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Shubha Pani

@shubha-pani.bsky.social
80 followers 244 following 0 posts

Chemical Biologist, PhD candidate @UChicago. Love plants, cool science and new tech!

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Reposted by Shubha Pani
Bryan Dickinson @chembiobryan.bsky.social · 08/09/2026
Check out our recent News and Views of fantastic work from Peng Zou’s group Directed evolution + proximity chemistry = key to my heart www.nature.com/articles/s41...
nature.com
Evolving faster proximity chemistry - Nature Chemical Biology
By evolving a flavoprotein in mammalian cells, a super-fast, genetically encoded photocatalyst called Lantern was developed, allowing the mapping of dynamic RNA and protein organization at high spatio...
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Reposted by Shubha Pani
Bryan Dickinson @chembiobryan.bsky.social · 16/02/2026
Excited to share our new work in @narjournal.bsky.social ! We engineered a human-based translational activator that rescued phenotypes in a Dravet syndrome mouse model by boosting protein expression from haploinsufficient genes. A thread on targeting translation 🧵 academic.oup.com/nar/article/...
academic.oup.com
Engineering a human-based translational activator for targeted protein expression restoration
Abstract. Therapeutic modalities to programmably increase protein production are in critical need to address diseases caused by deficient gene expression v
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Reposted by Shubha Pani
Carolyn Bertozzi @carolynbertozzi.bskyverified.social · 25/01/2026
Enzyme catalyzed bioorthogonal chemistry published at ACS Cent Sci pubs.acs.org/doi/10.1021/...
pubs.acs.org
Directed Evolution of Enzymes for Bioorthogonal Chemistry Using Acid Chloride Proximity Labeling
Combining bioorthogonal protecting groups with localized catalysts that can unmask them is a powerful approach to spatially and temporally modulate molecular activity. Enzymes are appealing catalysts ...
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Reposted by Shubha Pani
Bryan Dickinson @chembiobryan.bsky.social · 25/01/2026
The final version of our new paper is out now - and open access @acs.org Central Science!! Such a fun collaboration! pubs.acs.org/doi/10.1021/...
pubs.acs.org
Directed Evolution of Enzymes for Bioorthogonal Chemistry Using Acid Chloride Proximity Labeling
Combining bioorthogonal protecting groups with localized catalysts that can unmask them is a powerful approach to spatially and temporally modulate molecular activity. Enzymes are appealing catalysts ...
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Reposted by Shubha Pani
Bryan Dickinson @chembiobryan.bsky.social · 26/12/2025
1/ Check out our newest paper where we ask: How fast can we experimentally discover binders from scratch? And we mean scratch: a blinded study. TLDR: 26 days. And the binders work…and led to new cancer biology. We’re coming for you AI…. chemrxiv.org/engage/chemr...
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Stephan Hacker @stephanhacker2.bsky.social · 30/09/2025
Exciting Flash Talk by @shubha-pani.bsky.social at the 5th Virtual @chembiotalks.bsky.social. She presented her exciting work on masked acyl chlorides that can be liberated in an orthogonal fashion by an exogenous esterase in human cells for proximity labeling. www.nature.com/articles/s41...
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Virtual ChemBioTalks @chembiotalks.bsky.social · 29/09/2025
The third and final Flash Talk of the 5th Virtual #ChemBioTalks will be given by Shubhashree Pani (@shubha-pani.bsky.social) from the group of @chembiobryan.bsky.social: "Masked acylating agents for proximity labeling of biomolecules" www.nature.com/articles/s41... #ChemBio #ChemSky #DrugDiscovery
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Bryan Dickinson @chembiobryan.bsky.social · 15/09/2025
Excited to share our most recent work out in @jacs.acspublications.org today! We combined mRNA display with macrocyclic peptide chemistry to discover novel RNA-targeting molecules. This fits into our mission to target RNA regulation with novel therapeutic modalities pubs.acs.org/doi/10.1021/...
pubs.acs.org
Discovery of Macrocyclic Peptide Binders, Covalent Modifiers, and Degraders of a Structured RNA by mRNA Display
RNA targeting represents a compelling strategy for addressing challenging therapeutic targets that are otherwise intractable through traditional protein targeting. Revolutionary approaches in RNA-focused small molecule libraries have successfully identified RNA-binding ligands but generally remain limited in diversity and impeded by a dearth of structural insight into RNA and RNA complexes. Cyclic peptides are potential structural mimics of evolutionary RNA-protein interacting motifs and can be massively diversified and selected via genetically encoded libraries, offering a complementary approach. This study introduces genetically encoded thioether cyclic peptide libraries constructed through mRNA display using a dibromoxylene linker and its fluorosulfonyl derivative that can covalently engage RNA nucleophiles. Using an optimized mRNA display workflow for RNA binders, we discovered high affinity, covalent and noncovalent binders for SNCA 5′ UTR IRE, the upstream iron-responsive element that post-transcriptionally regulates the expression of α-synuclein, an intrinsically disordered protein implicated in Parkinsonism and related neurodegenerative diseases. Notably, a stringent selection strategy employing “base-paired” target analog counterselection enhanced specificity by deenriching nonspecific electrostatic interactions mediated by polycationic residues. Further engineering hit peptides with an imidazole tag yielded selective RNA degraders in which covalent degraders showed noticeably improved potency from noncovalent counterparts. This work provides a prototype framework for evolution-driven, high-throughput, RNA-targeted drug discovery using cyclic peptides.
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Reposted by Shubha Pani
Jeff Martell @jeffmartell.bsky.social · 28/08/2025
Excited to share a new pre-print on a joint study between my group and @chembiobryan.bsky.social‬! Directed Evolution of Enzymes for Bioorthogonal Chemistry Using Acid Chloride Proximity Labeling. chemrxiv.org/engage/chemr... 1/n
chemrxiv.org
Directed Evolution of Enzymes for Bioorthogonal Chemistry Using Acid Chloride Proximity Labeling
Combining bioorthogonal protecting groups with localized catalysts that can unmask them is a powerful approach to spatially and temporally modulate molecular activity. Enzymes are appealing catalysts ...
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Reposted by Shubha Pani
Nature Methods @natmethods.nature.com · 06/08/2025
PANCS-Binders (phage-assisted noncontinuous selection of protein binders) screens multiple high-diversity protein libraries against a panel of dozens of targets for high-throughput binder discovery. @chembiobryan.bsky.social @mstyles-chembiol.bsky.social www.nature.com/articles/s41...
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Cell Chemical Biology @cp-cellchembiol.bsky.social · 21/03/2025
Dynamic PRDX S-acylation modulates ROS stress and signaling by Tian Qiu, Saara-Anne Azizi, @shubha-pani.bsky.social, @chembiobryan.bsky.social et al at @uchichemistry.bsky.social @czbiohub.bsky.social dlvr.it/TJgcm1
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Reposted by Shubha Pani
Bryan Dickinson @chembiobryan.bsky.social · 25/02/2025
Our labs new work is out today! Proud of this as it connects my grad work with @christhechang.bsky.social to my group's work with lipidation. Key takeaway is PRDX proteins are regulated by active-site lipidation Congrats Tian Saara-Anne & @shubha-pani.bsky.social authors.elsevier.com/a/1kg6b8jWWJ...
authors.elsevier.com
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Reposted by Shubha Pani
Bryan Dickinson @chembiobryan.bsky.social · 07/01/2025
Super excited to finally share PANCS-Binders: our group's decade-long quest to accelerate protein binder discovery. TLDR: PANCS-binders is fast (2 days), cheap (pennies), has extremely high fidelity (low false positive and negatives), and high-throughput. 1/n
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