362: D614G Reshapes Spike Allostery and Speeds RBD Opening

362: D614G Reshapes Spike Allostery and Speeds RBD Opening

Kearns FL et al., PNAS - Simulations and HDXMS reveal how the D614G substitution alters internal communication in SARS-CoV-2 spike, enabling faster receptor-binding-domain opening through newly engaged allosteric pathways. Key terms: D614G, SARS-CoV-2 spike, RBD opening, allostery, weighted ensemble simulations.

Study Highlights:
Weighted ensemble simulations of Ancestral, Delta, and Omicron BA.1 spikes show distinct RBD opening landscapes and identify two S1 linkers (N2R and a previously underappreciated antiparallel R2N) that connect the NTD to the RBD. In the Ancestral spike a D614–K854 salt bridge constrains the R2N and must break before RBD opening; D614G abolishes that constraint, increasing local flexibility and enabling communication through both linkers. Delta and Omicron BA.1, both carrying D614G, open faster and use balanced N2R/R2N signaling; Omicron also forms a K856–D568 salt bridge and can adopt a unique “peel” conformation. Hydrogen–deuterium exchange mass spectrometry on VLPs confirms altered dynamics around the 614-proximal region consistent with the simulations.

Conclusion:
Ablation of the D614–K854 salt bridge by D614G relieves local frustration, opens an additional allosteric lane via the R2N linker alongside N2R, and accelerates RBD opening—providing a mechanistic link between the D614G substitution and increased infectivity; Omicron BA.1 further tunes this network with compensatory interactions.

Music:
Enjoy the music based on this article at the end of the episode.

Article title:
D614G reshapes allosteric networks and opening mechanisms of SARS - CoV - 2 spikes

First author:
Kearns FL

Journal:
PNAS

DOI:
10.1073/pnas.2504793123

Reference:
Kearns FL, Bogetti AT, Calvó-Tusell C, et al. D614G reshapes allosteric networks and opening mechanisms of SARS-CoV-2 spikes. PNAS. 2026;123(19):e2504793123. doi:10.1073/pnas.2504793123

License:
This episode is based on an open-access article published under the Creative Commons Attribution 4.0 International License (CC BY 4.0) – https://creativecommons.org/licenses/by/4.0/

Support:
Base by Base – Stripe donations: https://donate.stripe.com/7sY4gz71B2sN3RWac5gEg00

Official website https://basebybase.com

On PaperCast Base by Base you'll discover the latest in genomics, functional genomics, structural genomics, and proteomics.

Episode link: https://basebybase.com/episodes/d614g-reshapes-allosteric-networks

QC:
This episode was checked against the original article PDF and publication metadata for the episode release published on 2026-05-09.

QC Scope:
- article metadata and core scientific claims from the narration
- excludes analogies, intro/outro, and music
- transcript coverage: Audited the spoken content for alignment with the PNAS article's core findings: D614G reshapes spike allostery, dual N2R/R2N pathways, D614-K854 salt-bridge dynamics, Delta/Omicron opening differences, Omicron peel state, and HDXMS corroboration; plus methodological details (WE/MA binning, glycans, and limitations).
- transcript topics: D614G impact on RBD opening dynamics; Weighted Ensemble simulations (WE) and minimal adaptive binning (MAB); N2R and R2N flexible linkers as allosteric pathways; D614-K854 salt bridge role and congestion; Variant-specific opening pathways: Delta and Omicron; Omicron BA.1 peel state and K856-D568 salt bridge

QC Summary:
- factual score: 10/10
- metadata score: 10/10
- supported core claims: 6
- claims flagged for review: 0
- metadata checks passed: 4
- metadata issues found: 0

Metadata Audited:
- article_doi
- article_title
- article_journal
- license

Factual Items Audited:
- D614G abolishes the D614-K854 salt bridge, increasing local flexibility and accelerating RBD opening via dual N2R and R2N l...

Det här avsnittet är hämtat från ett öppet RSS-flöde och publiceras inte av Podme. Det kan innehålla reklam.

Avsnitt(444)

443: 5D‑ASO boosts exon 51 skipping and restores dystrophin in DMD models

443: 5D‑ASO boosts exon 51 skipping and restores dystrophin in DMD models

Feng P et al., PNAS - This paper describes a bipartite antisense oligonucleotide (5D‑ASO) design that appends a short 5′ splice site decoy tail to improve exon skipping, demonstrating robust efficacy ...

18 Aug 19min

442: When pumps go missing: Ca2+ control of PMCA2 in Tmc1 deafness mutants

442: When pumps go missing: Ca2+ control of PMCA2 in Tmc1 deafness mutants

Rolseth AB et al., Proceedings of the National Academy of Sciences (PNAS) - This study links reduced Ca2+ entry through mutant TMC1 mechanotransducer channels to decreased PMCA2 pump density in outer ...

17 Aug 22min

441: Evolutionary mapping of Cav1.3 functional sites

441: Evolutionary mapping of Cav1.3 functional sites

Tang X et al., PNAS - The authors apply an evolutionary sequence-covariation model to the Cav1.3 (CACNA1D) α1-subunit, map predicted pathogenicity onto structural models, and validate five predicted s...

14 Aug 24min

440: DENV-4: Suppressing DNA Repair and Causing Genome Damage

440: DENV-4: Suppressing DNA Repair and Causing Genome Damage

Lamkina EN et al., PNAS - This episode reviews a PNAS brief report showing that DENV-4 infection induces marked DNA damage in infected cells while broadly suppressing transcription of DNA repair pathw...

12 Aug 23min

439: Coembedding Sequence and Structure: CLSS Maps the Protein Universe

439: Coembedding Sequence and Structure: CLSS Maps the Protein Universe

Longo LM et al., PNAS - This episode summarizes a PNAS study introducing CLSS, a contrastive two-tower protein language model that coembeds domain sequences, structures, and subsequences into a shared...

11 Aug 23min

438: Mapping AIRE: a proactive atlas of 9,790 missense variants

438: Mapping AIRE: a proactive atlas of 9,790 missense variants

Axakova A et al., The American Journal of Human Genetics - Axakova et al. generated a variant effect map for AIRE using an insulin‑promoter GFP reporter in HEK293 cells to measure the functional impac...

10 Aug 24min

437: Cell villages and Dirichlet modeling map human cell fitness genetics

437: Cell villages and Dirichlet modeling map human cell fitness genetics

Hanson C et al., The American Journal of Human Genetics - Hanson et al. combine pooled multi-donor human neural progenitor cell "villages" with Townlet, a hierarchical Dirichlet regression model, to e...

9 Aug 28min

436: KIAP4 and the ARND family: building the Leishmania adhesion plaque

436: KIAP4 and the ARND family: building the Leishmania adhesion plaque

Owino BO et al., PNAS - Using TurboID proximity proteomics and microscopy, researchers identify KIAP4 as the canonical member of a conserved Adhesion Related NTPase-like Domain (ARND) family that loca...

8 Aug 24min

Populärt inom Vetenskap

dumma-manniskor
p3-dystopia
allt-du-velat-veta
hacka-livet
bildningspodden
rss-vetenskapsradion
rss-ufobortom-rimligt-tvivel
medicinvetarna
halsorevolutionen
rss-vetenskapsradion-2
svd-nyhetsartiklar
sexet
ufo-sverige
paranormalt-med-caroline-giertz
vetenskapsradion
det-morka-psyket
psykologisk-forskning
rss-kriminologerna
barnpsykologerna
pojkmottagningen