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Dissecting regulation mechanism of the FMN to heme interdomain electron transfer in nitric oxide synthases

机译:一氧化氮合酶中FMN对血红素域间电子转移的调控机制

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Nitric oxide synthase (NOS), a flavo-hemoprotein, is responsible for biosynthesis of nitric oxide (NO) inmammals. Three NOS isoforms, iNOS, eNOS and nNOS (inducible, endothelial, and neuronal NOS), achieve their biological functions by tight control of interdomain electron transfer (IET) process through interdomain interactions. In particular, the FMN-heme IET is essential in coupling electron transfer in the reductase domainwith NO synthesis in the heme domain by delivery of electrons required for O_2 activation at the catalytic heme site. Emerging evidence indicates that calmodulin (CaM) activates NO synthesis in eNOS and nNOS by a conformational change of the FMN domain fromits shielded electron-accepting (input) state to a new electron-donating (output) state, and that CaM is also required for proper alignment of the FMN and heme domains in the three NOS isoforms. In the absence of a structure of full-length NOS, an integrated approach of spectroscopic, rapid kinetic andmutagenesis methods is required to unravel regulationmechanismof the FMN-heme IET process. This is to investigate the roles of the FMN domain motions and the docking between the primary functional FMN and heme domains in regulating NOS activity. The recent developments in this area that are driven by the combined approach are the focuses of this review. A better understanding of the roles of interdomain FMN/heme interactions and CaM binding may serve as a basis for the rational design of new selective modulators of the NOS enzymes.
机译:一氧化氮合酶(NOS)是一种黄素血红蛋白,负责哺乳动物一氧化氮(NO)的生物合成。三种NOS亚型,即iNOS,eNOS和nNOS(诱导型,内皮型和神经元型NOS),通过域间相互作用来严格控制域间电子转移(IET)过程,从而实现其生物学功能。特别地,FMN-血红素IET对于通过在催化血红素位点处递送O_2活化所需的电子而将还原酶域中的电子转移与血红素域中的NO合成偶联是必不可少的。新兴证据表明,钙调蛋白(CaM)通过FMN域从其受保护的电子接受(输入)状态到新的电子供体(输出)状态的构象变化,激活eNOS和nNOS中的NO合成,并且CaM也是必需的三种NOS亚型中FMN和血红素结构域的正确比对。在没有全长NOS结构的情况下,需要采用光谱,快速动力学和诱变方法的集成方法来解开FMN-血红素IET过程的调控机制。这是为了调查FMN域运动以及主要功能性FMN和血红素域之间的对接在调节NOS活性中的作用。结合方法在该领域的最新发展是本综述的重点。更好地了解域间FMN /血红素相互作用和CaM结合的作用,可以作为合理设计NOS酶新选择性调节剂的基础。

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