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精氨酸279是黄素依赖性鸟氨酸单加氧酶SidA中辅酶选择性的关键调节因子。

Arg279 is the key regulator of coenzyme selectivity in the flavin-dependent ornithine monooxygenase SidA.

作者信息

Robinson Reeder, Franceschini Stefano, Fedkenheuer Michael, Rodriguez Pedro J, Ellerbrock Jacob, Romero Elvira, Echandi Maria Paulina, Martin Del Campo Julia S, Sobrado Pablo

机构信息

Department of Biochemistry, Virginia Tech, Blacksburg, VA 24061, United States.

Department of Biology and Biotechnology, University of Pavia, Via Ferrata 9, 27100, Italy.

出版信息

Biochim Biophys Acta. 2014 Apr;1844(4):778-84. doi: 10.1016/j.bbapap.2014.02.005. Epub 2014 Feb 15.

Abstract

Siderophore A (SidA) is a flavin-dependent monooxygenase that catalyzes the NAD(P)H- and oxygen-dependent hydroxylation of ornithine in the biosynthesis of siderophores in Aspergillus fumigatus and is essential for virulence. SidA can utilize both NADPH or NADH for activity; however, the enzyme is selective for NADPH. Structural analysis shows that R279 interacts with the 2'-phosphate of NADPH. To probe the role of electrostatic interactions in coenzyme selectivity, R279 was mutated to both an alanine and a glutamate. The mutant proteins were active but highly uncoupled, oxidizing NADPH and producing hydrogen peroxide instead of hydroxylated ornithine. For wtSidA, the catalytic efficiency was 6-fold higher with NADPH as compared to NADH. For the R279A mutant the catalytic efficiency was the same with both coenyzmes, while for the R279E mutant the catalytic efficiency was 5-fold higher with NADH. The effects are mainly due to an increase in the KD values, as no major changes on the kcat or flavin reduction values were observed. Thus, the absence of a positive charge leads to no coenzyme selectivity while introduction of a negative charge leads to preference for NADH. Flavin fluorescence studies suggest altered interaction between the flavin and NADP⁺ in the mutant enzymes. The effects are caused by different binding modes of the coenzyme upon removal of the positive charge at position 279, as no major conformational changes were observed in the structure for R279A. The results indicate that the positive charge at position 279 is critical for tight binding of NADPH and efficient hydroxylation.

摘要

铁载体A(SidA)是一种黄素依赖性单加氧酶,在烟曲霉铁载体的生物合成中催化鸟氨酸的NAD(P)H和氧气依赖性羟基化反应,对毒力至关重要。SidA可以利用NADPH或NADH进行活性反应;然而,该酶对NADPH具有选择性。结构分析表明,R279与NADPH的2'-磷酸相互作用。为了探究静电相互作用在辅酶选择性中的作用,将R279分别突变为丙氨酸和谷氨酸。突变蛋白具有活性,但高度解偶联,氧化NADPH并产生过氧化氢,而不是羟基化鸟氨酸。对于野生型SidA,与NADH相比,NADPH的催化效率高6倍。对于R279A突变体,两种辅酶的催化效率相同,而对于R279E突变体,NADH的催化效率高5倍。这些影响主要是由于KD值的增加,因为未观察到kcat或黄素还原值有重大变化。因此,正电荷的缺失导致没有辅酶选择性,而负电荷的引入导致对NADH的偏好。黄素荧光研究表明,突变酶中黄素与NADP⁺之间的相互作用发生了改变。这些影响是由辅酶在279位正电荷去除后的不同结合模式引起的,因为R279A的结构中未观察到重大构象变化。结果表明,279位的正电荷对于NADPH的紧密结合和高效羟基化至关重要。

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