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乳酸菌中氨基酸生物合成基因的组织与调控

Organization and regulation of genes for amino acid biosynthesis in lactic acid bacteria.

作者信息

Chopin A

机构信息

Laboratoire de Génétique Microbienne, INRA, Jouy-en-Josas, France.

出版信息

FEMS Microbiol Rev. 1993 Sep;12(1-3):21-37. doi: 10.1111/j.1574-6976.1993.tb00011.x.

Abstract

The recent description of large clusters of biosynthetic genes in the chromosome of Lactococcus lactis and, to a lesser extent, of Lactobacillus, has brought some information on gene organization and control of gene expression in these organisms. The genes involved in a given amino acid biosynthetic pathway are clustered at a single chromosomal location and form an operon. Additional genes which are not required for the biosynthesis are present within some operons. Genetic signals are, in general, similar to those found in other prokaryotes. Several systems controlling gene expression have been identified and transcription attenuation seems frequent. Among the attenuation mechanisms identified, one resembles that controlling amino acid biosynthesis in many bacteria by ribosome stalling at codons corresponding to limiting amino acid. The others are different and might be related to a new class of attenuation mechanism. Preliminary evidence for a new type of regulatory mechanism, involving a metabolic shunt, is also reviewed.

摘要

最近对乳酸乳球菌染色体中大量生物合成基因簇的描述,以及在较小程度上对乳酸杆菌染色体中生物合成基因簇的描述,为这些生物体中的基因组织和基因表达调控带来了一些信息。参与特定氨基酸生物合成途径的基因聚集在单个染色体位置,并形成一个操纵子。一些操纵子中存在生物合成不需要的其他基因。一般来说,遗传信号与其他原核生物中的相似。已经鉴定出几种控制基因表达的系统,转录衰减似乎很常见。在已鉴定出的衰减机制中,有一种类似于许多细菌中通过核糖体在对应于限制性氨基酸的密码子处停滞来控制氨基酸生物合成的机制。其他机制则不同,可能与一类新的衰减机制有关。还综述了一种涉及代谢分流的新型调控机制的初步证据。

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