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David A. Delgadillo

@daverdude.bsky.social
259 followers 479 following 16 posts

Organic-Natural Products-Medicinal-Analytical- Chemist. Postdoc in the Nelson Group @Caltech leveraging electron diffraction to discover natural products. Trying to do more with less. orcid.org/0000-0002-0897-4470

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Reposted by David A. Delgadillo
Steve Cohen @drstevecohen.bsky.social · 10/09/2026
Linus Pauling's landmark paper "The nature of the chemical bond. IV...." appeared 94 years ago this month in JACS; it introduced electronegativity. #ChemSky #Chemistry #Chemchat 🧪 Read it here: scarc.library.oregonstate.edu/coll/pauling...
scarc.library.oregonstate.edu
"The nature of the chemical bond. IV. The energy of single bonds and the relative electronegativity of atoms." May 18, 1932. - Published Papers and Official Documents - Linus Pauling and The Nature of...
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Beckman Foundation @beckman-foundation.bsky.social · 04/09/2026
Beckman Institute Spotlight: The mission of the Caltech Beckman Research Institute is to “invent methods, instrumentation, and materials that will open new avenues for fundamental research in the chemical and biological sciences, and to provide technological support” for those efforts.
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Caltech Division of Chemistry and Chemical Engineering @caltechcce.bsky.social · 30/07/2026
Hosea Nelson has been selected to lead a team that will receive $17 million from the NSF to create a "programmable cloud laboratory," an automated lab that will allow scientists and AI agents to conduct experiments remotely, analyzing and storing data online. bit.ly/4h6ZuhU
cce.caltech.edu
NSF Funding for Caltech-Led "Cloud Laboratory" Leverages AI to Explore Chemical Dark Matter: A Conversation with Hosea Nelson
The approach could help scientists around the country determine the 3D structure of hundreds of thousands—and potentially millions—of unknown small molecules
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Mark Levin @levinchem.bsky.social · 10/06/2026
I did a thing: chicagomaroon.com/52978/viewpo...
chicagomaroon.com
Welcoming Claude Into the Classroom Risks the Soul of Education
Faculty have a responsibility to protect classrooms as a training ground for thinking, and proliferating LLMs endanger this core mission of the University.
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Matt Hutchings @handle.invalid · 17/04/2026
New paper with @barriewilks.bsky.social. There are many reports on fasamycins and formicamycins (aka accramycins, naphthacemycins, streptovertimycins). Here, we unambiguously solve their structures and stereochemistry. A great effort, led by Dr Edward Hems pubs.acs.org/doi/10.1021/...
pubs.acs.org
Using X-ray Crystallography and 1,n-ADEQUATE NMR to Revise the Structures of Highly Substituted Aromatic Natural Products: The Absolute Configuration of Formicamycin Congeners
Formicamycins and their biosynthetic precursors, the fasamycins, form part of the phenylnaphthacenoid family of polyketide natural products. A recent atroposelective total synthesis of formicamycin H brought into question our original stereochemical assignment of the axially chiral linkage between C-6 and C-7. To address this, we obtained an X-ray crystal structure for formicamycin H that unambiguously confirmed our original assignment as the Sa atropisomer. X-ray structures for multiple additional fasamycins and formicamycins confirmed that this is common to all congeners. However, these studies identified a compounded error made by us whereby several structures previously reported as para-methoxy were found to have ortho-methoxy groups on the hanging E-ring. To address this for congeners that did not crystallize or gave nondiffracting crystals, we turned to the surprisingly underutilized 1,n-ADEQUATE NMR experiment. In total, we generated X-ray structures for 15 phenylnaphthacenoid metabolites and by combining these results report the corrected structures for three formicamycins, six fasamycins, and three biosynthetic lactone intermediates, noting that several revised fasamycin structures now match previously reported naphthacemycins. Our results highlight the utility of 1,n-ADEQUATE experiments for regiochemical determination in polysubstituted aromatic molecules. Moreover, our investigations uncovered a potential deracemization step during biosynthesis of the formicamycin framework.
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Reposted by David A. Delgadillo
Michael Baym @baym.lol · 17/04/2026
I’m looking for an automated way to read others’s scientific data without giving credit or acknowledgement, and also claim full credit for insights from it. And I want it to have a fitting name OAI: say no more
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David A. Delgadillo @daverdude.bsky.social · 27/03/2026
1. Dodgers 2. Whoever is playing the Giants. 3. Whoever is playing the Astros.
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Caltech Division of Chemistry and Chemical Engineering @caltechcce.bsky.social · 17/03/2026
Congratulations to David Delgadillo and Jacob Rothbaum on being awarded the inaugural Nemko Mentorship Prize! 🎉 beckmaninstitute.caltech.edu/fundin…
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Jeremy Berg @jeremymberg.bsky.social · 25/02/2026
My quote of the day Science is the search for truth, that is the effort to understand the world: it involves the rejection of bias, of dogma, of revelation, but not the rejection of morality. Linus Pauling
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Keri Backus @keribackus.bsky.social · 06/02/2026
For a quick summary @uclacb.bsky.social al for the nice writeup of our paper www.chemistry.ucla.edu/news/innovat...
chemistry.ucla.edu
Innovative proximity labeling platform illuminates how cholesterol interacts inside cells – UCLA
Cholesterol plays a central role in cell health, influencing membrane fluidity, curvature, and signaling. To maintain proper cholesterol levels, cells rely on tightly regulated transport systems that move cholesterol between membranes and organelles. However, many of the proteins involved in sensing, binding, and trafficking cholesterol—and how they dynamically interact—remain poorly understood.
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Joint Genome Institute @jgi.doe.gov · 21/01/2026
“The enormous diversity of fungal genomes...offers catalogs of enzymes, secondary metabolites & other parts lists for biotechnology, bioenergy & biomaterials."—Igor Grigoriev, Fungal & Algal Program Head. 🖥️🧬🍄🍄‍🟫 jgi.doe.gov/user-science/science-st…
jgi.doe.gov
Mapping the Earth’s Hidden Fungal Kingdom | Joint Genome Institute
Leveraging massive comparative genomics to decode millions of mystery genes and lay a future-ready foundation
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Reposted by David A. Delgadillo
Carolyn Bertozzi @carolynbertozzi.bskyverified.social · 20/12/2025
Multidisciplinary training, over time, produces the highest impact people www.science.org/doi/10.1126/...
science.org
Recent discoveries on the acquisition of the highest levels of human performance
Scientists have long debated the origins of exceptional human achievements. This literature review summarizes recent evidence from multiple domains on the acquisition of world-class performance. We re...
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C&EN (Chemical & Engineering News) @cenmag.bsky.social · 16/12/2025
Once every 5 years, scientists all over the world gather in Hawaii for the International Chemical Congress of Pacific Basin Societies: cen.acs.org/acs-news/mee... #Pacifichem2025 #Pacifichem #chemsky 🧪
The American Chemical Society held an evening reception on Sunday, the day before the official start of Pacifichem 2025, to celebrate its upcoming 150th anniversary year. Credit: Sara L. CottleMona Nemer, Canada’s chief science advisor, gave the first plenary talk of the event, discussing the role of scientists as diplomats. Credit: Sara L. CottleA Pacifichem 2025 attendee receives a lesson in coconut frond braiding at the opening night reception. Credit: Sara L. CottlePacifichem attendees learned how to braid ti leaves as part of a series of Hawaiian-themed activities at the opening night reception. Credit: Sara L. Cottle
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C&EN (Chemical & Engineering News) @cenmag.bsky.social · 01/12/2025
Because biology is so flexible, the genetic code is sometimes tweaked to add additional amino acids into select proteins. It turns out that some archaea, microorganisms distinct from bacteria and eukaryotes, have gone one step further. cen.acs.org/biological-c... #chemsky 🧪
cen.acs.org
These archaea built a distinct genetic code to put pyrrolysine in proteins
That feat has synthetic biologists excited
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Innovative Genomics Institute @innovativegenomics.bsky.social · 18/11/2025
New in Science Magazine from the Doudna Lab and first author Owen Tuck: Recurrent acquisition of nuclease-protease pairs in antiviral immunity. Read here: ow.ly/pIWQ50XtEtM
ow.ly
Recurrent acquisition of nuclease-protease pairs in antiviral immunity
Antiviral immune systems diversify by integrating new genes into existing pathways, creating new mechanisms of viral resistance. We identified genes encoding a predicted nuclease paired with a trypsin-like protease repeatedly acquired by multiple, ...
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Reposted by David A. Delgadillo
Dirk Trauner @dirktrauner.bsky.social · 15/11/2025
[6+4] Cycloadditions! Introducing our first dive into this fascinating subject in a very enjoyable collaboration with Ken Houk and his team. Congrats to Harrison and Tufan! pubs.acs.org/doi/10.1021/...
pubs.acs.org
Synthesis of Collinoketones via Biomimetic [6 + 4] Cycloaddition
Cycloadditions are among the most powerful reactions for constructing molecular complexity. The archetypal example is the [4 + 2] (Diels–Alder) cycloaddition, which efficiently furnishes cyclohexene d...
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David A. Delgadillo @daverdude.bsky.social · 12/11/2025
@dmeremin.bsky.social Absolutely crushed it with this automated workflow! It ain’t about the size of your crystals, nor the way that they look, that matters…it’s all about how they diffract! Cheers to the whole team!
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Cornelius Gati @gati.bsky.social · 05/11/2025
Excited to share our latest @nature.com: How does naloxone (Narcan) stop an opioid overdose? We determined the first GDP-bound μ-opioid receptor–G protein structures and found naloxone traps a novel "latent” state, preventing GDP release and G protein activation.💊🧪 🧵👇 www.nature.com/articles/s41...
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paulschanda.bsky.social @paulschanda.bsky.social · 18/10/2025
📢 New preprint: Experiment-guided AlphaFold3 resolves accurate protein ensembles. doi.org/10.1101/2025... AlphaFold3 is incredible, but has crucial limitations: it typically collapses to a single conformation, ignoring the inherent dynamics of proteins. And it can be wrong. Here's a solution. 🧵👇
Structures from AlphaFold3 - while often impressively good - tend to fail representing the dynamic ensembles accurately. And often parts of the structure are not correct.
Adding experimental data, directly in AlphaFold's diffusion step, provides physically realistic protein ensembles. This image shows two cases where AlphaFold3-only structures were largely improved by guiding with experimental data.
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Stu Cantrill @stuartcantrill.com · 13/10/2025
‘Economics Nobel prize won by researchers who showed how science boosts growth’ by @philipcball.bsky.social in @nature.com www.nature.com/articles/d41...
Screenshot that reads:

The award "underlies the importance in investing in science for innovation and long-term economic growth", says economist Diane Coyle of the University of Cambridge. "It's great to see the Nobel prize recognize the importance of this topic," adds innovation policy researcher Richard Jones of the University of Manchester, UK. "It's important that economists understand the conditions that lead to technological progress," he adds. The winners, says Coyle, "have long been on people's list of potential candidates".
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Cameron Thrash @jcamthrash.bsky.social · 10/10/2025
Metabolic controls on the carbon isotope fractionations of bacterial fermentation www.pnas.org/doi/abs/10.1... #jcampubs
pnas.org
Metabolic controls on the carbon isotope fractionations of bacterial fermentation | PNAS
Microbial fermentation facilitates the initial breakdown of organic matter into small molecules and is thought to be the rate-limiting step of anox...
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Carolyn Bertozzi @carolynbertozzi.bskyverified.social · 09/10/2025
My HPLC was definitely overlooked www.nature.com/articles/d41...
nature.com
Prizes must recognize machine contributions to discovery
The future of science will be written by humans and machines together. Awards should reflect that reality.
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C&EN (Chemical & Engineering News) @cenmag.bsky.social · 08/10/2025
The 2025 #NobelPrize in Chemistry has been awarded to Susumu Kitagawa, Richard Robson and Omar M. Yaghi “for the development of metal–organic frameworks.” Stay tuned for the full story to come! cen.acs.org/people/nobel... #ChemNobel #Chem #Chemistry #chemsky 🧪
cen.acs.org
The 2025 chemistry Nobel goes to MOFs
Susumu Kitagawa, Richard Robson and Omar M. Yaghi win the prize for developing metal–organic frameworks
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David A. Delgadillo @daverdude.bsky.social · 26/09/2025
When was the NSF-GRFP eligibility change implemented? #chemsky
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Chemistry World @chemistryworld.com · 21/09/2025
A new electron diffraction technique could make it easier to study molecules that need to remain solvated at all times.
chemistryworld.com
New electron diffraction strategy could make it easier to study solvated organic microcrystals
The approach combines carbon liquid cells and rapid data acquisition to study solvated molecules at room temperature
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Harry M. Williams @harrywilliams.bsky.social · 18/09/2025
❄️ NEW PRE-PRINT ❄️ Happy to see our latest work online. Here we present a super simple solution to the preferred orientation problem in single particle cryo-EM: the use of ultrasonic excitation during vitrification! Details in the 🧵 below... #cryoEM #structuralbiology
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R. David Britt @rdavbritt.bsky.social · 30/08/2025
is the dimer core of the H-cluster of FeFe hydrogenase formed by rSAM chemistry in HydE? pubs.acs.org/doi/full/10....
pubs.acs.org
The Radical S-Adenosyl-l-methionine Enzyme HydE Forms an Fe(I)Fe(I) Dimer En Route to the [FeFe] Hydrogenase H-Cluster
[FeFe] hydrogenases are highly efficient metalloenzymes that catalyze hydrogen conversion via a sophisticated active site cofactor known as the H-cluster. Biosynthesis of its [2Fe]H subcluster, which ...
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David A. Delgadillo @daverdude.bsky.social · 28/08/2025
Trying to do more with less 🙂‍↕️
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Chemjobber @chemjobber.bsky.social · 20/08/2025
ACS Council approves the petition to establish the Committee on the Advancement of LGBTQ+ Chemists, 86% to 14%. #chemsky 🧪⚗️ #acsfall2025
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Timothy Caulfield @caulfieldtim.bsky.social · 14/08/2025
Scientists’ role in defending democracy www.science.org/doi/10.1126/... Let's all support this vital need: the ability to tell the truth. 💪 "Those in the science community who are willing & able to be more visible can step up. Acting together will be more impactful than going it alone."
science.org
Scientists’ role in defending democracy
The United States’ democratic leadership, commitment to freedom of expression, and investment in the pursuit of knowledge have long enabled its preeminence in science and technology. Yet today we are ...
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Eric Topol @erictopol.bsky.social · 14/08/2025
Defending US democracy: the role of scientists @science.org www.science.org/doi/10.1126/...
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Scott Bagley @bagphos.bsky.social · 09/08/2025
#ChemSky #ACSFall2025 Huge thank you to Prof. Isaiah Speight, Prof. Kensha Clark, and Prof. Davita Watkins for organizing this amazing lineup of impressive speakers. Hosted by organicdivision.org POLY and INOR. Thank you to ACS President Dr. Phillips for elevating this to a Presidential Symposium
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C&EN (Chemical & Engineering News) @cenmag.bsky.social · 02/08/2025
@acs.org is recognizing Jennifer A. Doudna with the Priestley Medal for her discoveries on ribozyme function, the Dicer RNase enzyme, double-stranded RNA processing, and CRISPR gene editing, along with her impactful international science leadership. cen.acs.org/people/award... #chemsky 🧪
cen.acs.org
Jennifer Doudna is named 2026 Priestley Medalist
The award recognizes the biochemist for discoveries on ribozyme function and CRISPR gene editing, and international science leadership
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CCDC Cambridge @ccdc.cam.ac.uk · 22/07/2025
Natural products (NPs) play a crucial role in medicine, inspiring over 50% of the drugs on the market. 🔎In this work, the team used an 'arrayED' workflow, that enabled high-throughput screening for crystalline NPs amenable to microcrystal electron diffraction (microED). 🔗 ccdc-info.com/3GP4yb2
Promotional graphic with the ball and stick structure of CSD entry FACNUX.
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Dmitry Eremin @dmeremin.bsky.social · 30/07/2025
Check out the stunning cover featuring recent paper from @hoseanelson.bsky.social Lab, led by our one and only @daverdude.bsky.social! He discovered an entire class of natural products using microED powered by arrayED @caltech.edu @caltechcce.bsky.social @uclacb.bsky.social
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Journal of the American Chemical Society (JACS) @jacs.acspublications.org · 30/07/2025
On the front cover of this week's issue: "Microcrystal Electron Diffraction-Guided Discovery of Fungal Metabolites" Read it here 🔗: buff.ly/F6E8Ygs #ChemSky #JACS
JACS Front Cover - Week of July 28, 2025
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cryoEM papers @cryoempapers.bsky.social · 30/07/2025
Combining MicroED and native mass spectrometry for structural discovery of enzyme-small molecule complexes pubmed.ncbi.nlm.nih.gov/40720654/ #cryoEM
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Mark Levin @levinchem.bsky.social · 18/07/2025
Today in @science.org, @mikusp.bsky.social reports a method to replace the C2 of pyridines with N, affording pyridazines. The change from electronically consonant (pyridine) to dissonant (pyridazine) opens retrosyntheses not typically available to the latter. www.science.org/doi/10.1126/...
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Maite Colinas @maitecolinas.bsky.social · 16/07/2025
Next one out from @oconnorlab.bsky.social department in @natchembio.nature.com. Work led by my office mate Allwin McDonald on the epimerisation of monoterpenoid indole alkaloids in Kratom! #PlantSci #NatProd rdcu.be/ewvtP
rdcu.be
Enzymatic epimerization of monoterpene indole alkaloids in kratom
Nature Chemical Biology - Monoterpene indole alkaloids are formed via a 3S stereoselective condensation between secologanin and tryptamine. Here the authors uncover the mechanism of epimerization...
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Carolyn Bertozzi @carolynbertozzi.bskyverified.social · 11/07/2025
Check out this amazing new work from @sattelylab.bsky.social along with collaborator and @stanford-chemh.bsky.social Institute Scholar @pollyfordyce.bsky.social ! www.nature.com/articles/s41...
nature.com
Discovery of FoTO1 and Taxol genes enables biosynthesis of baccatin III - Nature
An approach that combines single-nucleus RNA sequencing and multiplexed perturbation identifies genes that enable the biosynthesis of direct precursors of the anti-cancer drug Taxol, whose curren...
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Science Magazine @science.org · 03/07/2025
New research in Science greatly expands the potential target scope of molecular glues and should stimulate the development of new small molecules that can selectively target therapeutically relevant proteins for degradation. Learn more in this week's issue: scim.ag/44uRorm
This illustration shows the interface of the kinase NEK7 (light blue) and the E3 ubiquitin ligase substrate receptor cereblon (teal). The interaction is facilitated by the small molecule MRT-3486 (orange).
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David A. Delgadillo @daverdude.bsky.social · 25/06/2025
I was first introduced to the potential of electron diffraction through the Pipeline back in 2018…full circle moment #chemsky
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David A. Delgadillo @daverdude.bsky.social · 03/06/2025
There's been a rich connection between electron diffraction and the nature of the chemical bond over the years. Here, we've shown how you can leverage electron diffraction to discover and characterize novel natural products. @caltechcce.bsky.social @uclacb.bsky.social pubs.acs.org/doi/10.1021/...
pubs.acs.org
Microcrystal Electron Diffraction-Guided Discovery of Fungal Metabolites
Nature remains a vast repository of complex and functional metabolites whose structural characterization continues to drive innovations in pharmaceuticals, agrochemicals, and materials science. The cr...
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Natural Product Reports @natprodreports.rsc.org · 28/05/2025
🔓Don't miss this #OpenAccess Highlight from @nadineziemert.bsky.social‬, Ludek Sehnal & co @unicampoficial.bsky.social‬ & @unituebingen.bsky.social‬ covering genomic insights to drug discovery of Antarctic bacterial natural products #natprod #secmet Check it out here🔽 pubs.rsc.org/en/content/a...
pubs.rsc.org
Antarctic bacterial natural products: from genomic insights to drug discovery
Covering: up to the end of 2024 Microbial life dominates the extreme continent Antarctica, playing a pivotal role in ecosystem functioning and serving as a reservoir of specialized metabolites known…
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cryoEM papers @cryoempapers.bsky.social · 24/05/2025
α-Hydrazino Acids Inhibit Pyridoxal Phosphate-Dependent Decarboxylases via "Catalytically Correct" Ketoenamine Tautomers: A Special Motif for Chemical Biology and Drug Discovery? pubmed.ncbi.nlm.nih.gov/40401103/ #cryoEM
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Alex Crits-Christoph @acritschristoph.bsky.social · 23/05/2025
Self-supervised learning of molecular representations from millions of tandem mass spectra using DreaMS www.nature.com/articles/s41...
nature.com
Self-supervised learning of molecular representations from millions of tandem mass spectra using DreaMS - Nature Biotechnology
A transformer model is used to construct the DreaMS Atlas—a molecular network of 201 million MS/MS spectra.
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The Women In Science Archive @wisarchive.bsky.social · 12/05/2025
Crystallography legend Dorothy Crowfoot Hodgkin was born 115 years ago today. She cracked the structure of penicillin, vitamin B-12 (for which she was awarded the Nobel Prize), and ultimately, in 1969, the 788 atom structure of insulin. tinyurl.com/5n76x7n3 #WomenInSTEM #Chemistry #Physics 🧪
tinyurl.com
Monarch of Crystallography: Dorothy Crowfoot Hodgkin and the Structure of Large Molecules.
Two scientists.Two crystallographers.Both successful, but one died young after her most significant discovery was snatched from her, while the other lived to a ripe old age after a string of ground-br...
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David A. Delgadillo @daverdude.bsky.social · 15/05/2025
Coming to a TEM near you! Nice work @dmeremin.bsky.social and team! #ChemSky
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Abby Polter @ampolter.bsky.social · 14/05/2025
This is absolute bullshit. Michael is one of the most creative scientists I've ever met, exactly the type of work the country should be investing in
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