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新月柄杆菌中一个随时间转录的趋化基因簇的遗传分析。

Genetic analysis of a temporally transcribed chemotaxis gene cluster in Caulobacter crescentus.

作者信息

Alley M R, Gomes S L, Alexander W, Shapiro L

机构信息

Department of Developmental Biology, Stanford University School of Medicine, California 94305.

出版信息

Genetics. 1991 Oct;129(2):333-41. doi: 10.1093/genetics/129.2.333.

Abstract

Caulobacter crescentus performs chemotaxis by short intermittent reversals of rotation of its single polar flagellum. Tn5 insertions causing a general chemotaxis phenotype, an inability to reverse swimming direction and to form large swarm colonies, have been mapped to an 8-kb region of the C. crescentus genome. These Tn5 mutations had different effects on the methyl-accepting chemotaxis proteins (MCP), and the activities of methyltransferase and methylesterase. The Tn5 insertion mutant SC1130 had no cross-reacting MCP and had reduced levels of activity of the methyltransferase and methylesterase. Other mutants bearing Tn5 insertions retained cross-reacting MCP activity and were altered only in their methyltransferase and methylesterase activities. Using a cosmid library we isolated a clone that complemented SC1130. Complementation studies of the Tn5 mutants using derivatives of the cosmid clone showed that all the Tn5 insertions lie within a single operon that appears to encode many chemotaxis genes. The first gene in this operon was shown to encode an MCP by immuno-blot analysis of strains carrying beta-galactosidase protein fusions to portions of the operon. The promoter of this operon was located by chromosomal integration of subclones of this region and by identifying DNA fragments that were capable of expressing lacZ transcriptional fusions. The transcription of the che operon occurred at a defined time in the cell cycle, prior to cell division.

摘要

新月柄杆菌通过其单根极鞭毛的短时间间歇性旋转逆转来进行趋化作用。导致一般趋化表型、无法逆转游动方向以及无法形成大的群体菌落的Tn5插入已被定位到新月柄杆菌基因组的一个8 kb区域。这些Tn5突变对甲基接受趋化蛋白(MCP)以及甲基转移酶和甲酯酶的活性有不同影响。Tn5插入突变体SC1130没有交叉反应的MCP,并且甲基转移酶和甲酯酶的活性水平降低。其他携带Tn5插入的突变体保留了交叉反应的MCP活性,仅在其甲基转移酶和甲酯酶活性方面有所改变。利用黏粒文库,我们分离出了一个能互补SC1130的克隆。使用黏粒克隆的衍生物对Tn5突变体进行的互补研究表明,所有Tn5插入都位于一个单一操纵子内,该操纵子似乎编码许多趋化基因。通过对携带与该操纵子部分区域融合的β-半乳糖苷酶蛋白的菌株进行免疫印迹分析,表明该操纵子中的第一个基因编码一种MCP。通过该区域亚克隆的染色体整合以及鉴定能够表达lacZ转录融合的DNA片段,确定了该操纵子的启动子。che操纵子的转录在细胞周期中一个特定的时间发生,先于细胞分裂。

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