从负协同性到无协同性:突变对F420H2:NADP+氧化还原酶亚基间通讯的影响——基于稳态和预稳态动力学方法

IF 2.9 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Biochemistry Biochemistry Pub Date : 2025-03-18 Epub Date: 2025-03-04 DOI:10.1021/acs.biochem.4c00416
Jamariya A Howard, Alaa Aziz, Lindsay A Davis, Denzel Pugh, Md Sabid Ahamed, Ravi Ramkissoon, Juan Corrales, Nathan T Nguyen, Charlene Mandimutsira, Tekleab Beyene, Co Ha, Calvin Dao, Parth Nikumbh, Adway O Zacharias, Saiful M Chowdhury, Kayunta Johnson-Winters
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引用次数: 0

摘要

F420H2:NADP+氧化还原酶(Fno)通过将一个氢化物从还原的F420辅因子转移到NADP+来催化NADPH的可逆生成。以往的动力学研究表明,野生型Fno (wtFno)表现出半位反应性和负协同性,使Fno在产甲烷和硫酸盐还原古菌中具有调节作用。这些研究确定了四种氨基酸;R186, T192, S190和H133作为潜在的候选分子参与亚基间的通信,因为它们位于二聚体的界面或非常接近界面。因此,我们生成了一个Fno变体库──R186K、R186Q、R186I、T192V、T192A、S190A、H133A和H133N──并使用结合、稳态和预稳态动力学实验对其进行了表征,以了解它们在通信中的作用。wtFno的Hill系数先前报道为0.61±0.03,而R186K、R186Q、R186I和T192V Fno的变异值接近或等于1,表明转向无协同行为。与wtFno相比,S190A的希尔系数增加了0.8±0.1,表明其协同性受到了影响。R186突变体、S190A和T192V Fno突变体的稳态双倒易图均为线性,与wtFno突变体的负协同性不同,表明突变体不具有协同性。与wtFno不同,预稳态动力学实验没有显示出变体的半位点反应性。此外,仅在R186K Fno变体中,氢化物转移步骤成为催化的限速步骤。我们的数据表明,负协同性可以被破坏,氨基酸R186、T192和S190参与亚基间的通信。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From Negative to No Cooperativity: Effects of Mutations on Intersubunit Communication within F420H2:NADP+ Oxidoreductase Using Steady-State and Pre-Steady-State Kinetic Methods.

F420H2:NADP+ oxidoreductase (Fno) catalyzes the reversible production of NADPH by transferring a hydride from the reduced F420 cofactor to NADP+. Previous kinetic studies suggest that wild-type Fno (wtFno) displays half-site reactivity and negative cooperativity, making Fno regulatory within methanogenic and sulfate-reducing archaea. These studies identified four amino acids; R186, T192, S190, and H133, as potential candidates involved in intersubunit communication due to their location either at or within close proximity to the interface of the dimer. Therefore, a library of Fno variants─R186K, R186Q, R186I, T192V, T192A, S190A, H133A, and H133N─was generated and characterized using binding, steady-state, and pre-steady-state kinetic experiments to understand their involvement in communication. The Hill coefficient for wtFno was previously reported as 0.61 ± 0.03, while the R186K, R186Q, R186I, and T192V Fno variant values were close or equal to 1, indicating a switch to no cooperativity behavior. The S190A variant displayed increased Hill coefficients of 0.8 ± 0.1 when compared to wtFno, showing that cooperativity was affected. The steady-state double reciprocal plots of the R186 variants, S190A, and T192V Fno variants were linear, which is indicative of no cooperativity, departing from the negative cooperativity shape displayed by wtFno. Unlike wtFno, the pre-steady-state kinetic experiments did not display half-site reactivity for the variants. Additionally, the hydride transfer step became rate-limiting in catalysis for the R186K Fno variant only. Our data suggest that negative cooperativity can be disrupted and that the amino acids R186, T192, and S190 are involved in intersubunit communication.

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来源期刊
Biochemistry Biochemistry
Biochemistry Biochemistry 生物-生化与分子生物学
CiteScore
5.50
自引率
3.40%
发文量
336
审稿时长
1-2 weeks
期刊介绍: Biochemistry provides an international forum for publishing exceptional, rigorous, high-impact research across all of biological chemistry. This broad scope includes studies on the chemical, physical, mechanistic, and/or structural basis of biological or cell function, and encompasses the fields of chemical biology, synthetic biology, disease biology, cell biology, nucleic acid biology, neuroscience, structural biology, and biophysics. In addition to traditional Research Articles, Biochemistry also publishes Communications, Viewpoints, and Perspectives, as well as From the Bench articles that report new methods of particular interest to the biological chemistry community.
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