首页> 美国卫生研究院文献>Journal of Virology >Identification of Amino Acid Residues Important for Heparan Sulfate Proteoglycan Interaction within Variable Region 3 of the Feline Immunodeficiency Virus Surface Glycoprotein
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Identification of Amino Acid Residues Important for Heparan Sulfate Proteoglycan Interaction within Variable Region 3 of the Feline Immunodeficiency Virus Surface Glycoprotein

机译:对猫免疫缺陷病毒表面糖蛋白可变区3内乙酰肝素硫酸蛋白聚糖相互作用重要的氨基酸残基的鉴定

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摘要

Heparan sulfate proteoglycans (HSPGs) act as binding receptors or attachment factors for the viral envelope of many viruses, including strains of HIV and feline immunodeficiency virus (FIV). The FIV gp95 glycoprotein (SU) from laboratory-adapted strains (tissue culture adapted [TCA]) such as FIV-34TF10 can bind to HSPG, whereas SU from field strains (FS) such as FIV-PPR cannot. Previous studies indicate that SU-HSPG interactions occur within the V3 loop. We utilized a series of nested V3 peptides to further map the HSPG binding sites and found that both sides of the predicted V3 loop stem were critical for the binding but not the CXCR4 binding domain near the predicted tip of the V3 loop. Neutralization assays for TCA strain entry using the same set of V3 peptides showed that peptides targeting CXCR4 or HSPG binding sites can block infection, supporting the V3 loop as a critical neutralization target. Site-directed mutagenesis identified two highly conserved arginines, R379 and R389, on the N-terminal side of the V3 stem as critical for the contact between SU and HSPG. Residues K407, K409, K410, and K412 on the C-terminal side of the V3 stem form a second nonconserved domain necessary for HSPG binding, consistent with the observed specificity distinctions with FS FIV. Our findings discriminate structural determinants important for HSPG and CXCR4 binding by FIV SU and thus further define the importance of the V3 loop for virus entry and infection.
机译:硫酸乙酰肝素蛋白聚糖(HSPG)充当许多病毒(包括HIV和猫免疫缺陷病毒(FIV)株)的病毒包膜的结合受体或附着因子。来自实验室适应性菌株(适应组织培养[TCA])的FIV gp95糖蛋白(SU)(例如FIV-34TF10)可以与HSPG结合,而来自田间菌株(FS)的FIV-PPR则不能。先前的研究表明SU-HSPG相互作用发生在V3回路内。我们利用一系列嵌套的V3肽进一步绘制HSPG结合位点,发现预测的V3环茎的两侧对于结合至关重要,但对V3环的预测尖端附近的CXCR4结合域不是关键。使用同一组V3肽进行的TCA菌株进入的中和测定表明,靶向CXCR4或HSPG结合位点的肽可以阻断感染,从而支持将V3环作为关键的中和目标。定点诱变在V3茎的N端侧鉴定了两个高度保守的精氨酸,R379和R389对SU和HSPG之间的接触至关重要。 V3茎的C端侧的残基K407,K409,K410和K412形成了HSPG结合所必需的第二个非保守域,这与FS FIV的特异性差异一致。我们的发现区分了FIV SU对HSPG和CXCR4结合的重要结构决定因素,因此进一步定义了V3环对于病毒进入和感染的重要性。

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