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Boyan Bonev

@boyanbonev.bsky.social
410 followers 198 following 25 posts

Group Leader at Helmholtz Center Munich * Brain Epigenomics

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Reposted by Boyan Bonev
Helmholtz Munich @helmholtzmunich.bsky.social · 20/05/2026
#M1 Launches First Funding Period & Advances Translation in Munich🚀 Seven projects receive €7.45 million through the M1 – Munich Medicine Alliance. #HelmholtzMunich is involved in four funded projects. 👉 t1p.de/disle @tum.de @lmu.de @boyanbonev.bsky.social @erturklab.bsky.social #MunichMedicine
M1 Launches First Funding Period & Advances Translation in Munich
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Enard/Hellmann Lab @enardhellmannwg.bsky.social · 25/11/2025
Out now: we’re happy to share our new preprint on CroCoNet (Cross-species Comparison of Networks), a framework for robust comparative network analyses. 👉 doi.org/10.1101/2025...
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Alex Pollen @brainevodevo.bsky.social · 07/11/2025
Our new manuscript, led by Emily Corrigan, examines inhibitory neuron diversity across approximately 160 million years of evolutionary divergence, as part of BRAIN Initiative Cell Atlas Network (BICAN) developing brain atlas package: www.nature.com/articles/s41...
nature.com
Conservation and alteration of mammalian striatal interneurons - Nature
An analysis of cell-type diversity in brain samples from a variety of mammalian species, both during development and in adult animals, reveals that the TAC3 initial class of striatal interneurons is c...
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Boyan Bonev @boyanbonev.bsky.social · 05/11/2025
🚀 𝗣𝗼𝘀𝘁𝗱𝗼𝗰 𝗢𝗽𝗲𝗻𝗶𝗻𝗴 We’re recruiting an ERC-funded Postdoctoral Researcher to explore how 3D gene regulatory networks evolved during human and primate brain development, using cutting-edge single-cell multiomics, organoid models, and CRISPR screens. 👉 Apply by Nov 30 | www.bonevlab.com/join
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The Hassan Brain Development Team @hassanbraindevlab.bsky.social · 28/10/2025
A wonderful collaboration with @alexbaffet.bsky.social @boyanbonev.bsky.social and @neurogenesis-i3s.bsky.social labs
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Hamperl Lab @hamperllab.bsky.social · 04/08/2025
Our latest research is online in the @biorxivpreprint.bsky.social! 🧬🎉 🔎 We have developed a novel, single-cell real-time approach to monitor R-loop generated TRCs, and we have shown R-loop-mediated, replisome-controlled transcription repression. www.biorxiv.org/cgi/content/...
biorxiv.org
Replisome progression regulates R-loop mediated transcriptional repression
Maintaining cellular proliferation necessitates the synchronized activity of diverse molecular machineries operating in parallel on the genome. Wide-spread transcription and R-loop formation can inter...
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ME Torres-Padilla @metorrespadilla.bsky.social · 15/07/2025
🎤 Apply to speak @our TALENT FORUM by July 31! Showcase YOUR research in Epigenetics & NucleicAcids @www.helmholtz-munich.de & connect with leading scientists 🧳Travel+accommodation covered if selected! 📝 Info+how to apply: lnkd.in/drkRvz7N #postdoc #career #groupleader #HelmholtzMunich #research
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Christian Mayer @chr-mayer.bsky.social · 08/07/2025
Now out in @natneuro.nature.com: Temporal control of progenitor competence shapes maturation in GABAergic neuron development in mice. Congrats to first authors @annrosebright.bsky.social, Yana Kotlyarenko, @flo-neuhaus.bsky.social, and thanks to all collaborators! www.nature.com/articles/s41... 1/n
nature.com
Temporal control of progenitor competence shapes maturation in GABAergic neuron development in mice - Nature Neuroscience
Unlike cortical progenitors, ventral telencephalic progenitors retain the ability to generate diverse neuron types during neurogenesis. Here, the authors show that ventral telencephalic progenitor mat...
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ME Torres-Padilla @metorrespadilla.bsky.social · 12/06/2025
Are you @ the late stages of your postdoc ? Want to pursue a PI career ? Then this 👇👇 is for you ! Apply for a spot @ our Talent Forum www.helmholtz-munich.de/en/stem-cell... Peer-networking / Career orientation and more !!! Please distribute :) 🙂
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Lars Velten @larsplus.bsky.social · 08/05/2025
Out in Cell @cp-cell.bsky.social: Design principles of cell-state-specific enhancers in hematopoiesis 🧬🩸 screen of fully synthetic enhancers in blood progenitors 🤖 AI that creates new cell state specific enhancers 🔍 negative synergies between TFs lead to specificity! www.cell.com/cell/fulltex... 🧵
cell.com
Design principles of cell-state-specific enhancers in hematopoiesis
Screen of minimalistic enhancers in blood progenitor cells demonstrates widespread dual activator-repressor function of transcription factors (TFs) and enables the model-guided design of cell-state-sp...
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Arnau Sebé-Pedrós @arnausebe.bsky.social · 07/05/2025
Check out our latest work on the evolution of animal genome regulation out today in @nature.com. Nicely summarized below by @ianakim.bsky.social. www.nature.com/articles/s41... This is a major output from our ERC-StG project Evocellmap @erc.europa.eu at @crg.eu
nature.com
Chromatin loops are an ancestral hallmark of the animal regulatory genome - Nature
The physical organization of the genome in non-bilaterian animals and their closest unicellular relatives is characterized; comparative analysis shows chromatin looping is a conserved feature of ...
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Epigenetics Podcast @epigeneticspod.bsky.social · 14/04/2025
In the most recent episode we talked with @boyanbonev.bsky.social from @bonevlab.bsky.social at @epihmgu.bsky.social about his work on neuroepigenetics, focusing on gene regulation, chromatin architecture, and primate epigenome evolution. #epigenetics Listen here: activemotif.com/podcasts-boy...
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Boyan Bonev @boyanbonev.bsky.social · 04/04/2025
Can a stem cell change its epigenome while proliferating? In collaboration with the lab of Amos Tanay, we demonstrate that yes, the epigenome of neural stem cells (NSCs) is continuously remodeled, across multiple layers, during mouse corticogenesis. 1/14 www.biorxiv.org/content/10.1...
biorxiv.org
Neural stem cell epigenomes and fate bias are temporally coordinated during corticogenesis
The cerebral cortex orchestrates complex cognitive functions, yet how its distinct temporal lineages are molecularly patterned during development remains unresolved. Here, we integrate single-cell tra...
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Ludovico Rizzuti @ludoritz.bsky.social · 03/04/2025
I'm happy to share our work on the neurodevelopmental impact of ADNP mutations in ASD and beyond. It has been an exciting ride to share with @alessandrovitriolo.bsky.social, Mariana, and the people of the Testa and Poot Labs. Full paper here: www.biorxiv.org/content/10.1... Thread below 🧵
biorxiv.org
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Kaessmann Lab @kaessmannlab.bsky.social · 16/03/2025
How does gene regulation shape brain evolution? Our new preprint dives into this question in the context of mammalian cerebellum development! rb.gy/dbcxjz Led by @ioansarr.bsky.social, @marisepp.bsky.social and @tyamadat.bsky.social, in collaboration with @steinaerts.bsky.social
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mareikealbert.bsky.social @mareikealbert.bsky.social · 13/03/2025
💫 New preprint from the lab: Comparing great ape cerebral organoids, we found that human-specific morphoregulatory signatures in basal radial glia characterise neocortex evolution. Fantastic work from super-talented PhD student Theresa Schütze! www.biorxiv.org/content/10.1...
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Boyan Bonev @boyanbonev.bsky.social · 13/03/2025
🚨New preprint from @bonevlab.bsky.social 🚨: What are the key epigenetic mechanisms that drive species-specific gene regulation during primate neurogenesis - and how do they contribute to the evolution of the human neocortex? Here’s what we discovered 👇 www.biorxiv.org/content/10.1...
biorxiv.org
3D Epigenome Evolution Underlies Divergent Gene Regulatory Programs in Primate Neural Development
The expansion of the neocortex is a hallmark of human evolution and is closely linked to neural stem cell biology. Yet, the epigenetic mechanisms driving divergent gene regulation during primate neuro...
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