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枯草芽孢杆菌YufLM双组分系统调节苹果酸转运蛋白MaeN(YufR)和YflS的表达,并且对于在基本培养基中利用苹果酸至关重要。

The Bacillus subtilis YufLM two-component system regulates the expression of the malate transporters MaeN (YufR) and YflS, and is essential for utilization of malate in minimal medium.

作者信息

Tanaka Kousei, Kobayashi Kazuo, Ogasawara Naotake

机构信息

Department of Bioinformatics and Genomics, Graduate School of Information Science, Nara Institute of Science and Technology, 8916-5, Takayama, Ikoma, Nara 630-0101, Japan.

出版信息

Microbiology (Reading). 2003 Sep;149(Pt 9):2317-2329. doi: 10.1099/mic.0.26257-0.

Abstract

The Gram-positive bacterium Bacillus subtilis has a complete set of enzymes for the tricarboxylic acid (TCA) cycle and can grow aerobically using most of the TCA cycle intermediates (malate, fumarate, succinate and citrate) as a sole carbon source. The B. subtilis genome sequence contains three paralogous two-component regulatory systems, CitST, DctSR and YufLM. CitST and DctSR activate the expression of a transporter of the Mg(2+)-citrate complex (CitM) and a fumarate and succinate transporter (DctP), respectively. These findings prompted an investigation of whether the YufL sensor and its cognate regulator, YufM, play a role in malate uptake. This paper reports that the YufM regulator shows in vitro binding to the promoter region of two malate transporter genes, maeN and yflS, and is responsible for inducing their expression in vivo. It was also found that inactivation of the yufM or maeN genes resulted in bacteria that could not grow in a minimal salts medium containing malate as a sole carbon source, indicating that the induction of the MaeN transporter by the YufM regulator is essential for the utilization of malate as a carbon source. Inactivation of the yufL gene resulted in the constitutive expression of MaeN. This expression was suppressed by reintroduction of the kinase domain of YufL, indicating that the YufL sensor is required for proper signal detection and signalling specificity. The authors propose that a phosphatase activity of YufL plays an important role in the YufLM two-component regulatory system. The studies reported here have revealed that members of a set of paralogous two-component regulatory systems in B. subtilis, CitST, DctSR and YufLM, are involved in a related function--uptake (and metabolism) of the TCA cycle intermediates--but with distinct substrate specificities.

摘要

革兰氏阳性细菌枯草芽孢杆菌拥有一套完整的三羧酸(TCA)循环酶,并且能够利用大多数TCA循环中间产物(苹果酸、富马酸、琥珀酸和柠檬酸)作为唯一碳源进行有氧生长。枯草芽孢杆菌的基因组序列包含三个同源的双组分调节系统,即CitST、DctSR和YufLM。CitST和DctSR分别激活镁-柠檬酸复合物转运体(CitM)和富马酸与琥珀酸转运体(DctP)的表达。这些发现促使人们研究YufL传感器及其同源调节因子YufM是否在苹果酸摄取中发挥作用。本文报道,YufM调节因子在体外与两个苹果酸转运体基因maeN和yflS的启动子区域结合,并在体内负责诱导它们的表达。还发现,yufM或maeN基因的失活导致细菌无法在以苹果酸作为唯一碳源的基本盐培养基中生长,这表明YufM调节因子对MaeN转运体的诱导对于利用苹果酸作为碳源至关重要。yufL基因的失活导致MaeN的组成型表达。重新引入YufL的激酶结构域可抑制这种表达,这表明YufL传感器对于正确的信号检测和信号特异性是必需的。作者提出,YufL的磷酸酶活性在YufLM双组分调节系统中起重要作用。本文报道的研究表明,枯草芽孢杆菌中一组同源双组分调节系统的成员,即CitST、DctSR和YufLM,参与了一项相关功能——TCA循环中间产物的摄取(和代谢)——但具有不同的底物特异性。

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