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恶性疟原虫红细胞结合蛋白 1 型 Duffy 结合域与 HIV-1 MN 株 V3 环的序列相似性揭示了趋化因子的 Duffy 抗原受体的结合残基。

Sequence similarity between the erythrocyte binding domain 1 of the Plasmodium vivax Duffy binding protein and the V3 loop of HIV-1 strain MN reveals binding residues for the Duffy Antigen Receptor for Chemokines.

机构信息

Division of Allergy and Infectious Diseases, Vaccine and Infectious Disease Institute, Fred Hutchinson Cancer Research Center,University of Washington, 1100 Fairview Avenue, Seattle, Washington 98109, USA.

出版信息

Virol J. 2011 Jan 31;8:45. doi: 10.1186/1743-422X-8-45.

Abstract

BACKGROUND

The surface glycoprotein (SU, gp120) of the human immunodeficiency virus (HIV) must bind to a chemokine receptor, CCR5 or CXCR4, to invade CD4+ cells. Plasmodium vivax uses the Duffy Binding Protein (DBP) to bind the Duffy Antigen Receptor for Chemokines (DARC) and invade reticulocytes.

RESULTS

Variable loop 3 (V3) of HIV-1 SU and domain 1 of the Plasmodium vivax DBP share a sequence similarity. The site of amino acid sequence similarity was necessary, but not sufficient, for DARC binding and contained a consensus heparin binding site essential for DARC binding. Both HIV-1 and P. vivax can be blocked from binding to their chemokine receptors by the chemokine, RANTES and its analog AOP-RANTES. Site directed mutagenesis of the heparin binding motif in members of the DBP family, the P. knowlesi alpha, beta and gamma proteins abrogated their binding to erythrocytes. Positively charged residues within domain 1 are required for binding of P. vivax and P. knowlesi erythrocyte binding proteins.

CONCLUSION

A heparin binding site motif in members of the DBP family may form part of a conserved erythrocyte receptor binding pocket.

摘要

背景

人类免疫缺陷病毒(HIV)的表面糖蛋白(SU,gp120)必须与趋化因子受体 CCR5 或 CXCR4 结合,才能入侵 CD4+细胞。间日疟原虫使用达菲结合蛋白(DBP)与趋化因子受体达菲抗原(DARC)结合并入侵网织红细胞。

结果

HIV-1 SU 的可变环 3(V3)和间日疟原虫 DBP 的结构域 1 共享一段氨基酸序列相似性。氨基酸序列相似性的位点是 DARC 结合所必需的,但不是充分的,并且包含一个肝素结合位点的共识,这对于 DARC 结合是必不可少的。趋化因子 RANTES 及其类似物 AOP-RANTES 可阻止 HIV-1 和间日疟原虫与其趋化因子受体结合。DBP 家族成员的肝素结合模体的定点突变使它们失去与红细胞的结合能力。结构域 1 内的正电荷残基是间日疟原虫和 P. knowlesi 红细胞结合蛋白与红细胞结合所必需的。

结论

DBP 家族成员中的肝素结合位点模体可能构成保守的红细胞受体结合口袋的一部分。

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