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首页> 外文期刊>Molecular Microbiology >Light-induced carotenogenesis in Myxococcus xanthus: functional characterization of the ECF sigma factor CarQ and antisigma factor CarR.
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Light-induced carotenogenesis in Myxococcus xanthus: functional characterization of the ECF sigma factor CarQ and antisigma factor CarR.

机译:光致黄球菌中的类胡萝卜素生成:ECF西格玛因子CarQ和抗西格玛因子CarR的功能表征。

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摘要

Illumination of dark-grown Myxococcus xanthus with blue light leads to the induction of carotenoid synthesis. Central to this response is the activation of the light-inducible promoter, PcarQRS, and the transcription of three downstream genes, carQ, carR and carS. Sequence analysis predicted that CarQ is a member of the ECF (extracytoplasmic function) subfamily of RNA polymerase sigma factors, and that CarR is an inner membrane protein. Genetic analysis strongly implied that CarR is an antisigma factor that sequesters CarQ in a transcriptionally inactive complex. Using in vitro transcription run-off assays, we present biochemical evidence that CarQ functions as a bacterial sigma factor and is responsible for transcription initiation at PcarQRS. Similar experiments using the crtI promoter failed to implicate CarQ in direct transcription of the crtI gene. Experiments using the yeast two-hybrid system demonstrated a protein-protein interaction betweefn CarQ and CarR, providing evidence of a CarQ-CarR complex. The yeast two-hybrid system data also indicated that CarR is capable of oligomerization. Fractionation of M. xanthus membranes with the detergent sarkosyl showed that CarR was associated with the inner membrane. Furthermore, CarR was found to be unstable in illuminated stationary phase cells, providing a possible mechanism by which the CarR-CarQ complex is disrupted.
机译:用蓝光照亮深色的黄色葡萄球菌会诱导类胡萝卜素的合成。该反应的核心是光诱导型启动子PcarQRS的激活以及三个下游基因carQ,carR和carS的转录。序列分析预测CarQ是RNA聚合酶sigma因子的ECF(胞浆外功能)亚家族的成员,而CarR是内膜蛋白。遗传分析强烈暗示CarR是一种抗σ因子,可将CarQ隔离在无转录活性的复合物中。使用体外转录径流测定,我们提供了生化证据,表明CarQ发挥细菌sigma因子的作用,并负责PcarQRS的转录起始。使用crtI启动子的类似实验未能将CarQ包含在crtI基因的直接转录中。使用酵母双杂交系统进行的实验表明CarQ和CarR之间存在蛋白质-蛋白质相互作用,提供了CarQ-CarR复合物的证据。酵母双杂交系统数据还表明,CarR具有寡聚能力。用去污剂沙克糖基分离黄腐多孢菌膜表明CarR与内膜有关。此外,发现CarR在光照固定相细胞中不稳定,这提供了破坏CarR-CarQ复合物的可能机制。

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