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Structural analysis of the principal immunodominant domain of the feline immunodeficiency virus transmembrane glycoprotein.

机译:猫免疫缺陷病毒跨膜糖蛋白主要免疫优势结构域的结构分析。

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摘要

In the transmembrane envelope glycoprotein (TM) of lentiviruses, including human immunodeficiency virus type 1 (HIV-1) and feline immunodeficiency virus (FIV), two cysteine residues, conserved in most retroviruses, are thought to form a loop containing five to seven amino acids. These elements make up a B-cell epitope recognized by nearly 100% of sera from infected patients or animals, designated the principal immunodominant domain (PID). The PID amino acid sequences are highly conserved between isolates of the same lentivirus but are unrelated, except for the two cysteines, when divergent lentiviruses are compared. The aim of this study was to analyze the relationship between amino acid sequence in the PID and envelope function. We introduced two kinds of mutations in the PID of FIV: mutations which impeded the formation of a loop and mutations which substituted the sequence of FIV with the corresponding sequences from other lentiviruses, HIV-1, visna virus, and equine infectious anemia virus. We analyzed antibody recognition, processing, and fusogenic properties of the modified envelopes, using two methods of Env expression: a cell-free expression system and transfection of a feline fibroblast cell line with gag-pol-deleted FIV proviruses. Most mutations in the PID of FIV severely affected envelope processing and abolished syncytium formation. Only the chimeric envelope containing the HIV-1 PID sequence was correctly processed and maintained the capacity to induce syncytium formation, although less efficiently than the wild-type envelope. We computed three-dimensional structural models of the PID, which were consistent with mutagenesis data and confirmed the similarity of FIV and HIV-1 PID structures, despite their divergence in amino acid sequence. Considering these results, we discussed the respective importance of selection exerted by functional requirements or host antibodies to explain the observed variations of the PIDs in lentiviruses.
机译:在包括人免疫缺陷病毒1型(HIV-1)和猫免疫缺陷病毒(FIV)在内的慢病毒的跨膜包膜糖蛋白(TM)中,大多数逆转录病毒中保守的两个半胱氨酸残基被认为形成了一个包含5至7个氨基的环酸。这些元素构成了被感染患者或动物血清中近100%识别的B细胞表位,称为主要免疫优势域(PID)。当比较不同的慢病毒时,PID氨基酸序列在同一慢病毒的分离株之间高度保守,但不相关,除了两个半胱氨酸外。这项研究的目的是分析PID中的氨基酸序列与包膜功能之间的关系。我们在FIV的PID中引入了两种突变:阻止环形成的突变和将FIV序列替换为其他慢病毒,HIV-1,visna病毒和马传染性贫血病毒的相应序列的突变。我们使用两种Env表达方法分析了修饰包膜的抗体识别,加工和融合特性:无细胞表达系统和用gag-pol缺失的FIV前病毒转染猫成纤维细胞系。 FIV PID的大多数突变都严重影响包膜加工并消除合胞体形成。尽管含有野生型包膜的效率较低,但只有含有HIV-1 PID序列的嵌合包膜得到了正确处理,并保持了诱导合胞体形成的能力。我们计算了PID的三维结构模型,该模型与诱变数据一致,并确认了FIV和HIV-1 PID结构的相似性,尽管它们在氨基酸序列上存在差异。考虑到这些结果,我们讨论了由功能需求或宿主抗体发挥作用进行选择的各自重要性,以解释观察到的慢病毒中PID的变化。

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