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首页> 外文期刊>Virology >Specific amino acids in the N-terminus of the gp41 ectodomain contribute to the stabilization of a soluble, cleaved gp140 envelope glycoprotein from human immunodeficiency virus type 1.
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Specific amino acids in the N-terminus of the gp41 ectodomain contribute to the stabilization of a soluble, cleaved gp140 envelope glycoprotein from human immunodeficiency virus type 1.

机译:gp41胞外域N末端的特定氨基酸有助于稳定人源1型免疫缺陷病毒裂解的可裂解gp140包膜糖蛋白。

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摘要

The HIV-1 envelope glycoprotein is expressed on the viral membrane as a trimeric complex, formed by three gp120 surface glycoproteins non-covalently associated with three membrane-anchored gp41 subunits. The labile nature of the association between gp120 and gp41 hinders the expression of soluble, fully cleaved, trimeric gp140 proteins for structural and immunization studies. Disruption of the primary cleavage site within gp160 allows the production of stable gp140 trimers, but cleavage-defective trimers are antigenically dissimilar from their cleaved counterparts. Soluble, stabilized, proteolytically cleaved, trimeric gp140 proteins can be generated by engineering an intermolecular disulfide bond between gp120 and gp41 (SOS), combined with a single residue change, I559P, within gp41 (SOSIP). We have found that SOSIP gp140 proteins based on the subtype A HIV-1 strain KNH1144 form particularly homogenous trimers compared to a prototypic strain (JR-FL, subtype B). We now show that the determinants of this enhanced stability are located in the N-terminal region of KNH11144 gp41 and that, when substituted into heterologous Env sequences (e.g., JR-FL and Ba-L) they have a similarly beneficial effect on trimer stability. The stabilized trimers retain the epitopes for several neutralizing antibodies (b12, 2G12, 2F5 and 4E10) and the CD4-IgG2 molecule, suggesting that the overall antigenic structure of the gp140 protein has not been adversely impaired by the trimer-stabilizing substitutions. The ability to increase the stability of gp140 trimers might be useful for neutralizing antibody-based vaccine strategies based on the use of this type of immunogen.
机译:HIV-1包膜糖蛋白在病毒膜上表达为三聚体复合物,由与三个膜锚定的gp41亚基非共价结合的三个gp120表面糖蛋白形成。 gp120和gp41之间关联的不稳定性质阻碍了可溶性,完全裂解的三聚体gp140蛋白在结构和免疫研究中的表达。 gp160内主要切割位点的破坏可产生稳定的gp140三聚体,但切割缺陷的三聚体在抗原上与其切割的对应物不同。可以通过在gp120和gp41(SOS)之间构建分子间二硫键并结合gp41(SOSIP)中的单个残基I559P来生成可溶,稳定,蛋白水解切割的三聚体gp140蛋白。我们已经发现,与原型菌株(JR-FL,B型)相比,基于A亚型HIV-1菌株KNH1144的SOSIP gp140蛋白形成特别均质的三聚体。我们现在表明,这种增强的稳定性的决定因素位于KNH11144 gp41的N端区域,并且当被取代为异源Env序列(例如JR-FL和Ba-L)时,它们对三聚体稳定性具有类似的有益作用。稳定的三聚体保留了几种中和抗体(b12、2G12、2F5和4E10)和CD4-IgG2分子的表位,表明gp140蛋白的整体抗原结构并未受到三聚体稳定取代的不利影响。基于这种类型免疫原的使用,提高gp140三聚体稳定性的能力可能对中和基于抗体的疫苗策略有用。

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