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HIV-1 gp120保守C末端区域中一个表位的结构与功能特征

Structural and functional characterization of an epitope in the conserved C-terminal region of HIV-1 gp120.

作者信息

Ferrer M, Sullivan B J, Godbout K L, Burke E, Stump H S, Godoy J, Golden A, Profy A T, van Schravendijk M R

机构信息

Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA 02138, USA.

出版信息

J Pept Res. 1999 Jul;54(1):32-42. doi: 10.1034/j.1399-3011.1999.00082.x.

DOI:10.1034/j.1399-3011.1999.00082.x
PMID:10448968
Abstract

Through an integrated study of the reactivity of a monoclonal antibody, 803-15.6, with synthetic peptides and native recombinant HIV-1 envelope glycoprotein gp120, we have obtained structure-functional information on a region of rgp120 not yet elucidated by X-ray crystallography. mAb 803-15.6 binds with high affinity and broad cross-clade specificity to the conserved C-terminal region (amino acids 502-516) of HIV-1 rgp120. Phage display selection from a random peptide library identified the core binding motif as AXXKXRH, homologous to residues 502-508. Using quantitative binding analyses, the affinity of mAb 803-15.6 for native, monomeric recombinant gp120HXB2 (rgp120) was found to be similar to that for the synthetic gp120 peptide (502-516). Circular dichroism studies indicate that the synthetic peptide largely has a random coil conformation in solution. The results therefore suggest that the 803-15.6 epitope is fully accessible on rgp120 and that this region of rgp120 is as flexible as the synthetic peptide. Residues 502-504 are on the edge of a putative gp41 binding site that has been postulated to change conformation on CD4 binding. However, the affinity of mAb 803-15.6 for rgp120 is not affected by binding of CD4 and vice-versa. These results suggest either that the 502-504 region does not change conformation upon CD4 binding, or that recombinant gp120 does not undergo the same changes as occur in the native viral gp120-gp41 oligomer. The detailed characterization of the 803-15.6 epitope may be useful for further study of the role of the C5 region of gp120 in the viral attachment and fusion process.

摘要

通过对单克隆抗体803 - 15.6与合成肽及天然重组HIV - 1包膜糖蛋白gp120反应性的综合研究,我们获得了关于重组gp120一个尚未通过X射线晶体学阐明区域的结构功能信息。单克隆抗体803 - 15.6以高亲和力和广泛的跨亚型特异性结合HIV - 1重组gp120的保守C末端区域(氨基酸502 - 516)。从随机肽库中进行噬菌体展示筛选确定核心结合基序为AXXKXRH,与残基502 - 508同源。通过定量结合分析,发现单克隆抗体803 - 15.6对天然单体重组gp120HXB2(rgp120)的亲和力与对合成gp120肽(502 - 516)的亲和力相似。圆二色性研究表明合成肽在溶液中主要具有无规卷曲构象。因此结果表明803 - 15.6表位在rgp120上完全可及,并且rgp120的这个区域与合成肽一样具有柔性。残基502 - 504位于一个假定的gp41结合位点边缘,该位点据推测在CD4结合时会改变构象。然而,单克隆抗体803 - 15.6对rgp120的亲和力不受CD4结合的影响,反之亦然。这些结果表明要么502 - 504区域在CD4结合时不改变构象,要么重组gp120不会经历与天然病毒gp120 - gp41寡聚体相同的变化。803 - 15.6表位的详细表征可能有助于进一步研究gp120的C5区域在病毒附着和融合过程中的作用。

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