Timmen Melanie, Bassler Bonnie L, Jung Kirsten
Ludwig-Maximilians-Universität München, Department Biologie I, Bereich Mikrobiologie, Maria-Ward-Strasse 1a, D-80638 München, Germany.
J Biol Chem. 2006 Aug 25;281(34):24398-404. doi: 10.1074/jbc.M604108200. Epub 2006 Jun 28.
The Gram-negative bacterium Vibrio harveyi produces and responds to three autoinducers, AI-1, AI-2, and CAI-1 to regulate cell density dependent gene expression by a process referred to as quorum sensing. The concentration of the autoinducers is sensed by three cognate hybrid sensor kinases, and information is channeled via the HPt protein LuxU to the response regulator LuxO. Here, a detailed biochemical study on the enzymatic activities of the membrane-integrated hybrid sensor kinase LuxN, the sensor for N-(d-3-hydroxybutanoyl)homoserine lactone (AI-1), is provided. LuxN was heterologously overproduced as the full-length protein in Escherichia coli. LuxN activities were characterized in vitro and are an autophosphorylation activity with an unusually high ATP turnover rate, stable LuxU phosphorylation, and a slow phosphatase activity with LuxU approximately P as substrate. The presence of AI-1 affected the kinase but not the phosphatase activity of LuxN. The influence of AI-1 on the LuxN--> LuxU signaling step was monitored, and in the presence of AI-1, the kinase activity of LuxN, and hence the amount of LuxU approximately P produced, were significantly reduced. Half-maximal inhibition of kinase activity by AI-1 occurred at 20 mum. Together, these results indicate that AI-1 directly interacts with LuxN to down-regulate its autokinase activity and suggest that the key regulatory step of the AI-1 quorum sensing system of Vibrio harveyi is AI-1-mediated repression of the LuxN kinase activity.
革兰氏阴性菌哈维氏弧菌产生并响应三种自诱导物,即AI-1、AI-2和CAI-1,通过一种称为群体感应的过程来调节细胞密度依赖性基因表达。自诱导物的浓度由三种同源杂交传感器激酶感知,信息通过HPt蛋白LuxU传递给响应调节因子LuxO。在此,提供了一项关于膜整合杂交传感器激酶LuxN(N-(d-3-羟基丁酰基)高丝氨酸内酯(AI-1)的传感器)酶活性的详细生化研究。LuxN在大肠杆菌中作为全长蛋白被异源过量表达。对LuxN的活性进行了体外表征,其具有自磷酸化活性,ATP周转率异常高,能稳定磷酸化LuxU,并且以LuxU-P为底物时具有缓慢的磷酸酶活性。AI-1的存在影响LuxN的激酶活性,但不影响其磷酸酶活性。监测了AI-1对LuxN→LuxU信号传导步骤的影响,在AI-1存在的情况下,LuxN的激酶活性以及因此产生的LuxU-P的量显著降低。AI-1对激酶活性的半数最大抑制浓度为20 μM。这些结果共同表明,AI-1直接与LuxN相互作用以下调其自身激酶活性,并表明哈维氏弧菌AI-1群体感应系统的关键调节步骤是AI-1介导的对LuxN激酶活性的抑制。