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Cysteine redox state plays a key role in the inter-domain movements of HMGB1: a molecular dynamics simulation study

机译:半胱氨酸氧化还原状态在HMGB1的域间运动中起着关键作用:分子动力学模拟研究

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摘要

High mobility group box protein 1 (HMGB1) is an abundant, conserved, non-histone nuclear protein that can serve as an alarmin, driving the pathogenesis of inflammatory and autoimmune diseases. In addition to its intracellular functions, HMGB1 can be released to the extracellular environment where it mediates the activation of the innate immune response, resulting in chemotaxis and cytokine release. HMGB1 contains three conserved redox-sensitive cysteines (C23, C45, and C106), and modifications of these cysteines determine the bioactivity of extracellular HMGB1. To advance our understanding of the redox-dependent functional changes of HMGB1, we have modeled full-length HMGB1 and simulated three different states of the protein, including its C23A and C106A mutants. Principal component analysis suggests that redox states affect the disordered loop movements, and subsequently the domain movements, of the active B-box domain that determines the fate of cytokine activity. We have also explored the free energy landscape of the redox states of HMGB1 to understand their crucial structural differences. These findings may have identified redox-dependent features that enable functional conformational transitions. Furthermore, active HMGB1 was docked onto a complex of Toll-like receptor 4 and myeloid differentiation factor 2 to predict the interactions that may provide helpful insights into the potential role of HMGB1 as therapeutic target for numerous autoimmune diseases.
机译:高迁移率组盒蛋白1(HMGB1)是一种丰富,保守的非组蛋白核蛋白,可作为警报,推动炎症和自身免疫疾病的发病机制。除了其细胞内函数外,HMGB1还可以释放到细胞外环境中,其中介导先前免疫应答的激活,导致趋化性和细胞因子释放。 HMGB1含有三种保守的氧化还原敏感性半胱氨酸(C23,C45和C106),这些半胱氨酸的修饰决定了细胞外HMGB1的生物活性。为了推进我们对HMGB1的氧化还原依赖功能变化的理解,我们已经建模了全长HMGB1,并模拟了蛋白质的三种不同状态,包括其C23A和C106A突变体。主成分分析表明,氧化还原状态影响无序的循环运动,随后是确定细胞因子活动的命运的有源B盒结构域的域移动。我们还探讨了HMGB1的氧化还原状态的自由能景观,了解其关键的结构差异。这些发现可能已经确定了依赖于氧化还原功能,该特征能够实现功能构象转换。此外,将活性HMGB1停靠在可收费的受体4和骨髓分化因子2的复合物上,以预测可以提供有用的见解,这可以提供有用的洞察HMGB1作为许多自身免疫疾病的治疗靶标的潜在作用。

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