycolysis and growth rate, but high negative control over formate production (C(Jformate)LDH=-1.3). We found that PFK and PK exert no control over glycolysis and growth rate at wild-type enzyme levels but both enzymes exert strong positive control on the glycolytic flux at reduced activities. PK exerts high positive control over formate (C(Jformate)PK=0.9-1.1) and acetate production (C(Jacetate)PK=0.8-1.0), whereas PFK exerts no control over these fluxes at increased expression. Decreased expression of the entire las operon resulted in a strong decrease in the growth rate and glycolytic flux; at 53% expression of the las operon glycolytic flux was reduced to 44% and the flux control coefficient increased towards 3. Increased las expression resulted in a slight decrease in the glycolytic flux. At wild-type levels, control was close to zero on both glycolysis and the pyruvate branches. The sum of control coefficients for the three enzymes individually was comparable with the control coefficient found for the entire operon; the strong positive control exerted by PK almost cancels out the negative control exerted by LDH on formate production. Our analysis suggests that coregulation of PFK and PK provides a very efficient way to regulate glycolysis, and coregulating PK and LDH allows cells to maintain homolactic fermentation during glycolysis regulation.

摘要

在乳酸乳球菌中,磷酸果糖激酶(PFK)、丙酮酸激酶(PK)和乳酸脱氢酶(LDH)这几种酶在las操纵子中被独特地编码。我们运用代谢控制分析来研究这种组织形式的作用。早期研究表明,在野生型水平下,LDH对糖酵解和生长速率没有控制作用,但对甲酸生成具有较高的负控制作用(C(J甲酸)LDH = -1.3)。我们发现,在野生型酶水平下,PFK和PK对糖酵解和生长速率没有控制作用,但在酶活性降低时,这两种酶对糖酵解通量都具有很强的正控制作用。PK对甲酸生成(C(J甲酸)PK = 0.9 - 1.1)和乙酸生成(C(J乙酸)PK = 0.8 - 1.0)具有较高的正控制作用,而在表达增加时,PFK对这些通量没有控制作用。整个las操纵子表达的降低导致生长速率和糖酵解通量大幅下降;当las操纵子表达为53%时,糖酵解通量降至44%,通量控制系数增加至3。las表达增加导致糖酵解通量略有下降。在野生型水平下,对糖酵解和丙酮酸分支的控制接近于零。这三种酶各自的控制系数之和与整个操纵子的控制系数相当;PK施加的强正控制几乎抵消了LDH对甲酸生成施加的负控制。我们的分析表明,PFK和PK的共调节提供了一种非常有效的调节糖酵解的方式,并且PK和LDH的共调节使细胞在糖酵解调节过程中能够维持同型乳酸发酵。

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