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一个灵活的谷氨酰胺调节甲苯邻二甲苯单加氧酶的催化活性。

A flexible glutamine regulates the catalytic activity of toluene o-xylene monooxygenase.

机构信息

Department of Chemistry, Massachusetts Institute of Technology , Cambridge, Massachusetts 02139, United States.

出版信息

Biochemistry. 2014 Jun 10;53(22):3585-92. doi: 10.1021/bi500387y. Epub 2014 May 29.

Abstract

Toluene/o-xylene monooxygenase (ToMO) is a bacterial multicomponent monooxygenase capable of oxidizing aromatic substrates. The carboxylate-rich diiron active site is located in the hydroxylase component of ToMO (ToMOH), buried 12 Å from the surface of the protein. A small, hydrophilic pore is the shortest pathway between the diiron active site and the protein exterior. In this study of ToMOH from Pseudomonas sp. OX1, the functions of two residues lining this pore, N202 and Q228, were investigated using site-directed mutagenesis. Steady-state characterization of WT and the three mutant enzymes demonstrates that residues N202 and Q228 are critical for turnover. Kinetic isotope effects and pH profiles reveal that these residues govern the kinetics of water egress and prevent quenching of activated oxygen intermediates formed at the diiron active site. We propose that this activity arises from movement of these residues, opening and closing the pore during catalysis, as seen in previous X-ray crystallographic studies. In addition, N202 and Q228 are important for the interactions of the reductase and regulatory components to ToMOH, suggesting that they bind competitively to the hydroxylase. The role of the pore in the hydroxylase components of other bacterial multicomponent monooxygenases within the superfamily is discussed in light of these conclusions.

摘要

甲苯/邻二甲苯单加氧酶(ToMO)是一种能够氧化芳香族底物的细菌多组分单加氧酶。羧酸盐丰富的二铁活性位点位于 ToMO 的羟化酶组分(ToMOH)中,距离蛋白质表面 12Å。一个小的亲水性孔道是二铁活性位点和蛋白质外部之间最短的途径。在本研究中,研究了来自假单胞菌 OX1 的 ToMOH,通过定点突变研究了排列在这个孔道中的两个残基 N202 和 Q228 的功能。WT 和三种突变酶的稳态特性表明,残基 N202 和 Q228 对周转率至关重要。动力学同位素效应和 pH 曲线揭示了这些残基控制水流出的动力学,并防止在二铁活性位点形成的激活氧中间体猝灭。我们提出,这种活性来自于这些残基的运动,在催化过程中打开和关闭孔道,正如之前的 X 射线晶体学研究所示。此外,N202 和 Q228 对于还原酶和调节组件与 ToMOH 的相互作用很重要,这表明它们与羟化酶竞争结合。根据这些结论,讨论了该孔道在超级家族中其他细菌多组分单加氧酶的羟化酶组分中的作用。

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