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假单胞菌质粒alk系统调控簇序列的分子克隆与特性分析

Molecular cloning and characterization of sequences from the regulatory cluster of the Pseudomonas plasmid alk system.

作者信息

Owen D J

出版信息

Mol Gen Genet. 1986 Apr;203(1):64-72. doi: 10.1007/BF00330385.

Abstract

Alkane oxidation functions encoded by the Pseudomonas plasmid CAM-OCT are positively regulated by one or more products of a locus designated alkR. To characterize this locus in greater detail, molecular cloning and restriction mapping of sequences covering the alkR region have been carried out in Escherichia coli, followed by mobilization to Pseudomonas recipients for analysis of genetic content. Inserts from Pseudomonas (CAM-OCT) strains were cloned into vectors pLAFR1, the pLAFR1::Tn7S derivative pXJS5403, and the transposon vector Tn3 delta 596. This has made it possible to: (1) construct a detailed restriction map of cloned fragments and the alkR region of CAM-OCT; (2) map insertion sites of the transposon Tn7S into alkR cistrons; and (3) analyze the ability of cloned sequences to complement or effect marker rescue of alkR nitrosoguanidine- and Tn7S-induced mutations. In addition, transcription of an alkB'-lacZ transcription fusion in the presence of a cloned 18.5 kb EcoRI alkR fragment and an inducer of the alk system confirmed that our cloned sequences contain functional alkR cistrons. The complementation/marker rescue results indicate that alkR is a complex locus and that the products of at least three cistrons are required for the complete AlkR+ phenotype. One of these cistrons is identified by mutations which alter a component of the inducer recognition system.

摘要

由假单胞菌质粒CAM - OCT编码的烷烃氧化功能受一个指定为alkR位点的一种或多种产物正向调控。为了更详细地表征该位点,已在大肠杆菌中对覆盖alkR区域的序列进行了分子克隆和限制性图谱分析,随后将其转移至假单胞菌受体中以分析遗传内容。来自假单胞菌(CAM - OCT)菌株的插入片段被克隆到载体pLAFR1、pLAFR1::Tn7S衍生物pXJS5403以及转座子载体Tn3 delta 596中。这使得能够:(1)构建克隆片段和CAM - OCT的alkR区域的详细限制性图谱;(2)将转座子Tn7S的插入位点定位到alkR顺反子中;(3)分析克隆序列对alkR亚硝基胍和Tn7S诱导突变进行互补或实现标记拯救的能力。此外,在存在克隆的18.5 kb EcoRI alkR片段和alk系统诱导剂的情况下,alkB'-lacZ转录融合的转录证实我们克隆的序列包含功能性alkR顺反子。互补/标记拯救结果表明alkR是一个复杂的位点,并且完整的AlkR +表型至少需要三个顺反子的产物。其中一个顺反子可通过改变诱导剂识别系统一个组分的突变来鉴定。

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