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保守组氨酸残基His-195在大肠杆菌甘露醇通透酶活性中的作用。

Role of a conserved histidine residue, His-195, in the activities of the Escherichia coli mannitol permease.

作者信息

Weng Q P, Jacobson G R

机构信息

Department of Biology, Boston University, Massachusetts 02215.

出版信息

Biochemistry. 1993 Oct 19;32(41):11211-6. doi: 10.1021/bi00092a034.

Abstract

The mannitol permease, an enzyme II of the phosphoenolpyruvate-dependent carbohydrate phosphotransferase system (PTS) of Escherichia coli, carries out the transport and phosphorylation of D-mannitol in this organism. Previous studies have shown that His-554 and Cys-384 in the mannitol permease are sequentially phosphorylated in reactions necessary for the transport and phosphorylation of the substrate. These residues are located in a large cytoplasmic domain of the protein. Interaction of the permease with mannitol, and its membrane translocation, however, must involve the N-terminal, transmembrane domain (EIIC domain) of the protein. In this report, we use site-directed mutagenesis and mutant complementation to investigate the role of His-195 in the EIIC domain of the mannitol permease, a residue that is conserved in many PTS permeases. In a previous report [Weng, Q.-P., Elder, J., & Jacobson, G. R. (1992) J. Biol. Chem. 267, 19529-19535], we inferred a role for His-195 that involves its hydrogen-bonding ability. Here we show that His-195 plays a role in high-affinity mannitol binding. Moreover, mutant complementation studies show that a functional His-195 must be on the same subunit as a functional Cys-384 in a permease dimer for phosphotransfer to mannitol to occur. These results and kinetic studies of His-195 mutant proteins imply that His-195 also may play an important role in this phosphotransfer reaction. His-195 is predicted to be in a cytoplasmic "loop" in the EIIC domain of the mannitol permease, in which several other residues have been shown to have roles in mannitol permease activity.

摘要

甘露醇通透酶是大肠杆菌磷酸烯醇丙酮酸依赖性碳水化合物磷酸转移酶系统(PTS)的一种酶II,在该生物体中负责D - 甘露醇的转运和磷酸化。先前的研究表明,甘露醇通透酶中的His - 554和Cys - 384在底物转运和磷酸化所需的反应中依次被磷酸化。这些残基位于该蛋白的一个大的胞质结构域中。然而,通透酶与甘露醇的相互作用及其膜易位必定涉及该蛋白的N端跨膜结构域(EIIC结构域)。在本报告中,我们使用定点诱变和突变体互补来研究His - 195在甘露醇通透酶EIIC结构域中的作用,该残基在许多PTS通透酶中是保守的。在之前的一份报告[翁,Q.-P.,埃尔德,J.,&雅各布森,G. R.(1992年)《生物化学杂志》267,19529 - 19535]中,我们推断His - 195的作用涉及其氢键结合能力。在此我们表明His - 195在高亲和力甘露醇结合中起作用。此外,突变体互补研究表明,对于磷酸转移至甘露醇的发生,在通透酶二聚体中,功能性的His - 195必须与功能性的Cys - 384位于同一亚基上。这些结果以及His - 195突变蛋白的动力学研究表明,His - 195在该磷酸转移反应中也可能起重要作用。预计His - 195位于甘露醇通透酶EIIC结构域的一个胞质“环”中,其中已表明其他几个残基在甘露醇通透酶活性中起作用。

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