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戊糖乳杆菌木糖利用操纵子xylAB的表达调控

Regulation of expression of the Lactobacillus pentosus xylAB operon.

作者信息

Lokman B C, Heerikhuisen M, Leer R J, van den Broek A, Borsboom Y, Chaillou S, Postma P W, Pouwels P H

机构信息

Department of Molecular Genetics and Gene-Technology, TNO Nutrition and Food Research Institute, Zeist, The Netherlands.

出版信息

J Bacteriol. 1997 Sep;179(17):5391-7. doi: 10.1128/jb.179.17.5391-5397.1997.

Abstract

The xylose cluster of Lactobacillus pentosus consists of five genes, two of which, xylAB, form an operon and code for the enzymes involved in the catabolism of xylose, while a third encodes a regulatory protein, XylR. By introduction of a multicopy plasmid carrying the xyl operator and by disruption of the chromosomal xylR gene, it was shown that L. pentosus xylR encodes a repressor. Constitutive expression of xylAB in the xylR mutant is repressed by glucose, indicating that glucose repression does not require XylR. The xylR mutant displayed a prolonged lag phase compared to wild-type bacteria when bacteria were shifted from glucose to xylose medium. Differences in the growth rate in xylose medium at different stages of growth are not correlated with differences in levels of xylAB transcription in L. pentosus wild-type or xylR mutant bacteria but are positively correlated in Lactobacillus casei with a plasmid containing xylAB. Glucose repression was further investigated with a ccpA mutant. An 875-bp internal fragment of the ccpA gene of L. pentosus was isolated by PCR and used to construct a ccpA knockout mutant. Transcription analysis of L. pentosus xylA showed that CcpA is involved in glucose repression. CcpA was also shown to be involved in glucose repression of the alpha-amylase promoter of Lactobacillus amylovorus by demonstrating that glucose repression of the chloramphenicol acetyltransferase gene under control of the alpha-amylase promoter is strongly reduced in the L. pentosus ccpA mutant strain.

摘要

戊糖乳杆菌的木糖簇由五个基因组成,其中两个基因xylAB形成一个操纵子,编码参与木糖分解代谢的酶,而第三个基因编码一种调节蛋白XylR。通过引入携带木糖操纵子的多拷贝质粒以及破坏染色体上的xylR基因,结果表明戊糖乳杆菌的xylR编码一种阻遏物。在xylR突变体中,xylAB的组成型表达受到葡萄糖的抑制,这表明葡萄糖抑制作用不需要XylR。当细菌从葡萄糖培养基转移到木糖培养基时,与野生型细菌相比,xylR突变体表现出延长的延迟期。在戊糖乳杆菌野生型或xylR突变体细菌中,木糖培养基不同生长阶段的生长速率差异与xylAB转录水平的差异无关,但在干酪乳杆菌中,含有xylAB的质粒与之呈正相关。利用ccpA突变体进一步研究了葡萄糖抑制作用。通过PCR分离出戊糖乳杆菌ccpA基因的一个875 bp内部片段,并用于构建ccpA基因敲除突变体。戊糖乳杆菌xylA的转录分析表明,CcpA参与葡萄糖抑制作用。通过证明在戊糖乳杆菌ccpA突变体菌株中,α-淀粉酶启动子控制下的氯霉素乙酰转移酶基因的葡萄糖抑制作用大大降低,也表明CcpA参与了嗜酸乳杆菌α-淀粉酶启动子的葡萄糖抑制作用。

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