GlycoShape

@glycoshape.org

Glycan 3D database and toolbox for the reconstruction of glycoproteins from the RCSB PDB and EMBL-EBI AlphaFold repositories or own. Find us at https://glycoshape.org. Curated by head chef @elisafadda.bsky.social and sous chef @ojas-singh.bsky.social

Un-crystallisable glyco-complexes anyone? New work led by John Klassen's lab introduces antibody masking-native mass spectrometry (AM-nMS) a spatially resolved assay that allowed us to map glycan binding sites across the SARS-CoV-2 RBD. The results match our MDs! 😜 All details glycoshape.org/blog

screenshot of the E04 new blog entry on https://glycoshape.org/blog titled Let's talk about glycan binding to viral (glyco)proteins

glycoshape.org has now a blog where we discuss (yep you got it) glycans, glycoproteins and fun stuff! Season 1 is out with: Ep01: Why should we care about glycan heterogeneity? Ep02: How can we include glycan heterogeneity in a 3D framework? Ep03: Molecular precision glycoscience: Enter Siglecs

Header of the Blog page on https://glycoshape.org/blog that you can find in the drop-down menu under Resources> Blog

Next time you hear 'glycans are just a fancy protein decoration' 😱 show them this fabulous work led by Katrine Schjoldager and team at the CGR 🇩🇰 with us 🇬🇧 showing how The ligand preference of LRP1 is regulated by O-glycans Out now www.science.org/doi/10.1126/... 🧵1/10 ⬇️

The ligand preference of LRP1 is regulated by O-glycans

GALNT11-mediated O-glycans modulate LRP1 uptake of tau and Aβ, unveiling glycan-driven mechanisms in neurodegenerative pathways.

science.org

Daily job count is quite high these days after the release of our case study 1 week ago and of the ReGlyco de novo Binder Design Filter notebook ⬇️ doi.org/10.64898/202... and res. therein So exciting to see a growing number of researcher including glycosylation in their studies! 🎉 #glycotime 🧪

Bar graph showing the GlycoShape job count x day in April 2026

Most biologics are glycosylated and some of them heavily. In this “fresh off the press" #glycotime preprint we look into how a filter that accounts for glycosylation explicitly in 3D can help reduce lab costs and increase the efficiency of de novo binder design pipelines. Short 🧵 ⬇️ 1/7

bioRxivpreprint@biorxivpreprint.bsky.social · 4mo ago

Integrating glycosylation in de novo protein design with ReGlyco Binder Design Filter https://www.biorxiv.org/content/10.64898/2026.04.16.718906v1

Super congratulations to the Siglec (and many other stories) extraordinaire Dr. D'Andrea!!! 👩‍🎓🎉🥂🍾 A huge thank you to the fantastic examiners Alba Silipo (external) and Trinidad Velasco-Torrijos (internal) for your expert and in-depth examination, which made Silvia's viva a great day to remember 😎

From left: Prof Alba Silipo (UniNa, Federico II), Elisa Fadda, Dr Silvia D'Andrea, and Dr Trinidad Velasco-Torrijos, yellow table and amazing red velvet cake

Happy new year 2026 #glycotime! 🥳 We just introduced some useful options to Re-Glyco Ensemble. In the Advanced Settings you can now select a seed (positive integer) to reproduce structural ensemble of your favourite glycoforms such as the one below that you will see soon in an upcoming paper,

Structure of a protein (cyan/teal) rendered as surface with 50 frames representing the dynamic ensemble of the glycans (white surface and sticks) depicted at the three sites (N93, N99 and N104) indicated by the 2D SNFG symbols and corresponding GlyTouCan IDs. Graphic rendering with VMD

Happy birthday to us! 🥂🎂🥳 We are only 2 yo, but so much #glycotime happened since Dec 2023! ⬇️🧵 We truly appreciate your support, you fabulous glycoengineers around the world and we have so many exciting new tools for you coming up in 2026 to make your 3D glycoforms even better and faster! 🤩

Christmas wreath obtained by photoshop (gimp.org) of a protein structure with glycans in white rebuilt with Re-Glyco, protein in orange surface, red beads and green cartoons from PDB 8DLO

Super interesting work from @carolynbertozzi.bskyverified.social group about the effects of glycosylation in protein structure and function at the proteome scale 🤯💥🤩 Results show that sialylation and fucosylation are crucial, which makes a lot of sense. We did some extra bits 🧐 with GlycoShape ⬇️🧵

Carolyn Bertozzi@carolynbertozzi.bskyverified.social · 8mo ago

Congratulations former postdoc @jfhevler.bsky.social (in transit to Roche) and the team on their work using thermal proteome profiling along with glycosylation perturbagens to discover glycan-dependent protein functions at the proteome scale 👏 www.biorxiv.org/content/10.6...

We just did some maintenance and updates to glycoshape.org, ✅ Fancy background with floating SNFG symbols 🤩 ✅ 'Latest Updates' feed from this account on bsky 🤩 ✅ Download PDB with SASA values in Re-Glyco Ensemble 🤩 Check it out!

Front page of Glycoshape website with the new background with floating SNFG symbols representing different monosaccharides. In the website the background is animated, so check it out at https://glycoshape.orgWhen you rebuild a glycosprotein with Re-Glyco Ensemble, now you can download the multiframe PDB with SASA values in the B-values column. The structure on the left shows in blue all the accessible surface and in light blue and red inaccessible residues due to the glycan presence. The buttons below are in cyan for regular multiframe PDB download (left) and download of all the file jobs (right) the middle gradient colored button allows users to download the PDB with SASA values

For some unique #glycotime: C-man is a rare (but evolutionarily very old[1]) post translational modification of proteins, where the C2 of Trp in W-x-x-W/C sequons are linked to a single man through a C-C bond 🤯 This and its position within the structure stabilises the (unusual for man) 1C4 chair[2]

Tuesday #glycotime 🥄🍬 Glycans are a 🔝 example of "disordered" molecules. Inherent flexibility prevents sugars from adopting fixed, unique 3D positions relative to the crystal lattice, so they often are invisible to X-ray diffraction, unless they are bound and thus restrained in place 1/3 🧵

Example of a glycan (yellow sticks for the C atoms, blue for N, and red for O) bound to the enzyme FUT8 (1,6 fucosyltranseferase 8 in white surface) that functionalises the core with an a(1-6) fucose. The structure is also resolved with the GDP part of the donor

To wish our friend and main O-glycan 3D structure contributor extraordinaire @silviadandrea.bsky.social all the best with the submission of her PhD thesis tomorrow, today's 🥄🍬 is dedicated to sialic acid 💜 with a mini 🧵 about all the wonderful functions Silvia worked on

Overview of the different roles of sialic acid (NeuAc) in glycans and glycoconjugates. Bottom left, sialic acid is represented with his chemical 3D structure (grey C atoms, red O and blue N) with a purple diamond at the back (SNFG symbol)

Today we used Re-Glyco to rebuild human EPO from AF-P01588 with glycosylation selected from Lippold et al [10.1021/acs.analchem.0c01794] From the 3D structure we identified ideal locations for extra N-glycans, some of which are actually in NESP [10.1054/bjoc.2001.1746] Super fun 3D edu #glycotime!

title slide of the workshop held today for the Advance Pharmacology module at the University of Southampton (E. Fadda lecturer and coordinator) right-hand side in the bubble, human EPO (grey) with glycosylation reconstructed according to [10.1021/acs.analchem.0c01794] bound to the EPO receptor (cyan) in PDB 1CN4. Slide background is blue

Hello bsky 🦋 GlycoShape is now here to give you updates on our glycan 3D database, toolbox, glyco fun-facts and news! We just updated server, so clear your browser's cache, and build some glycoproteins with us 🍬 We'll have great new tools coming up soon, so follow us for some exciting #glycotime

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ALT: a close up of a feather on a rock with the words `` hello '' written in white letters .

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