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Nitric oxide interaction with cytochrome c ' and its relevance to guanylate cyclase. Why does the iron histidine bond break?

机译:一氧化氮与细胞色素c'的相互作用及其与鸟苷酸环化酶的相关性。为什么组氨酸铁键断裂?

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Soluble guanylate cyclase (sGC), the mammalian receptor for nitric oxide (NO), is a heme protein with a histidine as the proximal ligand. Formation of a five-coordinate heme-NO complex with the associated Fe-His bond cleavage is believed to trigger a conformational change that activates the enzyme and transduces the NO signal. Cytochrome c' (cyt c') is a protobacteria heme protein that has several similarities with sGC, including the ability to form a five-coordinate NO adduct and the fact that it does not bind oxygen. Recent crystallographic characterization of cyt c' from Alcaligenes xylosoxidans (AXCP) has yielded the discovery that exogenous ligands are able to bind to the Fe center from either side of the porphyrin plane. In this paper, we explore the molecular basis of the NO interaction with AXCP using hybrid quantum-classical simulation techniques. Our results suggest that Fe-His bond breaking depends not only on the iron-histidine bond strength but also on the existence of a local minimum conformation of the protein with the histidine away from the iron. We also show that AXCP is a useful paradigm for NO interaction with heme proteins, particularly regarding the activation/deactivation mechanism of sGC. The results presented here fully support a recently proposed model of sGC activation in which NO is not only the iron ligand but also catalyzes the activation step.
机译:可溶性鸟苷酸环化酶(sGC)是一氧化氮(NO)的哺乳动物受体,是一种以组氨酸为近端配体的血红素蛋白。据信具有相关的Fe-His键裂解的五配位血红素-NO复合物的形成触发了构象变化,该构象变化激活了酶并转导了NO信号。细胞色素c'(cyt c')是一种原细菌血红素蛋白,与sGC有几处相似之处,包括形成五配位NO的能力以及它不与氧结合的事实。产自木杯产碱木聚糖酶(AXCP)的cyt c′的最新晶体学表征已经发现外源性配体能够从卟啉平面的任一侧结合至Fe中心。在本文中,我们使用混合量子经典模拟技术探索了NO与AXCP相互作用的分子基础。我们的结果表明,Fe-His键的断裂不仅取决于铁-组氨酸的键强度,而且还取决于组氨酸远离铁时蛋白质的局部最小构象的存在。我们还显示AXCP是NO与血红素蛋白相互作用的有用范例,特别是关于sGC的激活/失活机制。此处给出的结果完全支持了最近提出的sGC活化模型,其中NO不仅是铁配体,而且还催化了活化步骤。

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