首页> 外文期刊>Molecular Microbiology >Pleiotropic transcriptional repressor CodY senses the intracellular pool of branched-chain amino acids in Lactococcus lactis.
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Pleiotropic transcriptional repressor CodY senses the intracellular pool of branched-chain amino acids in Lactococcus lactis.

机译:多效转录抑制因子CodY感测乳酸乳球菌中的支链氨基酸的细胞内池。

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Proteolysis is essential for supplying Lactococcus lactis with amino acids during growth in milk. Expression of the major components of the L. lactis proteolytic system, including the cell wall proteinase (PrtP), the oligopeptide transport system (Opp) and at least four intracellular peptidases (PepO1, PepN, PepC, PepDA2), was shown previously to be controlled negatively by a rich nitrogen source. The transcription of prtP, opp-pepO1, pepN and pepC genes is regulated by dipeptides in the medium. Random insertion mutants derepressed for nitrogen control in the expression of the oligopeptide transport system were isolated using an opp-lacZ fusion. A third of the mutants were targeted in the same locus. The product of the inactivated gene shared 48% identity with CodY from Bacillus subtilis, a pleiotropic repressor of the dipeptide permease operon (dpp) and several genes including genes involved in amino acid degradation and competence induction. The signal controlling CodY-dependent repression was searched for by analysing the response of the opp-lux fusion to the addition of 67 dipeptides with different amino acid compositions. Full correlation was found between the dipeptide content in branched-chain amino acids (BCAA; isoleucine, leucine or valine) and their ability to mediate the repression of opp-pepO1 expression. The repressive effect resulting from specific regulatory dipeptides was abolished in L. lactis mutants affected in terms of their transport or degradation into amino acids, showing that the signal was dependent on the BCAA pool in the cell. Lastly, the repression of opp-pepO1 expression was stronger in a mutant unable to degrade BCAAs, underlining the central role of BCAAs as a signal for CodY activity. This pattern of regulation suggests that, in L. lactis and possibly other Gram-positive bacteria, CodY is a pleiotropic repressor sensing nutritional supply as a function of the BCAA pool in the cell.
机译:蛋白质水解对于在牛奶生长过程中为乳酸乳球菌提供氨基酸至关重要。以前已证明乳酸乳球菌蛋白水解系统主要成分的表达包括细胞壁蛋白酶(PrtP),寡肽转运系统(Opp)和至少四个细胞内肽酶(PepO1,PepN,PepC,PepDA2)。由富氮源负面控制。 prtP,opp-pepO1,pepN和pepC基因的转录受培养基中的二肽调控。使用opp-lacZ融合蛋白分离了在寡肽转运系统的表达中因氮控制而受到抑制的随机插入突变体。三分之一的突变体靶向相同的基因座。灭活基因的产物与枯草芽孢杆菌的CodY具有48%的同一性,枯草芽孢杆菌是二肽渗透酶操纵子(dpp)的多效阻遏物,还有几个基因包括与氨基酸降解和能力诱导有关的基因。通过分析opp-lux融合物对添加67种具有不同氨基酸组成的二肽的响应来寻找控制CodY依赖性的信号。发现支链氨基酸(BCAA;异亮氨酸,亮氨酸或缬氨酸)中的二肽含量与其介导抑制opp-pepO1表达的能力之间存在完全相关性。在运输或降解成氨基酸方面受到影响的乳酸乳球菌突变体中,消除了由特定的调节性二肽产生的抑制作用,表明该信号取决于细胞中的BCAA库。最后,在无法降解BCAA的突变体中,opp-pepO1表达的抑制作用更强,突显了BCAAs作为CodY活性信号的核心作用。这种调节模式表明,在乳酸乳球菌和可能的其他革兰氏阳性细菌中,CodY是一种多效性阻遏物,其感觉营养供应是细胞中BCAA库的函数。

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