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一种完整的无琥珀酸HIV-1系统,用于病毒内蛋白质的生物正交点击标记,该系统可描绘包膜构象动力学。

An intact amber-free HIV-1 system for in-virus protein bioorthogonal click labeling that delineates envelope conformational dynamics.

作者信息

Ao Yuanyun, Grover Jonathan R, Han Yang, Zhong Guohua, Qin Wenyi, Ghimire Dibya, Haque Anzarul, Bhattacharjee Rajanya, Zhang Baoshan, Arthos James, Lemke Edward A, Kwong Peter D, Lu Maolin

出版信息

bioRxiv. 2023 Mar 1:2023.02.28.530526. doi: 10.1101/2023.02.28.530526.

Abstract

The HIV-1 envelope (Env) glycoprotein is conformationally dynamic and mediates membrane fusion required for cell entry. Single-molecule fluorescence resonance energy transfer (smFRET) of Env using peptide tags has provided mechanistic insights into the dynamics of Env conformations. Nevertheless, using peptide tags risks potential effects on structural integrity. Here, we aim to establish minimally invasive smFRET systems of Env on the virus by combining genetic code expansion and bioorthogonal click chemistry. Amber stop-codon suppression allows site-specifically incorporating noncanonical/unnatural amino acids (ncAAs) at introduced amber sites into proteins. However, ncAA incorporation into Env (or other HIV-1 proteins) in the virus context has been challenging due to low copies of Env on virions and incomplete amber suppression in mammalian cells. Here, we developed an intact amber-free virus system that overcomes impediments from preexisting ambers in HIV-1. Using this system, we successfully incorporated dual ncAAs at amber-introduced sites into Env on intact virions. Dual-ncAA incorporated Env retained similar neutralization sensitivities to neutralizing antibodies as wildtype. smFRET of click-labeled Env on intact amber-free virions recapitulated conformational profiles of Env. The amber-free HIV-1 infectious system also permits in-virus protein bioorthogonal labeling, compatible with various advanced microscopic studies of virus entry, trafficking, and egress in living cells. Amber-free HIV-1 infectious systems actualized minimal invasive Env tagging for smFRET, versatile for in-virus bioorthogonal click labeling in advanced microscopic studies of virus-host interactions.

摘要

HIV-1包膜(Env)糖蛋白构象动态变化,介导细胞进入所需的膜融合。使用肽标签对Env进行单分子荧光共振能量转移(smFRET),为Env构象动力学提供了机制上的见解。然而,使用肽标签可能会对结构完整性产生潜在影响。在这里,我们旨在通过结合遗传密码扩展和生物正交点击化学,建立病毒上Env的微创smFRET系统。琥珀色终止密码子抑制允许在引入的琥珀色位点将非经典/非天然氨基酸(ncAA)位点特异性地掺入蛋白质中。然而,由于病毒粒子上Env的拷贝数低以及哺乳动物细胞中琥珀色抑制不完全,在病毒环境中将ncAA掺入Env(或其他HIV-1蛋白)一直具有挑战性。在这里,我们开发了一种完整的无琥珀色病毒系统,该系统克服了HIV-1中预先存在的琥珀色密码子带来的障碍。使用该系统,我们成功地将双ncAA在引入琥珀色密码子的位点掺入完整病毒粒子上的Env中。掺入双ncAA的Env对中和抗体的中和敏感性与野生型相似。完整的无琥珀色病毒粒子上点击标记的Env的smFRET概括了Env的构象特征。无琥珀色HIV-1感染系统还允许进行病毒内蛋白质生物正交标记,与活细胞中病毒进入、运输和释放的各种先进显微镜研究兼容。无琥珀色HIV-1感染系统实现了用于smFRET的微创Env标记,在病毒-宿主相互作用的先进显微镜研究中可用于病毒内生物正交点击标记。

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