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Dynamic HIV-1 spike motion creates vulnerability for its membrane-bound tripod to antibody attack

Nat Commun. 2022-10; 
Shuang Yang, Giorgos Hiotis, Yi Wang, Junjian Chen, Jia-Huai Wang, Mikyung Kim, Ellis L Reinherz, Thomas Walz
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Proteins, Expression, Isolation and Analysis … After centrifugation of the cell lysate at 38,400xg for 1 h at 4ºC, the supernatant was incubated overnight with Protein A resin (GenScript) at 4C. The resin was successively washed with … Get A Quote

摘要

Vaccines targeting HIV-1's gp160 spike protein are stymied by high viral mutation rates and structural chicanery. gp160's membrane-proximal external region (MPER) is the target of naturally arising broadly neutralizing antibodies (bnAbs), yet MPER-based vaccines fail to generate bnAbs. Here, nanodisc-embedded spike protein was investigated by cryo-electron microscopy and molecular-dynamics simulations, revealing spontaneous ectodomain tilting that creates vulnerability for HIV-1. While each MPER protomer radiates centrally towards the three-fold axis contributing to a membrane-associated tripod structure that is occluded in the upright spike, tilting provides access to the opposing MPER. Structures of spike pro... More

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