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Amy Weeks

@amyweeks.bsky.social
1.6K followers 317 following 32 posts

Asst Prof @ UW-Madison Biochemistry. Protein Engineering, Chemical Biology, Proteomics, Proteases, Enzymology.

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Reposted by Amy Weeks
Robert E. Campbell @campbell-lab.bsky.social · 28/08/2026
Protein Engineering: Status Report, marks the 40th anniversary of Protein Engineering, Design and Selection and provides a landmark overview of the field. Read the open access article now: academic.oup.com/peds/pages/4...
academic.oup.com
PEDS 40th Anniversary: Protein Engineering: Status Report
In honour of the 40th anniversary of Protein Engineering, Design and Selection (PEDS), Protein Engineering: Status Report brings together contributions fro
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Roberto Chica Lab @chicalab.bsky.social · 24/08/2026
Thanks to @campbell-lab.bsky.social for putting together this excellent overview of the protein engineering field at PEDS, and for inviting us to contribute the computational enzyme design section. Check it out below! Protein engineering: status report academic.oup.com/peds/article...
academic.oup.com
Protein engineering: status report
Abstract. With this status report, we aim to provide a timely snapshot of the protein engineering field as a broad and rapidly advancing discipline that in
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Lukasz Bugaj @bugajlab.bsky.social · 21/07/2026
A bit late but…Tenured! Immense gratitude for those who got us here. Firstly the students/postdocs (too many to list!) who took a chance on an unproven lab and were unafraid to pursue some strange new ideas. I couldn't have predicted our path, and I couldn’t be more excited for what's next.
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Ben Larson @blarson.bsky.social · 20/07/2026
Had a lot of fun writing this dispatch article for @currentbiology.bsky.social with PhD student Caitlin Doyle www.sciencedirect.com/science/arti..., highlighting cell morphogenesis and recent work on suctorian growth control principles. 1/3
sciencedirect.com
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Scott Coyle @cellraiser.bsky.social · 02/07/2026
Had a blast putting this video abstract together with colleagues for @zjmaggiexu.bsky.social story in @currentbiology.bsky.social on how the "vampire cell" P. collini builds the perfect feeding trap 👀. Be sure to check out the full paper: www.cell.com/current-biol... www.youtube.com/watch?v=Ikzm...
youtube.com
A cellular vampire builds the perfect feeding trap / Curr. Biol., June 24, 2026 (Vol. 36, Issue 14)
YouTube video by Cell Press
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Scott Coyle @cellraiser.bsky.social · 24/06/2026
@zjmaggiexu.bsky.social's story on suctorian trap structure adaptation is now online in @currentbiology.bsky.social , with new evolutionary analyses and modeling! This fall, Maggie will keep exploring predatory protists as a PD in @nbellono.bsky.social group; keep an eye out for her she's amazing!
sciencedirect.com
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edenchang.bsky.social @edenchang.bsky.social · 16/06/2026
Excited to share our new bioRxiv preprint! We introduce RIPPLE, a synthetic platform that couples reaction–diffusion signaling with protein condensation to generate tunable intracellular architectures. Grateful to @zjmaggiexu.bsky.social and @cellraiser.bsky.social. It’s been a rewarding journey.
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Scott Coyle @cellraiser.bsky.social · 16/06/2026
Sub-cellular architectures arise through integrating signaling and structure. @edenchang.bsky.social and @zjmaggiexu.bsky.social show how coupling reaction-diffusion signaling to protein condensation provides a tunable, regulatable landscape for sub-cellular structure www.biorxiv.org/content/10.6...
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Amy Weeks @amyweeks.bsky.social · 12/06/2026
Now online @pnas.org: We developed a simple, scalable, and accessible platform for deep profiling of phosphoeraser specificity using human phosphoproteome-derived peptide libraries (PhosPropels!) 🧪👩‍🔬https://www.pnas.org/doi/10.1073/pnas.2523183123
pnas.org
Phosphoproteome-derived peptide libraries for deep specificity profiling of phosphatases and phospholyases | PNAS
Protein phosphorylation is dynamically regulated by the opposing activities of phosphowriter enzymes (kinases) and phosphoeraser enzymes (phosphata...
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Amy Weeks @amyweeks.bsky.social · 03/06/2026
Thanks to the Ono Pharma Foundation and The University of Chicago for supporting this amazing symposium! And congratulations to the Weeks lab's own Sopo Jalalishvili for winning a poster prize for her work on phospholyases! 👩‍🔬🧪@uwbiochem.bsky.social
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Craig Kaplan @triggerloop.bsky.social · 30/05/2026
Only 102 public comments so far on the biggest threat to publicly funded science in my lifetime. Please comment if you can. I know this sounds like "vote harder" but we have to keep fighting www.regulations.gov/document/OMB...
regulations.gov
Regulations.gov
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Neel Shah @nshahlab.bsky.social · 14/05/2026
Excited to share our lab's latest preprint, led by graduate student Minhee Lee, with contributions from former undergrad Zijing Wang and grad student Andrew Johns! We show that substrate specificity information coupled with AF3 models can be used to design selective tyrosine kinase inhibitors.
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Amy Weeks @amyweeks.bsky.social · 28/04/2026
Excited that our paper on enzymatic bromination of peptides is now online at ACS Chemical Biology! Led by Haley Bridge, we showed that the flavin-dependent halogenase RebH and its variants can be used for late-stage chemoenzymatic diversification of bioactive peptides: pubs.acs.org/doi/10.1021/...
pubs.acs.org
Enzymatic Bromination of Native Peptides for Late-Stage Structural Diversification via Suzuki–Miyaura Coupling
Flavin-dependent halogenases (FDHs) provide a biocatalytic approach for the site-selective halogenation of aromatic compounds, but their use in late-stage functionalization of peptides has remained li...
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Keri Backus @keribackus.bsky.social · 28/04/2026
Super excited that our SEE-CITE photoaffinity labeling method is now out in @natchem.nature.com rdcu.be/ffBSC. Here we introduce a custom silyl ether cleavable linker between a diazirine photocrosslinker handle and molecules of interest to streamline site-of-labeling analysis for PAL chemoproteomics
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Jason Cantor @jasonrcantor.bsky.social · 30/03/2026
🚨 excited to share our latest preprint on bioRxiv, led by the soon-to-be Dr. Guy Kunzmann! We tackle a striking case of conditional dependence on UFMylation, a UBL modification pathway whose contributions to cell fitness have been a bit of a "black box." 🧵
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Scott Coyle @cellraiser.bsky.social · 24/03/2026
Congratulations to my student Dennis Bolshakov and his coauthors @weix.us, Tommy, and @born2raisecell.bsky.social on making the cover of ACS Synthetic Biology! A great paper and an awesome cover 🥳 pubs.acs.org/doi/10.1021/...
The cover art, inspired by the classic Pink Floyd cover art from "The Dark Side of the Moon", depicts a white noise protein oscillation being filtered by a yeast expressing a specific synthetic circuit design into more precise, single-color waveforms. This visual echoes the noise-guided design strategies associated with Bolshakov et al.
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Scott Coyle @cellraiser.bsky.social · 27/02/2026
Huge congratulations to my student Rohith Rajasekaran @born2raisecell.bsky.social (now a postdoc in Kole Roybal's lab at UCSF) on being selected for a Weintraub award! Super proud of you and all the work you've done!
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preLights @prelights.bsky.social · 31/12/2025
Some excellent preLights to end 2025 🎆 The latest was written by Zhang-He Goh @goh-zhanghe.bsky.social, discussing an enzymatic method for tryptophan-specific bromination described in a recent #preprint from the lab of @amyweeks.bsky.social. #preLight ⬇️ prelights.biologists.com/highlights/e...
prelights.biologists.com
Enzymatic bromination of native peptides for late-stage structural diversification via Suzuki-Miyaura coupling - preLights
Ready, set, brominate: RebH and engineered variant for bromination of peptidyl-Trp residues
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Amy Weeks @amyweeks.bsky.social · 21/12/2025
New preprint! We found that the flavin-dependent halogenase RebH catalyzes sequence-tolerant Trp bromination in peptides 🧪https://www.biorxiv.org/content/10.64898/2025.12.17.694899v1
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Scott Coyle @cellraiser.bsky.social · 17/12/2025
New in ACS SynBio: led by Dennis Bolshakov, we used the awesome power of yeast to define how expression levels, noise, and sequence program the dynamics of synthetic protein waves, allowing us to genetically encode new cellular timescales stable over generations! pubs.acs.org/doi/full/10....
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Zhejing (Maggie) Xu @zjmaggiexu.bsky.social · 18/11/2025
Thrilled to share our work on the 🔥 single-celled predator Podophrya collini, which rewires its cell morphology to hunt more efficiently. Huge thanks to our amazing team—Amy, Lauren, Omaya, Marine, Mari, and especially Scott—for making this shine! ✨
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Scott Coyle @cellraiser.bsky.social · 18/11/2025
How do cells adapt morphology to function? In a 🔥 preprint by @zjmaggiexu.bsky.social , with @dudinlab.bsky.social and @amyweeks.bsky.social , we identify a self-organizing single-cell morphology circuit that optimizes the feeding trap structure of the suctorian P. collini. 🧵 tinyurl.com/4k8nv926
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Nikolai Slavov @slavov-n.bsky.social · 16/09/2025
A beautiful example of how spatiotemporal dynamics can enable multiplexed measurements.
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Jeff Martell @jeffmartell.bsky.social · 14/08/2025
Excited to share our new preprint, which was years in the making! chemrxiv.org/engage/chemr... New reactions are typically developed by trial and error. How can we speed up this process? Read on to learn how we used DNA scaffolding to perform >500,000 parallel reactions on attomole scale. 1/n
chemrxiv.org
DNA-Scaffolded Ultrahigh-Throughput Reaction Screening
Discovering and optimizing reactions is central to synthetic chemistry. However, chemical reactions are traditionally screened using relatively low-throughput methods, prohibiting exploration of diver...
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Amy Weeks @amyweeks.bsky.social · 13/08/2025
New preprint: we developed a method that uses phosphoproteome-derived peptide libraries (PhosPropels) for deep specificity profiling of phosphatases and phospholyases www.biorxiv.org/content/10.1...
Position-specific frequency matrices can be used to calculate z-scores comparing enzyme-treated and control samples. The z-scores are plotted as heatmaps that represent an enzyme specificity profile.
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coonlab.bsky.social @coonlab.bsky.social · 30/07/2025
Check out our new manuscript on parallel LC separations! Super cool how the very high scan rates of modern MS systems coupled with DIA can allow us to run several samples at the same time with little loss in depth. Congrats to Noah and the team. #JASMS pubs.acs.org/doi/10.1021/...
pubs.acs.org
SynchroSep-MS: Parallel LC Separations for Multiplexed Proteomics
Achieving high throughput remains a challenge in MS-based proteomics for large-scale applications. We introduce SynchroSep-MS, a novel method for parallelized, label-free proteome analysis that leverages the rapid acquisition speed of modern mass spectrometers. This approach employs multiple liquid chromatography columns, each with an independent sample, simultaneously introduced into a single mass spectrometer inlet. A precisely controlled retention time offset between sample injections creates distinct elution profiles, facilitating unambiguous analyte assignment. We modified the DIA-NN workflow to effectively process these unique parallelized data, accounting for retention time offsets. Using a dual-column setup with mouse brain peptides, SynchroSep-MS detected approximately 16,700 unique protein groups, nearly doubling the peptide information obtained from a conventional single proteome analysis. The method demonstrated excellent precision and reproducibility (median protein %RSDs less than 4%) and high quantitative linearity (median R2 greater than 0.96) with minimal matrix interference. SynchroSep-MS represents a new paradigm for data collection and the first example of label-free multiplexed proteome analysis via parallel LC separations, offering a direct strategy to accelerate throughput for demanding applications such as large-scale clinical cohorts and single-cell analyses without compromising peak capacity or causing ionization suppression.
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Amy Weeks @amyweeks.bsky.social · 18/07/2025
Excited to share our latest: we engineered the reactivity of a bacterial E1-like enzyme for ATP-driven modification of C termini. Our tool mimics the logic of peptide bond formation in biology for precision modification of proteins in vitro. 🧪https://rdcu.be/ewN7C
rdcu.be
Engineered reactivity of a bacterial E1-like enzyme enables ATP-driven modification of protein and peptide C termini
Nature Chemistry - In living systems, ATP provides an energetic driving force for protein synthesis and modification. Now, an engineered enzymatic tool has been developed for high-yield, ATP-driven...
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ONO PHARMA FOUNDATION @onoinitiative.bsky.social · 02/07/2025
Great success at the Ono Pharma Foundation Symposium in Boston! Highlights include inspiring talks by Xiao Wang @amyweeks.bsky.social‬ Robert Spitale @stevenbanik.bsky.social‬ @michael-erb.bsky.social‬ Matthew Shoulders Michelle Arkin and a keynote from Chuan He. Posters fueled inspired exchange.
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Amy Weeks @amyweeks.bsky.social · 26/06/2025
Congrats to Weeks lab graduate student Debashrito Deb @thepeptidetailor.bsky.social, who won a poster prize at the Bioorganic GRC last week! Thanks to conference chairs @doc-jlmeier.bsky.social and Denise Field who knocked it out of the park with a memorable and inspiring meeting this year!
Debashrito Deb holding up his poster award at the 2025 Bioorganic GRC
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Neel Shah @nshahlab.bsky.social · 21/06/2025
Despite ~20 years in/around #chembio research, I went to my first Bioorganic GRC this week. This community is amazing and so supportive. I feel energized (and tired, lol) and find myself rooting for the next generation of chemical biologists. Sooooo much awesome science - We can’t/won’t be stopped!
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Laura Edgington-Mitchell @lauraem-lab.bsky.social · 22/05/2025
The 13th General Meeting of the International Proteolysis Society will be held in Búsios, Brazil Oct 26-30, 2025. Training workshops will be held at the Instituto Oswaldo Cruz Oct 23-23. Register now! Links below. 1/3
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Jason Cantor @jasonrcantor.bsky.social · 02/05/2025
excited to share our latest work now online @natmetabolism.nature.com, led by @kyle-flickinger.bsky.social, where we unravel a mechanistic basis for the conditional essentiality of NADK, one of the many interesting hits from our previously reported CRISPR screening with HPLM rdcu.be/ekpu6
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Kimberly Beatty @beattylab.bsky.social · 15/04/2025
Beautifully written letter by Harvard's president, pushing back against the illegal assault of the Republicans on universities: www.harvard.edu/president/ne...
harvard.edu
The Promise of American Higher Education
No government—regardless of which party is in power—should dictate what private universities can teach, whom they can admit and hire, and which areas of study and inquiry they can pursue
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Scott Coyle @cellraiser.bsky.social · 09/04/2025
Congratulations to our lab's very own @elliott.weix.us on being awarded a Goldwater Scholarship! He's really an amazing and very accomplished young scientist and I couldn't be more proud of him 🥳🥳 ! news.wisc.edu/three-uw-mad...
news.wisc.edu
Three UW–Madison students named 2025 Goldwater Scholars
Three University of Wisconsin–Madison students have been named winners of 2025 Goldwater Scholarships, the premier undergraduate scholarship in mathematics, engineering and the natural sciences in the...
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UW–Madison @uwmadison.bsky.social · 09/04/2025
Three UW–Madison students have received 2025 Goldwater Scholarships, the preeminent undergraduate scholarship in mathematics, the natural sciences and engineering in the United States. Congratulations to Alissa Choi, Elliott Weix and Pramana Saldin!
news.wisc.edu
Three UW–Madison students named 2025 Goldwater Scholars
Three University of Wisconsin–Madison students have been named winners of 2025 Goldwater Scholarships, the premier undergraduate scholarship in mathematics, engineering and the natural sciences in the...
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Zhi Lindsey Lin @zhilindseylin.bsky.social · 04/04/2025
Excited to share that our cell surface proteome review is now online on Chemical Reviews! 🥰 We highlight recent advances of techniques mapping cell surface protein expression, protein-protein interactions, extracellular PTMs and MHC complexes. @jimwellsucsf.bsky.social pubs.acs.org/doi/10.1021/...
pubs.acs.org
Engineered Proteins and Chemical Tools to Probe the Cell Surface Proteome
The cell surface proteome, or surfaceome, is the hub for cells to interact and communicate with the outside world. Many disease-associated changes are hard-wired within the surfaceome, yet approved drugs target less than 50 cell surface proteins. In the past decade, the proteomics community has made significant strides in developing new technologies tailored for studying the surfaceome in all its complexity. In this review, we first dive into the unique characteristics and functions of the surfaceome, emphasizing the necessity for specialized labeling, enrichment, and proteomic approaches. An overview of surfaceomics methods is provided, detailing techniques to measure changes in protein expression and how this leads to novel target discovery. Next, we highlight advances in proximity labeling proteomics (PLP), showcasing how various enzymatic and photoaffinity proximity labeling techniques can map protein–protein interactions and membrane protein complexes on the cell surface. We then review the role of extracellular post-translational modifications, focusing on cell surface glycosylation, proteolytic remodeling, and the secretome. Finally, we discuss methods for identifying tumor-specific peptide MHC complexes and how they have shaped therapeutic development. This emerging field of neo-protein epitopes is constantly evolving, where targets are identified at the proteome level and encompass defined disease-associated PTMs, complexes, and dysregulated cellular and tissue locations. Given the functional importance of the surfaceome for biology and therapy, we view surfaceomics as a critical piece of this quest for neo-epitope target discovery.
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Philipp Lange (he/him) @philipplange.bsky.social · 03/04/2025
Thank you CBC for covering our latest study using #proteomics and rapid patient derived models to inform patient care - out in EMBO Molecular Medicine. A first in Canada step towards improved personalized #PrecisionMedicine CBC: www.cbc.ca/player/play/... Article: www.embopress.org/doi/full/10....
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Jeremy Berg @jeremymberg.bsky.social · 02/04/2025
Collecting my thoughts at the end of one of the worst days of my life... At NIH, > 1300 people were RIFed. These range all across the board from institute directors to low level administrative staff. Communication staff and procurement appear to be hardest hit as anticipated from the HHS plan 1/n
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Dan Nomura @dannomura.bsky.social · 27/03/2025
Cool paper from Woo lab: www.biorxiv.org/content/10.1101/202…
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mchanggroup.bsky.social @mchanggroup.bsky.social · 23/03/2025
Congrats to lead author Doug and team on their new preprint, which describes a genome mining strategy to find non-canonical amino acid-based secondary metabolites outside of RiPP and NRPS pathways! Read more below: chemrxiv.org/engage/chemr...
chemrxiv.org
tRNA-Deacylase Directed Discovery of Biosynthetic Pathways
Amino acids are one of nature’s most privileged building blocks for generating molecular diversity on length-scales ranging from small molecules to proteins. While amino acid products arising from cer...
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Jordan Meier @doc-jlmeier.bsky.social · 20/03/2025
Excited to share this one! We developed an in vivo model for specific manipulation of transfer RNA acetylation and found it serves as a sentinel modification whose loss causes ribosome stalling and stress signaling. Implications for a genetic disorder and cancer. www.science.org/doi/10.1126/...
science.org
Transfer RNA acetylation regulates in vivo mammalian stress signaling
An ancient tRNA modification is used by mammalian cells to coordinate protein translation and adaptive signaling.
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Science Homecoming @sciencehomecoming.bsky.social · 14/03/2025
Prof Amy Weeks, a Clinton, Massachusetts native 🫖, explains: funding cuts don’t just hurt labs—they hurt families seeking cures for fatal diseases & kids from Clinton like her who might grow up to find them. @amyweeks.bsky.social www.clintonitem.com/writes-cuts-...
Screenshot of linked article
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Amy Weeks @amyweeks.bsky.social · 14/03/2025
My contribution to the Science Homecoming project--I wrote to The Item in Clinton, MA about the impacts that cuts to science funding will have on our health, our economy, and the opportunities available to young people in Clinton www.clintonitem.com/writes-cuts-... @sciencehomecoming.bsky.social
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Acyn @acyn.bsky.social · 14/03/2025
AOC: It is almost unthinkable why Senate Democrats would vote to to hand the few pieces of leverage that we have away for free when we've been sent here to protect social security, protect medicaid, and protect medicare.
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Cynthia Wolberger @cwolberger.bsky.social · 09/03/2025
I was that woman! I have frequently told the story of how Jeremy responded after my second NIH rejection. He said, “Whatever you do, don’t stop spending. If you run out of startup, we’ll find more money for you.” I didn’t need it in the end, but knowing he had my back was huge. Thank you!
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Scott Coyle @cellraiser.bsky.social · 07/03/2025
#standupforscience Madison Wisconsin
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Scott Coyle @cellraiser.bsky.social · 04/03/2025
We demonstrate sensitive, real-time GEO-FM streaming of transcription and proteasomal degradation dynamics in single cells. Existing reporters can be converted into FM data streams measured in non-arbitrary units (ΔmHz) that are insensitive to photobleaching, fluorophore maturation , and intensity.
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Scott Coyle @cellraiser.bsky.social · 04/03/2025
Finally, in these tough times for science I want to emphasize how this work was supported at every level by NIH: through grants to my lab (DP2); to my students (BTP T32; CBI T32); and from Rohith’s experience as an NIH Postbac in the Tjandra lab. Grateful for the support that made this possible.
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Scott Coyle @cellraiser.bsky.social · 04/03/2025
Excited to share a new preprint! Wireless devices use FM modulation to transmit multiplexed noise-resistant data. Led by @born2raisecell.bsky.social, we create a biochemical analogue of this paradigm using genetically encoded oscillators (GEOs) for single-cell FM streaming tinyurl.com/nbs8rw42 🧵
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Nate Sherer @natesherer.bsky.social · 02/03/2025
Sad to share news of the loss of a virology legend after a long battle with cancer. We will miss you dearly, Ann Palmenberg. www.cressfuneralservice.com/obituaries/a...
cressfuneralservice.com
Ann Carol Palmenberg, Ph.D Obituary February 20, 2025 - Cress Funeral and Cremation Services
View Ann Carol Palmenberg, Ph.D's obituary, find service dates, and sign the guestbook.
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