Fernando Gomez-Herreros Lab @fgh-lab.bsky.social · 01/07/2026High demand! Please find the registration information at the previous link. Reduced registration fees are available for students and early-career postdoctoral researchers. 000
Fernando Gomez-Herreros Lab @fgh-lab.bsky.social · 16/06/2026Hi Nimrat! I am afraid there will be no online option. I am very sorry. 000
Fernando Gomez-Herreros Lab @fgh-lab.bsky.social · 16/06/2026Very excited to announce the workshop "DNA–Protein Crosslinks: Mechanisms and Links to Rare Genetic Disorders", which will take place in Baeza (Spain) from 18–20 November 2026! www.unia.es/estudios-y-a... 243
Fernando Gomez-Herreros Lab @fgh-lab.bsky.social · 03/02/2026Muy contentos de que nuestro último trabajo haya sido elegido como artículo del mes de febrero por la @sebbm.bsky.social @ibis-investigacion.bsky.socialsebbm.esH263A and SCAN1/H493R mutant TDP1 block TOP1-induced double-strand break repair during gene transcription in quiescent cells and promote cell death 022
Fernando Gomez-Herreros Lab @fgh-lab.bsky.social · 01/12/2025Terrific work of Diana Rubio-Contreras and Daniel Hidalgo-García 000
Fernando Gomez-Herreros Lab @fgh-lab.bsky.social · 01/12/2025These results support the potential role of TOP1-induced DSBs as a main contributor to certain hereditary neurological syndromes. 100
Fernando Gomez-Herreros Lab @fgh-lab.bsky.social · 01/12/2025We demonstrate that TDP1 catalytic mutations H263A and H493R (SCAN1), promote TOP1 cleavage complexes and TDP1-DNA covalent complexes respectively generating persistent TOP1-induced DSBs on quiescent cells. TDP1 mutants result in increased genome instability and reduced cell viability. 100
Fernando Gomez-Herreros Lab @fgh-lab.bsky.social · 01/12/2025New manuscript from the lab on @cddpress " H263A and SCAN1/H493R mutant TDP1 block TOP1-induced Double-Strand Break Repair during gene transcription in quiescent cells and promote cell death". rdcu.be/eSxtG @ibis-investigacion.bsky.social @unisevilla.bsky.socialrdcu.beH263A and SCAN1/H493R mutant TDP1 block TOP1-induced double-strand break repair during gene transcription in quiescent cells and promote cell deathCell Death & Disease - H263A and SCAN1/H493R mutant TDP1 block TOP1-induced double-strand break repair during gene transcription in quiescent cells and promote cell death 162
Reposted by Fernando Gomez-Herreros LabPablo Huertas’ lab @pablohuertaslab.bsky.social · 01/12/2025Finally published! Our work on how the #CircadianClock controls DNA repair. This has direct implications for cancer treatment: #Chronotherapy. @CABIMER @UniSevilla rdcu.be/eSwxlrdcu.beCircadian regulation of homologous recombination by cryptochrome1-mediated dampening of DNA end resectionNature Communications - The study shows that DNA double-strand break repair follows a circadian rhythm: homologous recombination peaks in the morning and declines by evening. CRY1 regulates CCAR2... 3187
Reposted by Fernando Gomez-Herreros LabRafa Lucena @biologucho.bsky.social · 01/12/2025Our new preprint is out! Great work from Nacho Quesada during his TFG/TFM in our lab, where we found some interesting data on ceramide structure and TORC2 signaling in response to nutrients. Thanks to Anita and Maria Alcaide-Gavilan for helping! www.biorxiv.org/content/10.1...biorxiv.orgUncoupling of nutrient sensing and cell size control by specific defects in ceramide structureCeramides are essential structural lipids whose chemical diversity arises from variations in acyl-chain length and sphingoid base modifications, yet how these structural features couple metabolic stat... 252
Reposted by Fernando Gomez-Herreros LabDiana Rubio-Contreras @diana-rubio.bsky.social · 01/12/2025Excited to see our research published!! 🎉 Amazing project in @fgh-lab.bsky.social at @ibis-investigacion.bsky.social "H263A and SCAN1/H493R mutant TDP1 block TOP1-induced double-strand break repair during gene transcription in quiescent cells and promote cell death" www.nature.com/articles/s41... 032
Reposted by Fernando Gomez-Herreros LabCortésLab @corteslab.bsky.social · 04/10/2025Kickstarting our Bluesky🦋 account with great news! Our REPAIRome study finally out today in @science.org www.science.org/doi/10.1126/...science.orgA comprehensive genetic catalog of human double-strand break repairThe analysis of DNA sequence outcomes provides molecular insights into double-strand break (DSB) repair mechanisms. Using parallel in-pool profiling of Cas9-induced insertions and deletions (indels) w... 77727
Reposted by Fernando Gomez-Herreros LabGenome Damage and Stability Centre (GDSC) @gdsc-sussex.bsky.social · 03/09/2025#New-Paper Rass laboratory reveal DNA2 to be a gatekeeper to homologous recombination at stalled DNA replication forks, rrequired to stave off cellular senescence. Their findings provide a molecular explanation for the association of DNA2 with primordial dwarfism and cancer. doi.org/10.1038/s415...doi.orgDNA2 enables growth by restricting recombination-restarted replication - NatureDNA2 suppresses recombination-restarted replication and checkpoint activation at stalled forks, and its loss triggers recombination-dependent synthesis, checkpoint signalling and cell-cycle exit, high... 0129
Fernando Gomez-Herreros Lab @fgh-lab.bsky.social · 29/07/2025👉EWS::FLI1 modulates R-loop metabolism via DHX9, driving increased vulnerability to TOP1-targeting agents. 👉Targeting TOP1 in EWS cells destabilizes the genome and provokes strong replication stress and cell death in EwS cells and tumors Grateful to all collaborators who made this work possible! 010
Fernando Gomez-Herreros Lab @fgh-lab.bsky.social · 29/07/2025Our latest study is now online! A great collaboration between the @fgh-lab.bsky.social and @enriquedealava.bsky.social Labs, driven by the outstanding work of J. Olmedo-Pelayo at @ibis-investigacion.bsky.social Check it out!nature.comEWS::FLI1-DHX9 interaction promotes Ewing sarcoma sensitivity to DNA topoisomerase 1 poisons by altering R-loop metabolism - OncogeneOncogene - EWS::FLI1-DHX9 interaction promotes Ewing sarcoma sensitivity to DNA topoisomerase 1 poisons by altering R-loop metabolism 183
Reposted by Fernando Gomez-Herreros LabRomán González-Prieto @romangp.bsky.social · 28/04/2025New preprint from the Lab at @cabimer.bsky.social. We present PLAMseq, using TurboID to do like ChIPseq and proximity proteomics in the same protocol with extra powers like mapping protein interactions in the genome. www.biorxiv.org/content/10.1...biorxiv.orgPLAMseq enables the proteo-genomic characterization of chromatin-associated proteins and protein interactions in a single experimental workflow.Chromatin Immunoprecipitation (ChIP) and Co-Immunoprecipitation (CoIP) assays are the most common approaches to characterize the genomic localization and protein interactors, respectively, for a prote... 12210