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首页> 外文期刊>Journal of Molecular Biology >Structural basis for the interaction of human β-defensin 6 and its putative chemokine receptor CCR2 and breast cancer microvesicles
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Structural basis for the interaction of human β-defensin 6 and its putative chemokine receptor CCR2 and breast cancer microvesicles

机译:人β-防御素6及其趋化因子受体CCR2与乳腺癌微泡相互作用的结构基础

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Human β-defensins (hBDs) are believed to function as alarm molecules that stimulate the adaptive immune system when a threat is present. In addition to its antimicrobial activity, defensins present other activities such as chemoattraction of a range of different cell types to the sites of inflammation. We have solved the structure of the hBD6 by NMR spectroscopy that contains a conserved β-defensin domain followed by an extended C-terminus. We use NMR to monitor the interaction of hBD6 with microvesicles shed by breast cancer cell lines and with peptides derived from the extracellular domain of CC chemokine receptor 2 (Nt-CCR2) possessing or not possessing sulfation on Tyr26 and Tyr28. The NMR-derived model of the hBD6/CCR2 complex reveals a contiguous binding surface on hBD6, which comprises amino acid residues of the α-helix and β2-β3 loop. The microvesicle binding surface partially overlaps with the chemokine receptor interface. NMR spin relaxation suggests that free hBD6 and the hBD6/CCR2 complex exhibit microsecond-to-millisecond conformational dynamics encompassing the CCR2 binding site, which might facilitate selection of the molecular configuration optimal for binding. These data offer new insights into the structure-function relation of the hBD6-CCR2 interaction, which is a promising target for the design of novel anticancer agents.
机译:人们认为,人β-防御素(hBD)可以作为警报分子,在存在威胁时刺激适应性免疫系统。防御素除了具有抗菌活性外,还具有其他活性,例如将多种不同细胞类型化学吸引到炎症部位。我们已经通过NMR光谱法解决了hBD6的结构,该结构包含一个保守的β-防御素结构域和一个扩展的C端。我们使用NMR来监测hBD6与乳腺癌细胞系脱落的微泡以及具有或不具有在Tyr26和Tyr28上具有硫酸化作用的CC趋化因子受体2(Nt-CCR2)胞外域衍生肽的相互作用。 NMR衍生的hBD6 / CCR2复合物模型揭示了hBD6的连续结合表面,该表面包含α-螺旋和β2-β3环的氨基酸残基。微泡结合表面与趋化因子受体界面部分重叠。 NMR自旋弛豫表明游离的hBD6和hBD6 / CCR2复合物表现出微秒级至毫秒级的构象动力学,包括CCR2结合位点,这可能有助于选择最适合结合的分子构型。这些数据提供了hBD6-CCR2相互作用的结构-功能关系的新见解,这是设计新型抗癌药的有希望的目标。

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