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Mac Kevin Braza

@mackevinbraza.bsky.social
512 followers 2.4K following 2 posts

Postdoctoral Fellow in Filizola Lab at Icahn School of Medicine at Mount Sinai

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Reposted by Mac Kevin Braza
Dr. Fiona @fionachembot.bsky.social · 10/05/2026
Here, we investigated how the receptor binding domains for the Ancestral, Delta, and Omicron BA.1 SARS-CoV-2 spike glycoproteins open and how a particular mutation, the D614G mutation, alters communication networks particularly via the loss of a salt bridge interaction between D614 and K854!
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Reposted by Mac Kevin Braza
Dr. Fiona @fionachembot.bsky.social · 10/05/2026
After nearly 6 years of work, I’m excited (and honestly relieved) to share our paper in PNAS: www.pnas.org/doi/10.1073/... D614G reshapes allosteric networks and opening mechanisms of SARS-CoV-2 spikes Very happy to finally see it out in the world!!
pnas.org
PNAS
Proceedings of the National Academy of Sciences (PNAS), a peer reviewed journal of the National Academy of Sciences (NAS) - an authoritative source of high-impact, original research that broadly spans...
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Reposted by Mac Kevin Braza
Rommie Amaro @rommieamaro.bsky.social · 28/03/2025
✨✨ It's #glycotime for #HIV Env ✨✨ N-linked glycans modulate flexibility & MPER epitope exposure #glycotime Huge effort by @shehata92.bsky.social @lcasalino88.bsky.social with cryoET of Env in VLPs by @thevillalab.bsky.social & team 💪 Would love feedback! www.biorxiv.org/content/10.1...
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Reposted by Mac Kevin Braza
Rommie Amaro @rommieamaro.bsky.social · 26/03/2025
✨ Check out @mackevinbraza.bsky.social 's new work on full length APOBEC3B, which shows how the NTD modulates active site opening in the CTD Collab w/ @adaozlemdemir.bsky.social & Aihara, Herzik, & Harris labs pubs.acs.org/doi/10.1021/...
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Mac Kevin Braza @mackevinbraza.bsky.social · 22/03/2025
I'm presenting my research at the ACS Spring 2025 meeting in San Diego! DM me if you're coming, too!!! 🙌 @rommieamaro.bsky.social pubs.acs.org/doi/10.1021/...
pubs.acs.org
Regulatory Interactions between APOBEC3B N- and C-Terminal Domains
APOBEC3B (A3B) is implicated in DNA mutations that facilitate tumor evolution. Although structures of its individual N- and C-terminal domains (NTD and CTD) have been resolved through X-ray crystallography, the full-length A3B (fl-A3B) structure remains elusive, limiting our understanding of its dynamics and mechanisms. In particular, the APOBEC3B C-terminal domain (A3Bctd) is frequently closed in models and structures. In this study, we built several new models of fl-A3B using integrative structural biology methods and selected a top model for further dynamical investigation. We compared the dynamics of the truncated (A3Bctd) to that of the fl-A3B via conventional and Gaussian accelerated molecular dynamics (MD) simulations. Subsequently, we employed weighted ensemble methods to explore the fl-A3B active site opening mechanism, finding that interactions at the NTD–CTD interface enhance the opening frequency of the fl-A3B active site. Our findings shed light on the structural dynamics and potential druggability of fl-A3B, including observations regarding both the active and allosteric sites, which may offer new avenues for therapeutic intervention in cancer.
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Reposted by Mac Kevin Braza
Lillian Chong @ltchong.bsky.social · 20/03/2025
@westpasoftware.bsky.social is partnering with @mdanalysis.bsky.social for Google Summer of Code this year. Please help spread the word!
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Reposted by Mac Kevin Braza
Dr. Fiona @fionachembot.bsky.social · 13/03/2025
Nevertheless, we persisted ❤️ 📣 NEW BIORXIV ALERT!! 🚨 Using WE MD, linguistic pathway clustering, dynamical network analyses, and HDXMS we reveal a hidden allosteric network within the SARS2 spike S1 domain and predict how the D614G mutation impacts this network! www.biorxiv.org/content/10.1...
biorxiv.org
D614G reshapes allosteric networks and opening mechanisms of SARS-CoV-2 spikes
The SARS-CoV-2 spike glycoprotein binds human epithelial cells and enables infection through a key conformational transition that exposes its receptor binding domain (RBD). Experimental evidence indic...
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Reposted by Mac Kevin Braza
Rommie Amaro @rommieamaro.bsky.social · 13/03/2025
A behemoth effort from @fionachembot.bsky.social in which she does amazing science (showing how VOCs reshape allosteric pathways) while also making the SARS2 spike color palette match her fish Dorry 😍🫠 www.biorxiv.org/content/10.1...
spike protein domains and mutations in VOCsFiona's tang fish named Dorry matches the spike colors
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Reposted by Mac Kevin Braza
Sonya Neal @neal-lab.bsky.social · 14/02/2025
Incredible work led by Dr. Satarupa Bhaduri, co-authors @mackevinbraza.bsky.social and others. This work wouldn't have been possible without our collaborators Dr. Anthony O'Donoghue, @rommieamaro.bsky.social @marius-lemberg.bsky.social and Dr. Kvido Strisovsky
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Reposted by Mac Kevin Braza
Sonya Neal @neal-lab.bsky.social · 14/02/2025
Our work is finally published! We developed a robust in vitro platform to study a disease relevant membrane protease, notoriously difficult to isolate.This protease has linked to cancer & neurodegen,and our platform opens new doors for structural & drug discovery. sciencedirect.com/science/arti...
sciencedirect.com
An in vitro platform for the enzymatic characterization of the rhomboid protease RHBDL4
Rhomboid proteases are ubiquitous intramembrane serine proteases that can cleave transmembrane substrates within lipid bilayers. They exhibit many and…
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