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细菌趋化作用和双组分调节系统中的蛋白质磷酸化

Protein phosphorylation in chemotaxis and two-component regulatory systems of bacteria.

作者信息

Bourret R B, Hess J F, Borkovich K A, Pakula A A, Simon M I

机构信息

California Institute of Technology, Pasadena, California 91125.

出版信息

J Biol Chem. 1989 May 5;264(13):7085-8.

PMID:2540171
Abstract

Two-component regulatory systems appear to be widespread in bacteria. Phosphorylation has been demonstrated in three of the known systems and correlated with in vivo function in two cases (Che and Ntr). Although phosphorylation of sensor and regulator proteins has so far been observed exclusively in vitro, transient protein phosphorylation could provide a basis for the mechanism of signal transduction in these bacterial systems. There is currently insufficient evidence, however, to establish the precise functional relationship(s) between the conserved sensor and regulator sequences, phosphorylation, and the detailed mechanism involved in signal transduction via the sensor and regulator proteins.

摘要

双组分调节系统似乎在细菌中广泛存在。在已知的三个系统中已证实存在磷酸化现象,并且在其中两个系统(趋化性和氮调节系统)中与体内功能相关。尽管迄今为止仅在体外观察到传感蛋白和调节蛋白的磷酸化,但瞬时蛋白磷酸化可能为这些细菌系统中的信号转导机制提供基础。然而,目前尚无足够的证据来确定保守的传感序列和调节序列、磷酸化以及通过传感蛋白和调节蛋白进行信号转导所涉及的详细机制之间的确切功能关系。

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