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Distinct but overlapping epitopes for the interaction of a CC-chemokine with CCR1, CCR3 and CCR5

机译:CC趋化因子与CCR1,CCR3和CCR5相互作用的不同但重叠的表位

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Chemokines play an important role in inflammation. The mechanism via which they bind to more than one receptor and activate them is not well understood. The chemokines are thought to interact with their receptors via two distinct sites, one necessary for binding and the other for activation of signal transduction. In this study we have used alanine scanning mutagenesis to identify residues on RANTES that specifically interact with its receptors CCR1, CCR3, and CCR5 for binding and activation. Residues within a potential receptor binding site known as the N-loop (residues 12-20) and near the N-terminus of RANTES were individually mutated to alanine. The results of this study show that, within the N-loop, the side chain of R17 is necessary for RANTES binding to CCR1, F12 for binding to CCR3, and F12 and I15 for binding to CCR5, thus forming distinct but overlapping binding epitopes. In addition, our finding that P2 is necessary for binding to CCR5 is the first to show that a residue near the N-terminus of a CC-chemokine is involved in binding to a receptor. We have also found that P2, D6, and T7 near the N-terminus are involved in activating signal transduction via CCR1, P2 and Y3 via CCR3, and Y3 and D6 via CCR5. These results indicate that RANTES interacts with each of its receptors in a distinct and specific manner and provide further evidence to support the two-site model of interaction between chemokines and their receptors.
机译:趋化因子在炎症中起重要作用。它们与一个以上的受体结合并激活它们的机制尚不清楚。人们认为趋化因子通过两个不同的位点与它们的受体相互作用,一个是结合所必需的,另一个是激活信号转导所必需的。在这项研究中,我们已使用丙氨酸扫描诱变来鉴定RANTES上与其受体CCR1,CCR3和CCR5特异性相互作用以结合和激活的残基。潜在受体结合位点(称为N环)(残基12-20)内和RANTES N端附近的残基分别突变为丙氨酸。这项研究的结果表明,在N环内,R17的侧链对于RANTES与CCR1的结合是必需的,F12对于与CCR3的结合是必需的,而F12和I15对于与CCR5的结合是必需的,因此形成独特但重叠的结合表位。另外,我们的发现P2是结合CCR5所必需的,这是第一个表明CC趋化因子N末端附近的残基参与与受体结合的发现。我们还发现,靠近N端的P2,D6和T7参与通过CCR1,P2和Y3通过CCR3以及Y3和D6通过CCR5激活信号转导。这些结果表明,RANTES以独特和特定的方式与其每个受体相互作用,并提供了进一步的证据来支持趋化因子与其受体之间相互作用的两点模型。

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