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不同病毒分离株中HIV-1免疫原性冠的双空间折叠和不同局部结构。

Dual spatial folds and different local structures of the HIV-1 immunogenic crown in various virus isolates.

作者信息

Andrianov Alexander M

机构信息

Institute of Bioorganic Chemistry, National Academy of Sciences of Belarus, Kuprevich St., 5/2, 220141 Minsk, Republic of Belarus.

出版信息

J Biomol Struct Dyn. 2004 Oct;22(2):159-70. doi: 10.1080/07391102.2004.10506992.

DOI:10.1080/07391102.2004.10506992
PMID:15317477
Abstract

Local and global structural properties of the HIV-1 principal neutralizing epitope were studied in terms of NMR spectroscopy data reported in literature for the HIV-Haiti and HIV-RF isolates. To this effect, the NMR-based method comprising a probabilistic model of protein conformation in conjunction with the molecular mechanics and quantum chemical computations was used for determining the ensembles of conformers matching the NMR requirements and energy criteria. As a matter of record, the high resolution 3D structure models were constructed for the HIV-Haiti and HIV-RF immunogenic crowns, and their geometric parameters were collated with the ones of conformers derived previously for describing the conformational features of immunogenic tip of gp120 from Thailand and MN HIV-1 strains. The HIV-1 neutralization site was demonstrated to constitute in water solution highly flexible system sensitive to its environment. This inference is completely valid for the geometric space of dihedral angles where statistically significant differences in local structures of simulated conformers have been found for all virus isolates of interest. In spite of this fact, the stretch analyzed was shown to manifest a certain conservatism in the space of atomic coordinates, building up in four HIV-1 isolates two spatial folds similar to those observed in crystal for the V3 loop peptides bound to different neutralizing Fabs. The results are discussed in the light of literature data on HIV-1 neutralizing epitope structure.

摘要

根据文献报道的HIV - 海地和HIV - RF分离株的核磁共振光谱数据,研究了HIV - 1主要中和表位的局部和整体结构特性。为此,采用了基于核磁共振的方法,该方法包括蛋白质构象的概率模型以及分子力学和量子化学计算,用于确定符合核磁共振要求和能量标准的构象异构体集合。需要说明的是,构建了HIV - 海地和HIV - RF免疫原性冠的高分辨率三维结构模型,并将其几何参数与先前推导的用于描述来自泰国和MN HIV - 1菌株的gp120免疫原性末端构象特征的构象异构体的参数进行了整理。结果表明,HIV - 1中和位点在水溶液中构成了一个对其环境敏感的高度灵活的系统。这一推断在二面角的几何空间中是完全有效的,在该空间中,对于所有感兴趣的病毒分离株,在模拟构象异构体的局部结构中发现了统计学上显著的差异。尽管如此,所分析的片段在原子坐标空间中表现出一定的保守性,在四种HIV - 1分离株中形成了两种空间折叠,类似于在晶体中观察到的与不同中和性Fab结合的V3环肽的空间折叠。根据关于HIV - 1中和表位结构的文献数据对结果进行了讨论。

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