n -链聚糖在HIV-1 M组亚型和循环重组形式中的保护、补偿和进化

ISRN AIDS Pub Date : 2012-12-19 eCollection Date: 2012-01-01 DOI:10.5402/2012/823605
Simon A Travers
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引用次数: 29

摘要

暴露在HIV-1 gp120 env糖蛋白表面的“聚糖屏蔽”先前已被提出作为抗hiv治疗的新靶点。虽然这种靶向这些聚糖为HIV治疗提供了令人兴奋的前景,但人们对各种HIV-1 M组亚型和循环重组形式内部和之间的糖基化模式的保守性和可变性知之甚少。在这里,我们提供了强株特异性糖基化模式的证据,并表明2G12中和抗体的表位在HIV-1 M组中保守性很差。HIV-1 M组亚型和crf中独特的糖基化模式似乎解释了它们对广泛交叉中和(BCN)抗体的不同敏感性。在线性距离和三维近端氨基酸位置的代偿糖基化似乎维持了聚糖屏蔽的完整性,同时传递了对BCN抗体中和的抗性。我们发现gp120三聚体表面确实存在高度保守的糖基化残基簇,并提示这些位置可能为BCN抗碳水化合物治疗的发展提供一个令人兴奋的靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Conservation, Compensation, and Evolution of N-Linked Glycans in the HIV-1 Group M Subtypes and Circulating Recombinant Forms.

Conservation, Compensation, and Evolution of N-Linked Glycans in the HIV-1 Group M Subtypes and Circulating Recombinant Forms.

Conservation, Compensation, and Evolution of N-Linked Glycans in the HIV-1 Group M Subtypes and Circulating Recombinant Forms.

The "glycan shield" exposed on the surface of the HIV-1 gp120 env glycoprotein has been previously proposed as a novel target for anti-HIV treatments. While such targeting of these glycans provides an exciting prospect for HIV treatment, little is known about the conservation and variability of glycosylation patterns within and between the various HIV-1 group M subtypes and circulating recombinant forms. Here, we present evidence of strong strain-specific glycosylation patterns and show that the epitope for the 2G12 neutralising antibody is poorly conserved across HIV-1 group M. The unique glycosylation patterns within the HIV-1 group M subtypes and CRFs appear to explain their varying susceptibility to neutralisation by broadly cross-neutralising (BCN) antibodies. Compensatory glycosylation at linearly distant yet three-dimensionally proximal amino acid positions appears to maintain the integrity of the glycan shield while conveying resistance to neutralisation by BCN antibodies. We find that highly conserved clusters of glycosylated residues do exist on the gp120 trimer surface and suggest that these positions may provide an exciting target for the development of BCN anticarbohydrate therapies.

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