• FluTrackers.com Inc. does not provide medical advice. Information on this web site is collected from various internet resources, and the FluTrackers board of directors makes no warranty to the safety, efficacy, correctness or completeness of the information posted on this site by any author or poster. The information collated here is for instructional and/or discussion purposes only and is NOT intended to diagnose or treat any disease, illness, or other medical condition. Every individual reader or poster should seek advice from their personal physician/healthcare practitioner before considering or using any interventions that are discussed on this website. By continuing to access this website you agree to consult your personal physican before using any interventions posted on this website, and you agree to hold harmless FluTrackers.com Inc., the board of directors, the members, and all authors and posters for any effects from use of any medication, supplement, vitamin or other substance, device, intervention, etc. mentioned in posts on this website, or other internet venues referenced in posts on this website.
  • We are not asking for any donations. Do not donate to any entity who says they are raising funds for us.

Proc Natl Acad Sci U S A . D614G reshapes allosteric networks and opening mechanisms of SARS-CoV-2 spikes

tetano

Editor, Senior Moderator
Proc Natl Acad Sci U S A


. 2026 May 12;123(19):e2504793123.
doi: 10.1073/pnas.2504793123. Epub 2026 May 8.
D614G reshapes allosteric networks and opening mechanisms of SARS-CoV-2 spikes

Fiona L Kearns[SUP] 1 [/SUP], Anthony T Bogetti[SUP] #[/SUP][SUP] 2 [/SUP], Carla Calvó-Tusell[SUP] #[/SUP][SUP] 1 [/SUP], Mac Kevin E Braza[SUP] #[/SUP][SUP] 3 [/SUP], Lorenzo Casalino[SUP] #[/SUP][SUP] 1 [/SUP], Amanda J Gramm[SUP] 4 [/SUP], Sean Braet[SUP] 4 [/SUP], Mia A Rosenfeld[SUP] 1 [/SUP], Harinda Rajapaksha[SUP] 5 [/SUP], Bryan Barker[SUP] 5 [/SUP], Ganesh Anand[SUP] 4 [/SUP], Lillian T Chong[SUP] 2 [/SUP], Surl-Hee Ahn[SUP] #[/SUP][SUP] 6 [/SUP], Rommie E Amaro[SUP] 1 [/SUP]


Affiliations
Free article Abstract

The severe acute respiratory syndrome coronavirus 2 spike glycoprotein enables infection through a key conformational transition that exposes its receptor binding domain (RBD). Experimental evidence indicates that spike mutations, particularly the early D614G variant, alter the rate of this conformational shift, potentially increasing viral infectivity. We conducted extensive weighted ensemble simulations of the Ancestral, Delta, and Omicron BA.1 spike strains to investigate relationships between sequence mutations and RBD opening dynamics. We observe that Ancestral, Delta, and Omicron BA.1 spike RBDs open differently. Via dynamical network analysis, we identified two allosteric communication networks connecting all S1 domains: the established N2R linker and a newly investigated antiparallel R2N linker. In Delta and Omicron BA.1 variant spikes, RBD opening is facilitated by both linkers, while the Ancestral strain relies predominantly on the N2R linker. In the Ancestral spike, the D614-K854 salt bridge impedes allosteric communication through the R2N linker, whereas the loss of this salt bridge in all subsequent variants of concerns allows for increased local flexibility, thereby accelerating RBD opening. Hydrogen-deuterium mass spectrometry experiments validate these altered dynamics in the D614 region. This study unveils a "hidden" network, connecting the N-terminal domain to the RBD via the 614-proximal region, and the D614G mutation reshapes the fitness landscape of these critical viral glycoproteins.

Keywords: ACE2 binding; COVID19; SARS-CoV-2 spike glycoprotein; receptor binding domain opening; weighted ensemble simulations.

 
Back
Top