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EnvZ的激酶活性,一种大肠杆菌的渗透调节信号转导蛋白。

Kinase activity of EnvZ, an osmoregulatory signal transducing protein of Escherichia coli.

作者信息

Kenney L J

机构信息

Department of Molecular Microbiology and Immunology, Oregon Health Sciences University, Portland 97201-3098, USA.

出版信息

Arch Biochem Biophys. 1997 Oct 15;346(2):303-11. doi: 10.1006/abbi.1997.0315.

Abstract

EnvZ is an inner membrane protein present in Escherichia coli that is important for osmosensing and required for porin gene regulation. EnvZ is phosphorylated by intracellular ATP, and EnvZ-P phosphorylates OmpR, which then binds to the porin promoters to regulate their expression. An overexpressed, truncated form of the enzyme, EnvZ115, was used to characterize the kinase reaction in vitro. Using a filter binding assay, we report the first direct measurements of the kinase activity, including the apparent affinity for ATP of 200 microM. The phosphorylation reaction is dependent on MgCl2, and the phosphoenzyme has the expected stability of a phosphohistidine; i.e., it is stable in base and less stable in acid at room temperature. The addition of OmpR and ATP to solutions containing EnvZ resulted in an OmpR-stimulated, EnvZ-dependent ATPase activity that was not vanadate-sensitive. The in vivo kinase activity of EnvZ and two mutants that were deficient in porin expression were studied using an immune complex kinase reaction. Interestingly, a mutation located in the periplasmic domain of EnvZ exhibited kinase activity that was identical to that of the wild-type enzyme, while a mutation located close to the phosphorylation site showed a significant decrease in both kinase and phosphotransferase activities. These data provide support for models of EnvZ consisting of separate sensing and kinase domains.

摘要

EnvZ是存在于大肠杆菌中的一种内膜蛋白,对渗透压感知很重要,也是孔蛋白基因调控所必需的。EnvZ被细胞内的ATP磷酸化,EnvZ-P进而使OmpR磷酸化,然后OmpR与孔蛋白启动子结合以调节其表达。该酶的一种过表达截短形式EnvZ115被用于在体外表征激酶反应。通过滤膜结合试验,我们首次直接测量了激酶活性,包括对ATP的表观亲和力为200微摩尔。磷酸化反应依赖于MgCl2,磷酸化酶具有磷酸组氨酸预期的稳定性;即在室温下在碱性条件下稳定,在酸性条件下不太稳定。向含有EnvZ的溶液中添加OmpR和ATP会导致一种受OmpR刺激、依赖EnvZ的ATP酶活性,该活性对钒酸盐不敏感。使用免疫复合物激酶反应研究了EnvZ和两个孔蛋白表达缺陷的突变体的体内激酶活性。有趣的是,位于EnvZ周质结构域的一个突变体表现出与野生型酶相同的激酶活性,而位于靠近磷酸化位点的一个突变体的激酶和磷酸转移酶活性均显著降低。这些数据为EnvZ由独立的传感结构域和激酶结构域组成的模型提供了支持。

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