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氯霉素诱导枯草芽孢杆菌中猫信使核糖核酸的稳定性

Chloramphenicol-induced stabilization of cat messenger RNA in Bacillus subtilis.

作者信息

Dreher J, Matzura H

机构信息

Molekulare Genetik der Universität, Heidelberg, Germany.

出版信息

Mol Microbiol. 1991 Dec;5(12):3025-34. doi: 10.1111/j.1365-2958.1991.tb01862.x.

Abstract

The expression of the chloramphenicol-inducible chloramphenicol-acetyltransferase gene (cat), encoded on Staphylococcus aureus plasmid pUB112, is regulated via a translational attenuation mechanism. Ribosomes, which are arrested by chloramphenicol during synthesis of a short leader peptide, activate catmRNA translation by opening a 5'-located stem-loop structure, thus setting free the cat ribosome-binding site. We have determined the 5' and 3' ends of catmRNA and analysed its stability in Bacillus subtilis. In the absence of the antibiotic, the half-life of catmRNA is shorter than 0.5 min; it is enhanced to about 8 min by sub-inhibitory concentrations of the drug. No decay intermediates of catmRNA could be detected, indicating a very fast degradation after an initial rate-limiting step. ochre nonsense mutations in the 5' region of the cat structural gene, which eliminate catmRNA translation, did not affect its chloramphenicol-induced stabilization. Mutations in the leader-peptide coding region, which abolish ribosome stalling and, therefore, cat gene induction, also eliminate catmRNA stabilization. We conclude that catmRNA is stabilized on induction by a chloramphenicol-arrested ribosome, which physically protects a nuclease-sensitive target site in the 5' region of catmRNA against exo- or endonucleolytic initiation of degradation. This protection is analogous to ermA and ermC mRNA and seems to reflect a general mechanism for stabilization of mRNA derived from inducible antibiotic resistance genes in B. subtilis.

摘要

金黄色葡萄球菌质粒pUB112上编码的氯霉素诱导型氯霉素乙酰转移酶基因(cat)的表达,是通过一种翻译衰减机制来调控的。核糖体在短前导肽合成过程中被氯霉素阻滞,通过打开位于5'端的茎环结构激活catmRNA的翻译,从而释放出cat核糖体结合位点。我们已经确定了catmRNA的5'和3'末端,并分析了其在枯草芽孢杆菌中的稳定性。在没有抗生素的情况下,catmRNA的半衰期短于0.5分钟;亚抑制浓度的药物可将其半衰期延长至约8分钟。未检测到catmRNA的降解中间体,表明在初始限速步骤后降解非常迅速。cat结构基因5'区域的赭石型无义突变消除了catmRNA的翻译,但不影响其氯霉素诱导的稳定性。前导肽编码区的突变消除了核糖体的停滞,因此消除了cat基因的诱导,同时也消除了catmRNA的稳定性。我们得出结论,catmRNA在氯霉素阻滞的核糖体诱导下得以稳定,该核糖体在物理上保护了catmRNA 5'区域中对核酸酶敏感的靶位点,使其免受核酸外切或核酸内切降解的起始作用。这种保护作用类似于ermA和ermC mRNA,似乎反映了枯草芽孢杆菌中源自诱导型抗生素抗性基因的mRNA稳定化的一般机制。

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