首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >The molecular mechanism of heme loss from oxidized soluble guanylate cyclase induced by conformational change
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The molecular mechanism of heme loss from oxidized soluble guanylate cyclase induced by conformational change

机译:构象变化诱导氧化可溶性鸟苷酸环化酶血红素丢失的分子机制

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摘要

Heme oxidation and loss of soluble guanylate cyclase (sGC) is thought to be an important contributor to the development of cardiovascular diseases. Nevertheless, it remains unknown why the heme loses readily in oxidized sGC. In the current study, the conformational change of sGC upon heme oxidation by ODQ was studied based on the fluorescence resonance energy transfer (FRET) between the heme and a fluorophore fluorescein arsenical helix binder (FlAsH-EDT2) labeled at different domains of sGC in This study provides an opportunity to monitor the domain movement of sGC relative to the heme. The results indicated that heme oxidation by ODQ in truncated sCC induced the heme-associated alpha F helix moving away from the heme, the Per/Arnt/Sim domain (PAS) domain moving closer to the heme, but led the helical domain going further from the heme. We proposed that the synergistic effect of these conformational changes of the discrete region upon heme oxidation forces the heme pocket open, and subsequent heme loss readily. Furthermore, the kinetic studies suggested that the heme oxidation was a fast process and the conformational change was a relatively slow process. The kinetics of heme loss from oxidized sGC was monitored by a new method based on the heme group de-quenching the fluorescence of FlAsH-EDT2. (c) 2016 Elsevier B.V. All rights reserved.
机译:血红素的氧化和可溶性鸟苷酸环化酶(sGC)的丢失被认为是心血管疾病发展的重要因素。然而,仍然不清楚为什么血红素在氧化的sGC中容易丢失。在当前的研究中,基于血红素与标记在sGC的不同结构域上的荧光团荧光素砷螺旋结合剂(FlAsH-EDT2)之间的荧光共振能量转移(FRET),研究了ODQ氧化血红素后sGC的构象变化。研究提供了一个机会来监测sGC相对于血红素的域运动。结果表明,ODQ在截短的sCC中氧化血红素导致血红素相关的αF螺旋远离血红素,Per / Arnt / Sim域(PAS)域更靠近血红素,但导致螺旋域更远离血红素。血红素。我们提出,这些离散区域的构象变化对血红素氧化的协同作用迫使血红素袋打开,随后血红素容易流失。此外,动力学研究表明血红素氧化是一个快速过程,而构象变化是一个相对缓慢的过程。通过基于血红素基团猝灭FlAsH-EDT2荧光的新方法,监测了氧化的sGC引起的血红素损失动力学。 (c)2016 Elsevier B.V.保留所有权利。

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