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首页> 外文期刊>Advances and Applications in Bioinformatics and Chemistry >Computational analysis of ligand-receptor interactions in wild-type and mutant erythropoietin complexes
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Computational analysis of ligand-receptor interactions in wild-type and mutant erythropoietin complexes

机译:野生型和突变型促红细胞生成素复合物中配体-受体相互作用的计算分析

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Background: Erythropoietin (EPO), a pleiotropic cytokine, binds to its receptor (EPOR) in bone marrow, activating a signaling cascade that results in red blood cell proliferation. A recently discovered naturally occurring EPO mutation (R150Q) at active site 1 (AS1) of the protein was shown to attenuate its canonical downstream signaling, eliminating its hematopoietic effects and causing a fatal anemia. The purpose of this work was to analyze the EPO–EPOR complex computationally to provide a structural explanation for this signaling change. Materials and methods: Computational structural biology analyses and molecular dynamics simulations were used to determine key interaction differences between the R150Q mutant and the wild-type form of EPO. Both were compared to another variant mutated at the same position, R150E, which also lacks hematopoietic activity. Results: The ligand–receptor interactions of the R150Q and R150E mutants showed significant variations in how they interacted with EPOR at AS1 of the EPO–EPOR complex. Both lost specific reported salt bridges previously associated with full complex activation. Conclusion: This work describes how the ligand–receptor interactions at AS1 of the EPO–EPOR complex respond to mutations at the 150th position. The interactions at AS1 were used to propose a potential mechanism by which the binding of EPO to the extracellular domain of EPOR influences its cytosolic domain and the resulting signaling cascade.
机译:背景:促红细胞生成素(EPO)是一种多效性细胞因子,它与骨髓中的受体(EPOR)结合,激活了导致红细胞增殖的信号级联反应。最近发现在蛋白质的活性位点1(AS1)上自然发生的EPO突变(R150Q)减弱了其规范的下游信号传导,消除了其造血作用并引起致命性贫血。这项工作的目的是通过计算分析EPO-EPOR复合物,从而为这种信号变化提供结构上的解释。材料和方法:计算结构生物学分析和分子动力学模拟用于确定R150Q突变体与EPO野生型之间的关键相互作用差异。将两者与在相同位置突变的另一个变体R150E进行比较,该变体也缺乏造血活性。结果:R150Q和R150E突变体的配体-受体相互作用在EPO-EPOR复合体的AS1处与EPOR相互作用的方式表现出显着差异。两者都失去了先前报道的与完全复杂活化有关的特定盐桥。结论:这项工作描述了EPO-EPOR复合体的AS1上的配体-受体相互作用如何响应第150位的突变。 AS1上的相互作用被用来提出一种潜在的机制,通过该机制,EPO与EPOR的胞外域的结合会影响其胞质域和产生的信号级联。

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