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The putrescine biosynthesis pathway in Lactococcus lactis is transcriptionally regulated by carbon catabolic repression, mediated by CcpA

机译:乳酸乳球菌中的腐胺生物合成途径受CcpA介导的碳分解代谢抑制的转录调控

摘要

Lactococcus lactis is the lactic acid bacterium most widely used by the dairy industry as a starter for the manufacture of fermented products such as cheese and buttermilk. However, some strains produce putrescine from agmatine via the agmatine deiminase (AGDI) pathway. The proteins involved in this pathway, including those necessary for agmatine uptake and conversion into putrescine, are encoded by the aguB, aguD, aguA and aguC genes, which together form an operon. This paper reports the mechanism of regulation of putrescine biosynthesis in L. lactis. It is shown that the aguBDAC operon, which contains a cre site at the promoter of aguB (the first gene of the operon), is transcriptionally regulated by carbon catabolic repression (CCR) mediated by the catabolite control protein CcpA. © 2013.
机译:乳酸乳球菌是乳制品工业中最广泛使用的乳酸菌,可作为发酵产品(如奶酪和酪乳)的生产的起始剂。然而,一些菌株通过胍丁胺脱亚氨酶(AGDI)途径从胍丁胺产生腐胺。该途径涉及的蛋白质,包括胍丁胺摄取和转化为腐胺所必需的蛋白质,由aguB,aguD,aguA和aguC基因编码,它们共同形成操纵子。本文报道了乳酸菌中腐胺生物合成的调控机制。结果表明,在aguB(操纵子的第一个基因)启动子上含有一个cre位点的aguBDAC操纵子,受到分解代谢物控制蛋白CcpA介导的碳分解代谢阻遏(CCR)的转录调控。 ©2013。

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