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Charge-Surrounded Pockets and Electrostatic Interactions with Small Ions Modulate the Activity of Retroviral Fusion Proteins

机译:电荷包围的口袋和小离子的静电相互作用调节逆转录病毒融合蛋白的活性。

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摘要

Refolding of viral class-1 membrane fusion proteins from a native state to a trimer-of-hairpins structure promotes entry of viruses into cells. Here we present the structure of the bovine leukaemia virus transmembrane glycoprotein (TM) and identify a group of asparagine residues at the membrane-distal end of the trimer-of-hairpins that is strikingly conserved among divergent viruses. These asparagines are not essential for surface display of pre-fusogenic envelope. Instead, substitution of these residues dramatically disrupts membrane fusion. Our data indicate that, through electrostatic interactions with a chloride ion, the asparagine residues promote assembly and profoundly stabilize the fusion-active structures that are required for viral envelope-mediated membrane fusion. Moreover, the BLV TM structure also reveals a charge-surrounded hydrophobic pocket on the central coiled coil and interactions with basic residues that cluster around this pocket are critical to membrane fusion and form a target for peptide inhibitors of envelope function. Charge-surrounded pockets and electrostatic interactions with small ions are common among class-1 fusion proteins, suggesting that small molecules that specifically target such motifs should prevent assembly of the trimer-of-hairpins and be of value as therapeutic inhibitors of viral entry.
机译:病毒1类膜融合蛋白从天然状态重折叠为发夹三聚体结构可促进病毒进入细胞。在这里,我们介绍了牛白血病病毒跨膜糖蛋白(TM)的结构,并在发夹三聚体的膜远端末端鉴定了一组天冬酰胺残基,这些残基在不同病毒之间非常保守。这些天冬酰胺对于前融合膜的表面展示不是必需的。相反,这些残基的取代极大地破坏了膜融合。我们的数据表明,通过与氯离子的静电相互作用,天冬酰胺残基可促进组装并充分稳定病毒外壳介导的膜融合所需的融合活性结构。此外,BLV TM结构还揭示了在中央盘绕的线圈上电荷环绕的疏水袋,并且与聚集在该袋周围的碱性残基的相互作用对于膜融合至关重要,并形成包膜功能肽抑制剂的靶标。在1类融合蛋白中,电荷包围的口袋和与小离子的静电相互作用是常见的,这表明专门针对此类基序的小分子应防止三聚体发夹的组装,并作为病毒进入的治疗抑制剂具有价值。

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