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CD44 与透明质酸蛋白-碳水化合物结合相互作用中结合位构象转换的机制。

Mechanism of binding site conformational switching in the CD44-hyaluronan protein-carbohydrate binding interaction.

机构信息

Department of Pharmaceutical Sciences, University of New England College of Pharmacy, 716 Stevens Avenue, Portland, ME 04103, USA.

出版信息

J Mol Biol. 2011 Mar 4;406(4):631-47. doi: 10.1016/j.jmb.2010.12.040. Epub 2011 Jan 7.

Abstract

The transmembrane protein CD44, which has been implicated in cancer biology and inflammation, mediates cell adhesion through multimeric interactions with the linear extracellular glycosaminoglycan hyaluronan (HA; in megadaltons). Affinity switching of CD44 from a low-affinity state to a high-affinity state is required for normal CD44 physiological function; crystal structures of the CD44 hyaluronan binding domain complexed with HA oligomers point to a conformational rearrangement at a binding site loop, leading to the formation of direct contact between the oligomer and an arginine side chain as a molecular basis for affinity switching. Here, all-atom explicit-solvent molecular dynamics simulations were used to characterize the dynamics and thermodynamics of oligomeric hyaluronan (oHA) and its two crystallographic complexes with the CD44 hyaluronan binding domain: the "A-form," which lacks arginine-HA close contact, and the "B-form," which has direct arginine side-chain-HA contact. From the simulations, the conformational properties of oHA are essentially unaltered in going from the unbound state to either the A-form or the B-form bound state, with the oligomer retaining its flexibility when bound and with only two of the eight monosaccharides in the oligomer maintaining uninterrupted contact with the protein. Biased simulations revealed that altering the backbone conformation of a tyrosine residue in the arginine loop can induce the A-form→B-form conformational transition and that a large free-energy barrier prevents ready interconversion between the two forms, thereby suggesting that the tyrosine backbone forms a molecular switch.

摘要

跨膜蛋白 CD44 参与癌症生物学和炎症反应,通过与线性细胞外糖胺聚糖透明质酸 (HA;兆道尔顿) 的多聚体相互作用介导细胞黏附。CD44 从低亲和力状态到高亲和力状态的亲和力转换是 CD44 正常生理功能所必需的;CD44 透明质酸结合域与 HA 低聚物复合物的晶体结构表明结合位点环发生构象重排,导致低聚物与精氨酸侧链之间形成直接接触,作为亲和力转换的分子基础。在这里,使用全原子显式溶剂分子动力学模拟来表征寡透明质酸 (oHA) 的动力学和热力学及其与 CD44 透明质酸结合域的两个晶体复合物:“A 型”,缺乏精氨酸-HA 紧密接触,和“B 型”,具有直接的精氨酸侧链-HA 接触。从模拟中可以看出,从未结合状态到 A 型或 B 型结合状态,oHA 的构象性质基本不变,寡聚体在结合时保持其灵活性,只有寡聚体中的八个单糖中的两个保持与蛋白质的不间断接触。有偏差的模拟表明,改变精氨酸环中酪氨酸残基的骨架构象可以诱导 A 型→B 型构象转变,并且较大的自由能势垒阻止两种形式之间的快速相互转换,从而表明酪氨酸骨架形成分子开关。

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