Sign in

Jesus Alvarado-Valverde

@jesusav.bsky.social
52 followers 72 following 3 posts

(He/Him) Science - Biology - Evolution Postdoctoral researcher at IMB, Mainz Protein bioinformatics: AlphaFold, PPIs and motif research

PostsRepliesMedia
Reposted by Jesus Alvarado-Valverde
Alberto Hernandez-Armendariz @aharmendariz.bsky.social · 25/03/2026
Extremely happy to see this wonderful story out! 🔬 Here, we describe how Ki-67 anchors chromatin to nucleoli, leading them to acquire irregular shapes!!! 🫧🧬 This great story was led by Daja Schichler & Yuki Hayashi from the Cuylen Lab @embl.org link.springer.com/article/10.1...
link.springer.com
Ki-67 shapes the nucleolus by anchoring chromatin via its amphiphilic properties - The EMBO Journal
The nucleolus, a membrane-less organelle essential for ribosome biogenesis, adopts variable shapes across cell types and in response to environmental conditions, yet the mechanisms regulating its morp...
0166
Reposted by Jesus Alvarado-Valverde
Karolina Kuodyte @kuodyte.bsky.social · 04/02/2026
I’m very excited to share that our paper has been recently published in Cell Stem Cell! 🎉 🧫 In this study, using high-content imaging–based organoid screening, we discovered growth media conditions that drive differentiation into functional pancreatic acinar cells. doi.org/10.1016/j.st...
1134
Reposted by Jesus Alvarado-Valverde
Max Planck Institute of Molecular Cell Biology and Genetics @mpi-cbg.de · 21/01/2026
The group of @anne-grapin.bsky.social developed methods to create functional acinar cells, which are involved in the formation of pancreatic cancer. Rashmiparvathi Keshara, Karolina Kuodyte, and the TDS facility used image-based screen & robust analysis pipeline. www.mpi-cbg.de/news-outreac...
mpi-cbg.de
Making human pancreatic acinar cells
Dresden researchers develop novel methods to create acinar cells, which are involved in the formation of pancreatic cancer.
2146
Jesus Alvarado-Valverde @jesusav.bsky.social · 14/01/2026
New preprint! Here, we highlight the role of motifs during the Toxoplasma host cell invasion, predict thousands of motifs in its effector proteins, and validate the binding of TRAF6 motifs. Our results are intended to catalyse further research on motifs and parasites. www.biorxiv.org/content/10.6...
biorxiv.org
Short linear motifs - Unexplored players driving Toxoplasma gondii infection
Pathogens infect hosts by interacting with host proteins and exploiting their functions to their advantage. Short linear motifs, small functional regions within intrinsically disordered protein regions, are common mediators of host-pathogen protein interactions. While motifs have been more extensively studied in viruses and bacteria, the extent to which eukaryotic unicellular parasites use motifs during infection remains unexplored. Toxoplasma gondii is a widespread intracellular Apicomplexan parasite capable of infecting all warm-blooded animals and invading any of their nucleated cells. Toxoplasma's secreted proteins are key in interacting with host proteins during infection, making them potential sources for motifs. To highlight the role of motifs in Toxoplasma gondii infection, we curated 20 known motif instances in Toxoplasma proteins from the scientific literature. To identify more motifs in Toxoplasma secreted proteins, we developed a computational pipeline that annotates putative motif matches with structural and functional features. Through this approach, we identified a set of 27,832 motif matches in 296 secreted proteins. We highlight strategies for further prioritisation of likely functional motif matches by focusing on integrin motifs, degrons and TRAF6-binding motifs. We subjected four predicted TRAF6-binding motifs to experimental validation, supporting the predicted motifs in the Toxoplasma proteins RON10 and GRA15. Our motif predictions provide a valuable resource for generating hypotheses and designing experiments to study infection mechanisms. The characterisation of motifs in Toxoplasma will be key to understanding the molecular principles underlying its broad host range and more comprehensive Apicomplexan infection strategies. ### Competing Interest Statement The authors have declared no competing interest. Deutsche Forschungsgemeinschaft, 449991970
163
Reposted by Jesus Alvarado-Valverde
Natalie Bennett @nataliegreenpeer.bsky.social · 06/12/2025
Really important discussion also applicable to UK research funding: the application system is enormously wasteful of time, energy and talents
01610
Jesus Alvarado-Valverde @jesusav.bsky.social · 08/12/2025
During host cell invasion, Toxoplasma mimics the FFAT motif and repurposes it to associate its parasitophorous vacuole to the endoplasmic reticulum! I'm happy to have been part of this work! Congratulations to Chahat Mehra and Lena Pernas for all the hard work! www.nature.com/articles/s41...
nature.com
Toxoplasma effector TgROP1 establishes membrane contact sites with the endoplasmic reticulum during infection - Nature Microbiology
The Toxoplasma gondii effector TgROP1 mimics host factors to bind VAPA/B, thereby establishing parasite–host ER contact sites.
042
Reposted by Jesus Alvarado-Valverde
Nature Microbiology @natmicrobiol.nature.com · 26/11/2025
#NewResearch The Toxoplasma gondii effector TgROP1 mimics host factors to bind VAPA/B, thereby establishing parasite–host ER contact sites. #MicroSky 🦠 www.nature.com/articles/s41...
nature.com
Toxoplasma effector TgROP1 establishes membrane contact sites with the endoplasmic reticulum during infection - Nature Microbiology
The Toxoplasma gondii effector TgROP1 mimics host factors to bind VAPA/B, thereby establishing parasite–host ER contact sites.
075
Jesus Alvarado-Valverde @jesusav.bsky.social · 01/07/2025
Check out our latest research! Using a motif predictor and AlphaFold models, we designed experiments to validate their interaction interfaces and tested the effects of uncharacterized variants on binding, then predicted the effects of hundreds of them. www.biorxiv.org/content/10.1...
biorxiv.org
Variant characterization in the intrinsically disordered human proteome
Variant effect prediction remains a key challenge to resolve in precision medicine. Sophisticated computational models that exploit sequence conservation and structure are increasingly successful in t...
021
Reposted by Jesus Alvarado-Valverde
PMC Protein Modules Community @pmc-modularity.bsky.social · 09/05/2025
Remember to tune it at 6pm CET May 12 for the next seminar in our series with Prof. Tony Hunter (@salkinstitute.bsky.social) and Dr. Jesús Alvarado-Valverde (@jesusav.bsky.social). Register to attend: tinyurl.com/PMCseminar2
tinyurl.com
Welcome! You are invited to join a webinar: PMC seminar series. After registering, you will receive a confirmation email about joining the webinar.
Welcome! You are invited to join a webinar: PMC seminar series. After registering, you will receive a confirmation email about joining the webinar.
042
Reposted by Jesus Alvarado-Valverde
PMC Protein Modules Community @pmc-modularity.bsky.social · 24/04/2025
Join us at 6pm CET May 12 for the next seminar in our series with Prof. Tony Hunter (@salkinstitute.bsky.social) and Dr. Jesús Alvardo Valverde (@jesusav.bsky.social). Register to attend: tinyurl.com/PMCseminar2 (1/2)
185