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Andrea Pasquadibisceglie

@andpdb.bsky.social
195 followers 882 following 14 posts

Staff scientist @tigem.bsky.social | Computational structural biologist

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Andrea Pasquadibisceglie @andpdb.bsky.social · 29/04/2026
Would you like to give a concrete contribution to the development of new therapies for #RareDiseases? 💊 💻 We are looking for a postdoctoral researcher to join our Computational Structural Biology group at @tigem.bsky.social
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BioExcel CoE @bioexcelcoe.bsky.social · 04/02/2026
🎗️ reminder that our #webinar on "Mastering the Accelerated Weight Histogram method" will take place next week; 🗓️ 10 February 2026, 15:00 CET ✍️ bioexcel.eu/5t76 #moleculardynamics
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Khmelinskaia Lab @akhmelinlab.bsky.social · 03/02/2026
🗓️ Save the Date! The 5th European RosettaCon – Crossing Boundaries with Protein Design will take place in Lisbon, Portugal 🇵🇹 🗓️ October 28–30, 2026 Join the protein design community for an inspiring scientific meeting at the intersection of innovation and design.
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AI x Bio Discovery @aixbiobot.bsky.social · 02/02/2026
Ab initio prediction of RNA structure ensembles with RNAnneal [new] ...leverages generative deep learning with statistical physics and MD to determine 3D structural ensembles from primary sequences, aiding design.
Ab initio prediction of RNA structure ensembles with RNAnnealFigure 1Figure 2Figure 3
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Jeffrey J. Gray @jeffreyjgray.bsky.social · 30/01/2026
Final stretch to apply for undergraduate summer internships in the Rosetta Commons! Come design proteins, develop AI and physics-based methods to model biomolecules, and impact health, materials, and sustainability! Application deadline is Sunday Feb 1. rosettacommons.org/education/reu/
rosettacommons.org
Undergraduates
Rosetta Commons Research Experience for Undergraduates (REU) AI for Biomolecular Structure Prediction and Design Interns in this geographically-distributed REU program participate in research using…
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Elisa Fadda @elisafadda.bsky.social · 22/01/2026
Excellent overview of the (mind-blowing) effects of the Shingles vaccine against dementia by @erictopol.bsky.social Ground Truth 🧪 "Two new studies add to a remarkable body of evidence for benefit" ⬇️ open.substack.com/pub/erictopo...
open.substack.com
Spotlight on the Shingles Vaccine—Again!
Two new studies add to a remarkable body of evidence for benefit
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Andrew Plested @andrewplested.bsky.social · 08/01/2026
"While the concept of condensates is successfully rewriting cell biology textbooks, there is some danger of overhype and backlash." This workshop summary is great - particularly the idea to shift from "Is it a condensate?" to "what problem does that solve?" but "successfully" stood out for me here
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Yamuna Krishnan @krishnanyamuna.bsky.social · 17/12/2025
Organelles do NOT have a single uniform pH. And if you think they must, because “protons diffuse fast,” this paper is for you. A thread on why that assumption is wrong; and what we found instead. 🧵 1/n
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Kresten Lindorff-Larsen @lindorfflarsen.bsky.social · 15/12/2025
Experimental structures provide valuable hypotheses and accelerate but do not replace evolutionary and statistical analyses of protein sequences
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Smut Clyde, X-Ray Haruspex @smutclyde.bsky.social · 26/11/2025
Rate your score on Factor Fexcectorn. Well done, Scientific Reports. pubpeer.com/publications...
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Python Software Foundation @python.org · 27/10/2025
TLDR; The PSF has made the decision to put our community and our shared diversity, equity, and inclusion values ahead of seeking $1.5M in new revenue. Please read and share. pyfound.blogspot.com/2025/10/NSF-... 🧵
python.org
The official home of the Python Programming Language
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di Bernardo Lab @diegodibi.bsky.social · 10/09/2025
Join our lab dibernardo.tigem.it for the #ERC-funded project DIMERCIRCUITS at @tigem.bsky.social. We are building synthetic gene circuits to power next-generation gene and cell therapies. We are looking for candidates with a PhD in #SyntheticBiology or related. Apply by email: dibernardo@tigem.it
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Tigem @tigem.bsky.social · 06/10/2025
🚀 Launch your career in advanced gene and cell therapies! 🚀 RAREFIND #MSCA-COFUND #PhD Programme opens its call for applications! 👉Know more and apply now: www.rarefind-cofund.eu #RAREFINDPhD
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Martin Pacesa @martinpacesa.bsky.social · 27/08/2025
Exciting to see our protein binder design pipeline BindCraft published in its final form in @Nature ! This has been an amazing collaborative effort with Lennart, Christian, @sokrypton.org, Bruno and many other amazing lab members and collaborators. www.nature.com/articles/s41...
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di Bernardo Lab @diegodibi.bsky.social · 22/07/2025
We are hiring a Bioinformatician expert in NGS for our Bioinformatics Core @tigem.bsky.social please share with anyone that may be interested.
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Adrien Schahl @aschahl.bsky.social · 04/07/2025
Very nice presentation of @eriklindahl.bsky.social about his work to integrate AI, MD and experiments. 🤩 #EBSA2025
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Andrea Pasquadibisceglie @andpdb.bsky.social · 02/07/2025
Excited to be at #EBSA2025! Today I'll present my postdoc project carried out under the supervision of @delemottelab.bsky.social and with the collaboration of Sara Liin and her amazing team!
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Tigem @tigem.bsky.social · 16/05/2025
🌍 Attending #ASGCT2025 in #NewOrleans? Don’t miss this Scientific Symposium hosted by the Coalition of International Gene Therapy Societies: 📌 Clinical Trials Around the Globe 🗓️ [Today, May 16th] 🕗 8:00 AM – 9:45 AM 📍 Room 293–296 #GeneTherapy #ASGCT #AAV #Retina #LiverGeneTherapy #RareDisease
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Simon Waddington @profsimonwad.bsky.social · 14/04/2025
A new paper hitting the press: Gene therapy for AIPL-1 retinal dystrophy. Almost all kids with this can only perceive light, at best. Getting early will help with vision also neurodevelopment and psychosocial aspects. 🧬 ⭐ 👁 www.thelancet.com/journals/lan...
thelancet.com
Gene therapy in children with AIPL1-associated severe retinal dystrophy: an open-label, first-in-human interventional study
Our findings indicate that young children with AIPL1-related retinal dystrophy benefited substantially from subretinal administration of rAAV8.hRKp.AIPL1, with improved visual acuity and functional vi...
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Sammy Chan @sammyhschan.bsky.social · 11/04/2025
Preprint! All-atom structures of 2 folding intermediates on the ribosome, along parallel pathways & conserved across Ig domains, by 19F NMR & MD Co-led by @julianstreit.bsky.social, & thanks twlodarski.bsky.social, Alki, Lisa & John Christodoulou! #nmrchat #compbio www.biorxiv.org/content/10.1...
biorxiv.org
Structures of protein folding intermediates on the ribosome
The ribosome biases the conformations sampled by nascent polypeptide chains along folding pathways towards biologically active states. A hallmark of the co-translational folding (coTF) of many protein...
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Alexis Verger 🧬🧫🧪 @alexis-verger.cpesr.fr · 07/04/2025
BoltzDesign1: Inverting All-Atom Structure Prediction Model for Generalized Biomolecular Binder Design by @yehlincho.bsky.social @martinpacesa.bsky.social @sokrypton.org 🧶🧬 www.biorxiv.org/content/10.1...
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Diego del Alamo @delalamo.xyz · 04/04/2025
Yet another PLM, this one with 100B params, that fails to outperform AF2 (93M params) when MSAs are provided www.nature.com/articles/s41...
Fig 3d Scatterplots compare xT-Fold predictions (x axis) to other models (y axis), color coded by perplexity (green for high, purple for low).
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Simon Olsson @smnlssn.bsky.social · 03/04/2025
We are recruiting a colleague to our division at Chalmers in Data-Driven Life Science (broadly defined), a competitive starting package is offered and you get to be part of a support, yet young and ambitious research environment. Apply here: www.chalmers.se/en/about-cha...
chalmers.se
Vacancies
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Andrea Pasquadibisceglie @andpdb.bsky.social · 02/04/2025
Honored to be part of @tigem.bsky.social and Fondazione Telethon
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Jorge Bravo Abad @bravo-abad.bsky.social · 21/03/2025
Leung et al. used deep autoencoders with outlier detection to guide weighted ensemble simulations of NTL9 folding, achieving up to threefold better efficiency than standard methods. pubs.acs.org/doi/full/10....
pubs.acs.org
Unsupervised Learning of Progress Coordinates during Weighted Ensemble Simulations: Application to NTL9 Protein Folding
A major challenge for many rare-event sampling strategies is the identification of progress coordinates that capture the slowest relevant motions. Machine-learning methods that can identify progress coordinates in an unsupervised manner have therefore been of great interest to the simulation community. Here, we developed a general method for identifying progress coordinates “on-the-fly” during weighted ensemble (WE) rare-event sampling via deep learning (DL) of outliers among sampled conformations. Our method identifies outliers in a latent space model of the system’s sampled conformations that is periodically trained using a convolutional variational autoencoder. As a proof of principle, we applied our DL-enhanced WE method to simulate the NTL9 protein folding process. To enable rapid tests, our simulations propagated discrete-state synthetic molecular dynamics trajectories using a generative, fine-grained Markov state model. Results revealed that our on-the-fly DL of outliers enhanced the efficiency of WE by >3-fold in estimating the folding rate constant. Our efforts are a significant step forward in the unsupervised learning of slow coordinates during rare event sampling.
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Jorge Bravo Abad @bravo-abad.bsky.social · 21/03/2025
Chronowska et al. introduce the Protein Design Archive, a curated database of over 1,500 de novo designs, revealing rapid growth from rational to deep learning–based methods. Their website offers key metrics and filtering tools for guiding future designs. www.nature.com/articles/s41...
nature.com
The Protein Design Archive (PDA): insights from 40 years of protein design - Nature Biotechnology
Nature Biotechnology - The Protein Design Archive (PDA): insights from 40 years of protein design
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Nature Biotechnology @natbiotech.nature.com · 19/03/2025
In Brief: A potential first-in-class treatment using @boehringerglobal.bsky.social's lentivirus-based CFTR gene addition therapy for cystic fibrosis begins clinical trials www.nature.com/articles/s41... rdcu.be/eecLO
nature.com
First inhaled lentiviral gene therapy enters cystic fibrosis trial - Nature Biotechnology
Nature Biotechnology - First inhaled lentiviral gene therapy enters cystic fibrosis trial
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Tigem @tigem.bsky.social · 12/03/2025
🚨 The latest study from #NatureCommunications, led by Pasquale Piccolo, systematically evaluated AAV-mediated liver transduction across different fibrosis models.
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mentor-program.bsky.social @mentor-program.bsky.social · 06/03/2025
🚀 PhD Opportunity – NC-mTORC1 & Genetic Diseases! Join @tigem.bsky.social & Univ. of Naples to explore Non-Canonical mTORC1 signaling in mTORopathies like BHD & TSC!
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Tigem @tigem.bsky.social · 05/03/2025
🚀 Our mission 🧬 Our mission is to push scientific boundaries through cutting-edge research, innovative therapies, and training the next generation of biomedical experts. Learn more: www.tigem.it ✨ #Genetics #RareDiseases #MedicalResearch
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Diego del Alamo @delalamo.xyz · 24/02/2025
Collective variables from MD simulations can be linked to the learned latent dimensions of an autoencoder for generative modeling of conformational interconversion trajectories www.biorxiv.org/content/10.1...
Figure 2: Network layout of the rMD informed autoencoder. The basic encoder compresses the
flattened Cartesian coordinates of protein structures from MD simulations into a low-dimensional
latent space (magenta dot) via fully connected network layers gradually shrinking in size. The
decoder then reconstructs the original Cartesian representation from the LS using expanding layers.
The blue CRBN structures represent inputs from simulations, while the red structures are their
network-generated outputs. The autoencoder is trained using the ”predLoss” layer, minimizing the
Loss2 function, which calculates the average RMSD between inputs and outputs. The 5 different
point clouds show 5 different LS point distributions (orange-training set, blue-validation set) after
training the basic network, initializing it with different random seeds. The informed autoencoder
introduces an additional loss layer, ”latentLoss” and a loss function Loss1. The input for Loss1 are
the LS coordinates and the target are the CV coordinates (purple ”colVars” box). By simultaneously
optimizing Loss1 and Loss2, the trained network will compress the original trajectory frames into
a unique latent space where LS coordinates have an approximate one-to-one correspondence with
the CV coordinates as shown in Fig. 3.
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Frank Noe @franknoe.bsky.social · 19/02/2025
The BioEmu-1 model and inference code are now public under MIT license!!! Please go ahead, play with it and let us know if there are issues. github.com/microsoft/bi...
github.com
GitHub - microsoft/bioemu: Inference code for scalable emulation of protein equilibrium ensembles with generative deep learning
Inference code for scalable emulation of protein equilibrium ensembles with generative deep learning - microsoft/bioemu
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BioExcel CoE @bioexcelcoe.bsky.social · 29/01/2025
This year's version of GROMACS is out! If you want to hear about the new features and performance improvements join our #webinar on 18 February 2025 Registration ➡️ bit.ly/40Ebbme #moleculardynamics
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Kresten Lindorff-Larsen @lindorfflarsen.bsky.social · 14/12/2024
Predicting absolute protein folding stability using generative models @mcagiada.bsky.social @sokrypton.org & I used ESM-IF to predict ∆G for folding & conformational change Paper, code and colab 📜 dx.doi.org/10.1002/pro.... 💾 github.com/KULL-Centre/... 👩‍💻 colab.research.google.com/github/KULL-...
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Andrea Pasquadibisceglie @andpdb.bsky.social · 09/12/2024
At TIGEM, we are looking for a motivated student/young researcher to start a new project on hyperactive enzyme design using deep-learning and physics-based methods! If you are interested, please get in touch with us tigem.it/newsroom/car...! Thank you for sharing it! #compchem #compbio
tigem.it
Welcome to TIGEM
Telethon Institute of Genetics and Medicine
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Andrea Pasquadibisceglie @andpdb.bsky.social · 09/12/2024
I’m thrilled to announce that, in February next year, I’ll be starting a new role as a Staff Scientist at TIGEM in Italy! I’m truly grateful to my fantastic supervisor @delemottelab.bsky.social and the MBS group for an incredible two years in Stockholm! Tack så mycket!
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Roland Dunbrack 🏳️‍🌈 @rolanddunbrack.bsky.social · 08/12/2024
David Baker visits all the Rosetta folks after his Nobel lecture. And photo of all three Chemistry laureates - David Baker, Demis Hassabis, and John Jumper. An honor to be here in Stockholm to see this.
David Baker chats with Rosetta folksNobel Laureates in Chemistry David Baker, Demis Hassabis, and John Jumper
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Andrea Pasquadibisceglie @andpdb.bsky.social · 08/12/2024
David Baker, Demis Hassabis and John Jumper #Nobel laureates in Chemistry. What a great time to be a postdoc in Stockholm!
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Andrea Pasquadibisceglie @andpdb.bsky.social · 08/12/2024
Hopfield & Hinton #Nobel Prize 2024 in Physics
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Andrea Pasquadibisceglie @andpdb.bsky.social · 08/12/2024
#NobelLectures
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Amy Lu @amyxlu.bsky.social · 06/12/2024
1/🧬 Excited to share PLAID, our new approach for co-generating sequence and all-atom protein structures by sampling from the latent space of ESMFold. This requires only sequences during training, which unlocks more data and annotations: bit.ly/plaid-proteins 🧵
overview of results for PLAID!
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Torsten Schwede @torstenschwede.bsky.social · 06/12/2024
The results of #CASP16 are online, pdf files of the presentations will be made available next Wednesday through the CASP website. The release of talk recordings will follow soon afterwards. Big thanks to all participants for an inspiring conference! 🧪 🧬 predictioncenter.org/casp16/
CASP logo
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Max Bonomi @bonomimax.bsky.social · 06/12/2024
Do you want to work at the interface of molecular simulations, structural biology experiments and #AI? Come to Paris for a PhD at @pasteur.fr 1 PhD position is available in our lab funded by ERC_Research. Please repost!! #compchem #compbio Info 👇 research.pasteur.fr/b/15Hr
research.pasteur.fr
One PhD thesis in integrative structural biology | Research - Institut Pasteur
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Martin Vögele @martinvoegele.bsky.social · 06/12/2024
Another deep-learning approach to sample conformational ensembles of proteins: BioEmu, out of Microsoft Research. www.biorxiv.org/content/10.1...
biorxiv.org
Scalable emulation of protein equilibrium ensembles with generative deep learning
Following the sequence and structure revolutions, predicting the dynamical mechanisms of proteins that implement biological function remains an outstanding scientific challenge. Several experimental t...
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Olexandr Isayev 🇺🇦 🇺🇸 @olexandr.bsky.social · 06/12/2024
While dockers are keep docking (now with diffusion and AI😀), Pat Walters and Ajay Jain show sobering assessment of ‘perceived’ accuracy of such methods! Diffdock shots fired 🔥 The conclusion is totally worth reading in full! #chemsky #compchemsky arxiv.org/abs/2412.02889
arxiv.org
Deep-Learning Based Docking Methods: Fair Comparisons to Conventional Docking Workflows
The diffusion learning method, DiffDock, for docking small-molecule ligands into protein binding sites was recently introduced. Results included comparisons to more conventional docking approaches, wi...
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Andrea Pasquadibisceglie @andpdb.bsky.social · 02/12/2024
#CASP16 Does anyone know if the results for the ensemble category will be available at some point?
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Torsten Schwede @torstenschwede.bsky.social · 02/12/2024
Assessors’ conclusions of the 3D category (individual protein chains) of #CASP16 🧪
Conclusions of assessment of 3D category
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Torsten Schwede @torstenschwede.bsky.social · 01/12/2024
#CASP16 results are online at the prediction center website - conference starting tomorrow evening. Have a safe trip - see you soon! predictioncenter.org/casp16/
predictioncenter.org
Home - CASP16
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