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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Allosterism in human complement component 5a ((h)C5a): a damper of C5a receptor (C5aR) signaling
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Allosterism in human complement component 5a ((h)C5a): a damper of C5a receptor (C5aR) signaling

机译:人补体成分5a((h)C5a)中的变构作用:C5a受体(C5aR)信号传导的抑制物

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The phenomena of allosterism continues to advance the field of drug discovery, by illuminating gainful insights for many key processes, related to the structure-function relationships in proteins and enzymes, including the transmembrane G-protein coupled receptors (GPCRs), both in normal as well as in the disease states. However, allosterism is completely unexplored in the native protein ligands, especially when a small covalent change significantly modulates the pharmacology of the protein ligands toward the signaling axes of the GPCRs. One such example is the human C5a ((h)C5a), the potent cationic anaphylatoxin that engages C5aR and C5L2 to elicit numerous immunological and non-immunological responses in humans. From the recently available structure-function data, it is clear that unlike the mouse C5a ((m)C5a), the (h)C5a displays conformational heterogeneity. However, the molecular basis of such conformational heterogeneity, otherwise allosterism in (h)C5a and its precise contribution toward the overall C5aR signaling is not known. This study attempts to decipher the functional role of allosterism in (h)C5a, by exploring the inherent conformational dynamics in (m)C5a, (h)C5a and in its point mutants, including the proteolytic mutant des-Arg(74)-(h)C5a. Prima facie, the comparative molecular dynamics study, over total 500ns, identifies Arg(74)-Tyr(23) and Arg(37)-Phe(51) cation- pairs as the molecular allosteric switches on (h)C5a that potentially functions as a damper of C5aR signaling.
机译:变构现象通过阐明对许多关键过程的有益见解而继续推进药物发现领域,这些关键过程与蛋白质和酶的结构-功能关系有关,包括跨膜G蛋白偶联受体(GPCR),两者在正常情况下都是如此。以及处于疾病状态。然而,在天然蛋白质配体中,完全没有探索变构​​作用,特别是当小的共价变化显着调节蛋白质配体朝向GPCR信号轴的药理作用时。一个这样的例子是人C5a((h)C5a),一种有效的阳离子过敏毒素,与C5aR和C5L2结合,在人中引起许多免疫和非免疫反应。从最近可用的结构功能数据可以清楚地看出,与小鼠C5a((m)C5a)不同,(h)C5a显示出构象异质性。但是,这种构象异质性的分子基础,否则(h)C5a中的变构作用及其对整体C5aR信号传导的精确贡献尚不清楚。这项研究试图通过探索(m)C5a,(h)C5a及其点突变体(包括蛋白水解突变体des-Arg(74)-())的固有构象动力学,来解释(h)C5a变构作用的功能。 h)C5a。在整个500ns内进行的分子动力学比较研究初步研究确定Arg(74)-Tyr(23)和Arg(37)-Phe(51)阳离子对是(h)C5a上的分子变构开关,其潜在功能为C5aR信号的阻尼器。

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