Glycine Substitution at Helix-to-Coil Transitions Facilitates the Structural Determination of a Stabilized Subtype C HIV Envelope Glycoprotein

螺旋-卷曲转变处的甘氨酸取代有助于稳定型C亚型HIV包膜糖蛋白的结构解析

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作者:Javier Guenaga ,Fernando Garces ,Natalia de Val ,Robyn L Stanfield ,Viktoriya Dubrovskaya ,Brett Higgins ,Barbara Carrette ,Andrew B Ward ,Ian A Wilson ,Richard T Wyatt

Abstract

Advances in HIV-1 envelope glycoprotein (Env) design generate native-like trimers and high-resolution clade A, B, and G structures and elicit neutralizing antibodies. However, a high-resolution clade C structure is critical, as this subtype accounts for the majority of HIV infections worldwide, but well-ordered clade C Env trimers are more challenging to produce due to their instability. Based on targeted glycine substitutions in the Env fusion machinery, we defined a general approach that disfavors helical transitions leading to post-fusion conformations, thereby favoring the pre-fusion state. We generated a stabilized, soluble clade C Env (16055 NFL) and determined its crystal structure at 3.9 Å. Its overall conformation is similar to SOSIP.664 and native Env trimers but includes a covalent linker between gp120 and gp41, an engineered 201-433 disulfide bond, and density corresponding to 22 N-glycans. Env-structure-guided design strategies resulted in multiple homogeneous cross-clade immunogens with the potential to advance HIV vaccine development. Keywords: Antibody; Envelope glycoprotein; Glycan shield; HIV; Immunogen; Trimer; Vaccine; bNAb.

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