Author:
Sponholtz Madeline R.,Byrne Patrick O.,Lee Alison G.,Ramamohan Ajit R.,Goldsmith Jory A.,McCool Ryan S.,Zhou Ling,Johnson Nicole V.,Hsieh Ching-Lin,Connors Megan,Karthigeyan Krithika,Campbell John D.,Permar Sallie R.,Maynard Jennifer A.,Yu Dong,Bottomley Matthew J.,McLellan Jason S.
Abstract
AbstractHuman cytomegalovirus (HCMV) glycoprotein B (gB) is a class III membrane fusion protein required for viral entry. HCMV vaccine candidates containing gB have demonstrated moderate clinical efficacy, but no HCMV vaccine has been FDA-approved. Here, we used structure-based design to identify and characterize amino acid substitutions that stabilize gB in its metastable prefusion conformation. One variant containing two engineered interprotomer disulfide bonds and two cavity-filling substitutions (gB-C7), displayed increased expression and thermostability. A 2.8 Å resolution cryo-electron microscopy structure shows that gB-C7 adopts a prefusion-like conformation, revealing additional structural elements at the membrane-distal apex. Unlike previous observations for several class I viral fusion proteins, mice immunized with postfusion or prefusion-stabilized forms of soluble gB protein displayed similar neutralizing antibody titers, here specifically against an HCMV laboratory strain on fibroblasts. Collectively, these results identify initial strategies to stabilize class III viral fusion proteins and provide tools to probe gB-directed antibody responses.TeaserA structure-based design campaign leads to stabilization of the class III viral fusion protein from HCMV in a prefusion-like conformation.
Publisher
Cold Spring Harbor Laboratory
Cited by
1 articles.
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