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抗人类免疫缺陷病毒趋化因子病毒巨噬细胞炎性蛋白-II(VMIP-II)的动力学研究揭示了一种完全单体的蛋白质。

Dynamics study on the anti-human immunodeficiency virus chemokine viral macrophage-inflammatory protein-II (VMIP-II) reveals a fully monomeric protein.

作者信息

LiWang A C, Cao J J, Zheng H, Lu Z, Peiper S C, LiWang P J

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-1393, USA.

出版信息

Biochemistry. 1999 Jan 5;38(1):442-53. doi: 10.1021/bi9812726.

DOI:10.1021/bi9812726
PMID:9890927
Abstract

Encoded by Kaposi's sarcoma-associated herpesvirus, viral macrophage-inflammatory protein-II (VMIP-II) is unique among CC chemokines in that it has been shown to bind to the CXC chemokine receptor CXCR4 as well as to a variety of CC chemokine receptors. This unique binding ability allows vMIP-II to block infection by a wide range of human immunodeficiency virus type I (HIV-1) strains, but the structural and dynamic basis for this broad range of binding is not known. 15N T1, T2 and 15N[-HN] nuclear Overhauser effect (NOE) values of vMIP-II, determined through a series of heteronuclear multidimensional nuclear magnetic resonance (NMR) experiments, were used to obtain information about the backbone dynamics of the protein. Whereas almost all chemokine structures reveal a dimer or multimer, vMIP-II has a rotational correlation time (tauc) of 4.7 +/- 0.3 ns, which is consistent with a monomeric chemokine. The rotational diffusion anisotropy, D parallel/D perpendicular, is approximately 1.5 +/- 0.1. The conformation of vMIP-II is quite similar to other known chemokines, containing an unstructured N-terminus followed by an ordered turn, three beta-strands arranged in an antiparallel fashion, and one C-terminal alpha-helix that lies across the beta-strands. Most of the protein is well-ordered on a picosecond time scale, with an average order parameter S2 (excluding the N-terminal 13 amino acids) of 0.83 +/- 0. 09, and with even greater order in regions of secondary structure. The NMR data reveal that the N-terminus, which in other chemokines has been implicated in receptor binding, extends like a flexible tail in solution and possesses no secondary structure. The region of the ordered turn, including residues 25-28, experiences conformational exchange dynamics. The implications of these NMR data to the broad receptor binding capability of vMIP-II are discussed.

摘要

病毒巨噬细胞炎症蛋白-II(VMIP-II)由卡波西肉瘤相关疱疹病毒编码,在CC趋化因子中独具特色,因为它已被证明能与CXC趋化因子受体CXCR4以及多种CC趋化因子受体结合。这种独特的结合能力使vMIP-II能够阻断多种I型人类免疫缺陷病毒(HIV-1)毒株的感染,但这种广泛结合的结构和动力学基础尚不清楚。通过一系列异核多维核磁共振(NMR)实验测定的vMIP-II的15N T1、T2和15N[-HN]核Overhauser效应(NOE)值,被用于获取有关该蛋白质主链动力学的信息。尽管几乎所有趋化因子结构都显示为二聚体或多聚体,但vMIP-II的旋转相关时间(tauc)为4.7±0.3纳秒,这与单体趋化因子一致。旋转扩散各向异性,D平行/D垂直,约为1.5±0.1。vMIP-II的构象与其他已知趋化因子非常相似,包含一个无结构的N端,接着是一个有序转角,三条反平行排列的β链,以及一条横跨β链的C端α螺旋。该蛋白质的大部分在皮秒时间尺度上排列有序,平均序参数S2(不包括N端的13个氨基酸)为0.83±0.09,在二级结构区域的有序程度更高。NMR数据表明,在其他趋化因子中与受体结合有关的N端,在溶液中像一条柔性尾巴一样延伸,不具有二级结构。包括25 - 28位残基的有序转角区域经历构象交换动力学。讨论了这些NMR数据对vMIP-II广泛受体结合能力的影响。

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