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Cody Loy, Ph.D.

@codyloy.bsky.social
31 followers 54 following 1 posts

Postdoctoral Fellow @ UCLA 🧪 Department of Chemistry & Biochemistry | Chemical Biologist | Proteostasis 🏳️‍🌈

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Reposted by Cody Loy, Ph.D.
Trader Lab @traderlab.bsky.social · 13/08/2026
The immunoproteasome as prodrug target to release MMAE in vivo? Check! Excited to continue to pursue this new drug discovery avenue. Congrats to first author Cody Loy and thank you to our amazing collaborators Claudia Benavente and Lisa Wagar!
nature.com
From probe to prodrug: immunoproteasome activity as a trigger for disease-selective therapeutics - Signal Transduction and Targeted Therapy
Signal Transduction and Targeted Therapy - From probe to prodrug: immunoproteasome activity as a trigger for disease-selective therapeutics
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Reposted by Cody Loy, Ph.D.
Signal Transduction and Targeted Therapy @sigtrans-sttt.bsky.social · 16/08/2026
Selective drug activation remains challenging! This study harnesses #Immunoproteasome activity as a disease-associated trigger, enabling #Prodrug activation in immunoproteasome-expressing cells while limiting effects on healthy cells. @uclacollege.bsky.social #OpenAccess: doi.org/10.1038/s413...
From probe to prodrug: immunoproteasome activity as a trigger for disease-selective therapeutics
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Reposted by Cody Loy, Ph.D.
Chemistry Research @chem-research.bsky.social · 28/04/2025
While disease treatments often inhibit proteins, #PROTAC degrade them via ubiquitinase-protease recruitment. Darci Trader @ucirvine.bsky.social now show in J Med Cem proteases can be recruitet without ubiquitinases — a still less potent but interesting alternative. pubs.acs.org/doi/10.1021/...
pubs.acs.org
ByeTAC: Bypassing E-Ligase-Targeting Chimeras for Direct Proteasome Degradation
The development of targeted protein degradation by recruiting a protein of interest to a ubiquitin ligase to facilitate its degradation has become a powerful therapeutic tool. The potential of this ap...
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Reposted by Cody Loy, Ph.D.
Stephan Hacker @stephanhacker2.bsky.social · 23/04/2025
Very interesting J. Med. Chem paper by the group of Darci Trader @traderlab.bsky.social. They developed ByeTACs to induce protein degradation by directly recruiting a POI to the proteasome subunit Rpn-13. They used this for E3-independent degradation of BRD4 and BTK. pubs.acs.org/doi/10....
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Reposted by Cody Loy, Ph.D.
Trader Lab @traderlab.bsky.social · 21/04/2025
ByeTACs is finally out in J. Med Chem. Congrats team! Can't wait to see how else we can use this degradation technology. @codyloy.bsky.social pubs.acs.org/doi/10.1021/...
pubs.acs.org
ByeTAC: Bypassing E-Ligase-Targeting Chimeras for Direct Proteasome Degradation
The development of targeted protein degradation by recruiting a protein of interest to a ubiquitin ligase to facilitate its degradation has become a powerful therapeutic tool. The potential of this approach is limited to proteins that can be readily ubiquitinated and relies on having a ligand with the various E3 ligases. Here, we describe a new methodology for targeted protein degradation that directly recruits a protein of interest to the proteasome for degradation. We generated bifunctional molecules that incorporate a small molecule ligand into a subunit on the 26S proteasome that recruits the protein directly for degradation. ByeTAC degradation requires binding to Rpn-13, a nonessential ubiquitin receptor of the 26S proteasome, and the protein of interest and does not have to rely on the E ligase cascade for ubiquitination. The ByeTAC methodology demonstrates the application of directly recruiting a protein to the proteasome via interactions with Rpn-13 for degradation.
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Cody Loy, Ph.D. @codyloy.bsky.social · 21/04/2025
Beyond thrilled to finally have this paper out in J. Med. Chem. Check out @traderlab.bsky.social new targeted protein degradation mechanism, ByeTAC. 🧪🥼 doi.org/10.1021/acs....
doi.org
ByeTAC: Bypassing E-Ligase-Targeting Chimeras for Direct Proteasome Degradation
The development of targeted protein degradation by recruiting a protein of interest to a ubiquitin ligase to facilitate its degradation has become a powerful therapeutic tool. The potential of this ap...
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Reposted by Cody Loy, Ph.D.
Kyle Swanson, MD, FAANS, FCNS @kiswanson.medsky.network · 26/03/2025
Giving kids liver damage to achieve nothing m, just to avoid a safe vaccine…the stupidity gets even stupider
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Reposted by Cody Loy, Ph.D.
Dan Nomura @dannomura.bsky.social · 19/03/2025
www.latimes.com/california/story/20…
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Reposted by Cody Loy, Ph.D.
Kelton Minor @keltonminor.bsky.social · 18/03/2025
There are days in life that shake you. I’m shattered 💔 to share that I just found out that the US Government terminated my 2024 NIH Director’s Early Independence Award (~$2 million), threatening my long-promised assistant professor job at Columbia University & academic career... 1/🧵
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Reposted by Cody Loy, Ph.D.
Trader Lab @traderlab.bsky.social · 18/03/2025
Really proud to have this out in J Med Chem! Congrats to Christine and @codyloy.bsky.social pubs.acs.org/doi/10.1021/...
pubs.acs.org
Immunoproteasome as a Target for Prodrugs
Immunoproteasome (iCP) is a proteasome isoform that is expressed under inflammatory conditions such as cytokine interferon-γ exposure. The iCP has different catalytic subunits other than the standard CP (standard core particle), allowing the production of major histocompatibility complex class I (MHC-I) compatible peptides for eventual T-cell activation. We have previously reported the design of a fluorescent probe that monitors iCP activity in cells called TBZ-1, and we applied TBZ-1’s iCP recognition sequence for prodrug release into iCP-active cells. Here, we demonstrate a proof-of-concept of the iCP as a prodrug release enzyme. The “payload” we utilized was a toxic moiety, doxorubicin, and a degrader for transcription factor, BRD4. Both examples show that iCP activity is required to elicit cell death or degradation of BRD4. This report highlights that the iCP is a viable prodrug target, and its activity can be used to release a variety of cargo in cells expressing the iCP.
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Reposted by Cody Loy, Ph.D.
Ruben Ragg @rubenragg.bsky.social · 19/11/2024
New #ChemBioChem paper by the @traderlab.bsky.social: "Synthesis and Application of a Versatile Immunoproteasome Activity Probe" chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/...
chemistry-europe.onlinelibrary.wiley.com
Synthesis and Application of a Versatile Immunoproteasome Activity Probe
The ONX-0914-alkyne probe described here allows for the conjugation to a variety of fluorophores through click chemistry. It can then be used to visualize immunoproteasome activity in gel-based, micr....
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Reposted by Cody Loy, Ph.D.
Thorn-Seshold Lab @thornsesholdlab.bsky.social · 17/11/2024
📯📯 Chemical Biology starter pack 📯📯 140 PIs & groups posting primary research in chemical biology. Please reskeet (?) & reply to this post if you want to be added! go.bsky.app/KLrTWoj Let's make ChemBioSky even greater again! #realtimechem #FluorescenceFriday #chemsky #chemtwitter #AgentOrange
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Reposted by Cody Loy, Ph.D.
Keri Backus @keribackus.bsky.social · 18/11/2024
Chemoproteomics starter pack, thanks mostly to @stephanhacker2.bsky.social's strong network go.bsky.app/JKJ1ZHt
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