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Natalia Benetti

@nataliabenetti.bsky.social
141 followers 240 following 9 posts

MSCA Postdoc @stemundi.bsky.social @molgen.mpg.de 🧬 | lncRNAs, epigenetics, development, evolution | PhD @marnieblewitt.bsky.social @wehi-research.bsky.social | she/her :)

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Reposted by Natalia Benetti
Teresa Rayon @trayon.bsky.social · 12/09/2026
‼️ Postdoc position open. We study how protein metabolism controls time. If you’re excited by this question, we’d love to hear from you! We’re looking for a motivated & collaborative researcher with a strong track record. 📅 30 September 2026 📢 Please share Apply here 👇👇
babraham.current-vacancies.com
Postdoctoral Research Scientist - Babraham
The lab investigates the molecular mechanisms that control biological timing in mouse and human stem cells (Azzi & Rayon, Curr Opinions 2024; Nakanoh et al., Dev Cell 2026). The central aim of this ex...
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canaztekin.bsky.social @canaztekin.bsky.social · 07/09/2026
Our step-by-step protocol for generating mesodermal/limb bud organoids (“budoids”) from mouse stem cells or primary limb buds is now out! 🧫🦵 We hope it makes the system easier to adopt and build on in other labs! bio-protocol.org/en/bpdetail?...
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Arnaud Krebs @arnaudkr.bsky.social · 12/08/2026
How many TFs to you need to open chromatin at enhancers? Very excited to see this one out! Check out the augmented version with combinatorial motif mutant libraries in Figure 5! Very proud of @guidobarzaghi.bsky.social @valentinabaderna.bsky.social @embl.org
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Ekin Deniz Aksu @ekindea.bsky.social · 15/07/2026
I'm excited to share that Corgi is out in @natcomms.nature.com! We refine context-aware sequence-to-function models by using FiLM to condition the model on trans-regulator expression levels. This way Corgi can generalize to unseen cell types. www.nature.com/articles/s41... 🧵Thread 1/n
nature.com
Context-aware sequence-to-function model of human gene regulation - Nature Communications
This study introduces Corgi and Corgi+ , biology-inspired deep neural network models of regulatory DNA sequences that can generalize to unseen cell types. They accurately impute epigenomic d...
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Shiv Grewal @grewalsh.bsky.social · 08/07/2026
Introns have a hidden regulatory role! 🧬🎉 Delighted to share our latest paper showing that inefficiently spliced introns and spliceosomal proteins direct RNA methylation, engaging RNAi to silence retrotransposons and regulate gene expression nature.com/articles/s41...
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Maxim Greenberg @maxvcg.bsky.social · 08/07/2026
This is brilliant! www.nature.com/articles/s41...
nature.com
Identifying critical lysines in mammalian histone H3 with high-throughput CRISPR prime editing - Nature Genetics
This study uses a precise and efficient clustered regularly interspaced short palindromic repeats (CRISPR) prime editing system to substitute lysine residues in histone H3, individually or in combinat...
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María Mariner @mariamafau.bsky.social · 19/05/2026
🚨Happy to share a new PreLight covering the latest #preprint by the Meissner lab (@molgen.mpg.de) on acute SUZ12 degradation during TLS formation. A work brilliantly executed by @dannimklee.bsky.social et al. Get to know more about him and his work here ⤵️ prelights.biologists.com/highlights/t...
prelights.biologists.com
Temporal degradation of PRC2 uncovers specific developmental dependencies - preLights
Pairing acute SUZ12 degradation + simplified embryoids, Ming-Kang Lee et al. pinpoint time-dependent sensitivities to PRC2 loss. A meticulous experimental approach applicable to the functional stage-s...
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Igor Ulitsky @igorulitsky.bsky.social · 15/05/2026
Now out @natbiotech.nature.com ! Do lncRNAs commonly bind 1000s of genomic sites? Maybe they do, but the dozens of studies that report genomic binding maps of lncRNAs are deeply flawed, with probes binding suprious DNA sites rather than RNA-bound ones.
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Aydan Bulut-Karslioglu @bulutkarslioglu.bsky.social · 03/05/2026
Very excited to share our newest findings! A very long team effort pursued by multiple team members -to frantically reproduce everything over and over-, we show mTOR-Polycomb synergy at promoters of developmental master regulator TFs in ESCs prior to their expression. www.biorxiv.org/content/10.6...
biorxiv.org
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Marco Jochem @marcojochem.bsky.social · 23/04/2026
Interested in non-proteinaceous ubiquitination, induced proximity or glycogen? Then you should have a look at our newest article, “Ubiquitination of glycogen and metabolites in cells and tissues”, just published in Nature: www.nature.com/articles/s41...
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Daniel MK Lee @dannimklee.bsky.social · 24/04/2026
New Preprint alert!🚨 Super excited to share my postdoc work now on BioRxiv. How does PRC2 loss lead to developmental failures? We combined rapid protein degradation with TLS embryoid models to uncover temporal and lineage-specific dependencies 🧬. Preprint: doi.org/10.64898/2026.04.18.719361
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Max Planck Institute for Molecular Genetics @molgen.mpg.de · 07/04/2026
Raquel Fueyo's lab studies the impact of transposons on human embryonic development and disease. We talked with her about what drew her to this field, her lab's work culture, and how she finds inspiration for her science in art. @fueyoraquel.bsky.social Read more: www.molgen.mpg.de/news-2026-in...
molgen.mpg.de
"I find artists' creativity inspiring, and I hope to apply some of it to science"
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Max Planck Institute for Molecular Genetics @molgen.mpg.de · 22/04/2026
Johannes Stein's new lab at the MPIMG will use microscopy to study the organization of the genome at a molecular level. We talked to him about how, despite being a trained physicist, he ended up in biology, the potential of his research and the power of interdisciplinary teams. @jmstein.bsky.social
molgen.mpg.de
A nanoscopic look at gene regulation
Johannes Stein joined the MPIMG in 2025. His lab will use state-of-the-art microscopy techniques to examine the organisation of the genome at a molecular level. We talked to him about how, despite bei...
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MRC Laboratory of Medical Sciences @mrc-lms.bsky.social · 16/04/2026
A new study shows how different regulatory genetic elements control when a key developmental gene is active in the body. The findings could explain subtle differences seen in patients with congenital limb malformations, for which the underlying disease mechanisms often remain unknown.
lms.mrc.ac.uk
Waves of regulation control an important developmental gene
In a new study published in Genes & Development, research led by Dr Lila Allou at the MRC Laboratory of Medical Sciences (LMS) in London and Professor Stefan Mundlos at the Max Planck Institute for Mo...
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Elzo de Wit lab @ NKI @dewitlab.bsky.social · 18/03/2026
🧵 CTCF is essential for embryonic development, but why has remained unclear. By combining gastruloids with a temporal degron system, we uncovered a surprising dual function — and it changes how we think about CTCF's role in development. 1/8 www.biorxiv.org/content/10.6...
biorxiv.org
A dual role for CTCF in development
CTCF is an essential DNA binding protein whose absence leads to embryonic lethality. CTCF is primarily known for its role in 3D genome organization where its N-terminal domain interacts with cohesin to anchor chromatin loops. How CTCF facilitates proper embryonic development remains unclear, necessitating temporal control to resolve its stage-specific functions. By combining gastruloids, an in vitro model of embryonic development, with a degron system to rapidly deplete CTCF at defined timepoints, we show that early CTCF depletion impairs early gastruloid morphogenesis. Surprisingly, ATAC-seq and time-resolved RNA-seq revealed that differentiation was unaffected. CTCF binding is strongly enriched at promoters of downregulated genes. Re-expression of a CTCF variant with an N-terminal truncation, incapable of looping, was sufficient to rescue the expression of CTCF-promoter bound genes and the defects in morphogenesis. However, extended culture (up to 168 hours) of gastruloids reconstituted with N-terminal truncated CTCF led to their collapse. Our work shows that CTCF has a dual function in early mammalian development: at early stages CTCF regulates developmentally important genes through promoter binding, while at later stages its looping function is required for correct development. ### Competing Interest Statement The authors have declared no competing interest. European Research Council, https://ror.org/0472cxd90, 637587, 865459 Dutch Research Council, https://ror.org/04jsz6e67, 016.161.316, VI.C.222.049 Dutch Cancer Society, https://ror.org/0368jnd28, N/A
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Jonathan Froehlich @jjfroehlich.bsky.social · 11/03/2026
I started Awesome Life Science Resources: a curated list of resources on work culture, career, and communication for life scientists. Built for PhD students, postdocs, and PIs. Check it out: github.com/jjfroehlich/...
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Maxim Greenberg @maxvcg.bsky.social · 09/03/2026
Very excited to announce the FIRST symposium on epigenome editing! These tools are becoming widely used in mol bio, ag & therapy. It's time to bring leaders together to discuss this rapidly growing and exciting field. And why not in Paris! Please register & share! (1/2) ctrlepiedit.sciencesconf.org
Flyer for symposium: https://ctrlepiedit.sciencesconf.org/
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Chen Davidovich @davidovichlab.bsky.social · 04/03/2026
1/ 🧵 In our new paper, we show that JARID2 and PALI1 mimic H3K27me3 to antagonise PRC2. www.cell.com/molecular-ce...
cell.com
Accessory subunits of PRC2 mimic H3K27me3 to restrict the spread of Polycomb domains
Some proteins mimic the repressive mark H3K27me3, but the physiological relevance of this phenomenon was unclear. Agius et al. show that the PRC2 subunits JARID2 and PALI1 mimic H3K27me3 to antagonize...
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Michael Hiller @hillermich.bsky.social · 28/02/2026
Happy to share that our work with Ekaterina Osipova, @maggiemcko.bsky.social, Tim Sackton, Maude Baldwin & fantastic collaborators on convergent and lineage-specific genomic adaptations in sugar-feeding birds is published in Science www.science.org/doi/10.1126/.... While high sugar intake ...
science.org
Convergent and lineage-specific genomic changes shape adaptations in sugar-consuming birds
High-sugar diets cause human metabolic diseases, yet several bird lineages convergently adapted to feeding on sugar-rich nectar or fruits. We investigated the underlying molecular mechanisms in hummin...
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Daniel Ibrahim @danielibrahim.bsky.social · 27/02/2026
We wrote a piece on how easy it is to write gene regulatory sequences. - Turns out, it isn't that easy even though we know a lot about cis-regulation. huge credit to @carldeboer.bsky.social to seeing this through so our thoughts aren't lost. I promise, it's a worthwhile read!
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Raquel Fueyo @fueyoraquel.bsky.social · 17/02/2026
Looking forward to it!
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James Murphy @pseudokinase.bsky.social · 06/02/2026
This is a cool study that you should all read. Full credit to the key agitator, Alexandra Gurzau, and noting not possible without amazing collaborators, and another fun effort for me, personally, with long time collab @marnieblewitt.bsky.social
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Marnie Blewitt @marnieblewitt.bsky.social · 06/02/2026
Our new preprint on SMCHD1! We’ve shown SMCHD1’s ATPase activity is critical for function in vivo, and excitingly a new DNA binding domain neighbouring the ATPase domain activates the enzymatic function, which is important for normal chromatin binding. urldefense.com/v3/__https:/...
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Edda Schulz @eddaschulz.bsky.social · 20/01/2026
⚠️ The final work of two former PhD students Till @tschwammle.bsky.social and Verena @verenamutzel.bsky.social is out! ➡️⬅️ They dissect how memory can arise from antisense transcription using mathematical modelling 💻, genomics 🧬 and synthetic biology ⚒️! link.springer.com/article/10.1...
link.springer.com
Antisense transcription can induce expression memory via stable promoter repression - Genome Biology
Background The capacity of cells to retain a memory of previous signals enables acquisition of unique fates and adaptation to their environment. The underlying gene expression memory can arise from mu...
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Guillaume Andrey @guandrey.bsky.social · 12/01/2026
Our work on #RegulatoryTrajectories is out today in Nat. Comms: www.nature.com/articles/s41... Led by @raquelrouco.bsky.social, this study establishes a new framework to study how enhancer landscapes act sequentially at developmental loci and are silenced to shape gene expression patterns. (1/n)
nature.com
Client Challenge
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Naomi Moris @nmoris.bsky.social · 16/12/2025
Lovely little pre-Christmas present to see this out @natcellbio.nature.com! Some 🔥 new results in here since the biorvix incl (1) a new RARE-GFP reporter ✳️🙌, (2) additional NMP quantification 🔢, (3) no neural tube patterning on RA inhibition 🙅 etc. Enjoy! 😍 www.nature.com/articles/s41...
nature.com
Modelling co-development between the somites and neural tube in human trunk-like structures - Nature Cell Biology
Makwana, Tilley et al. generate human stem cell-based trunk-like structures approximating Carnegie stage 13–14 of development. They use them to model and study the development of the thoracic and lumbar trunk.
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Rhys Allan @rhyscienceallan.bsky.social · 02/09/2025
I am excited to share our latest study by Sara Quon in collaboration with @ajithvasanthan.bsky.social entitled “The lncRNA Dreg1 is required for optimal ILC2 development” www.biorxiv.org/content/10.1...
biorxiv.org
The long non-coding RNA Dreg1 is required for optimal ILC2 development
Gata3 is an essential transcription factor for the development of several distinct immune cell lineages such as T cells, natural killer (NK) cells and innate lymphoid cells (ILC). As such, the levels ...
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Natalia Benetti @nataliabenetti.bsky.social · 11/12/2025
Come do your PhD with @stemundi.bsky.social and me to uncover mechanisms of lncRNA function using cutting-edge techniques in vivo! 🧬 Project and application details below 👇
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Rob Klose @robklose.bsky.social · 11/12/2025
An early Christmas present for those interested in chromatin and transcription! Fantastic work from @au-ho-yu.bsky.social and @aleksszczurek.bsky.social . Thanks to Inge and Michiel for their help. Please repost! www.biorxiv.org/content/10.6...
biorxiv.org
SET1/MLL complexes control transcription independently of H3K4me3
Histone H3 lysine 4 trimethylation (H3K4me3) at gene promoters is thought to play a central role in gene transcription. H3K4 methylation is deposited by the SET1 (A/B) and MLL (1-4) multi-protein comp...
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Elphege Nora Lab at UCSF @elphegenoralab.bsky.social · 27/11/2025
Here is a copy of last year's Twitter thread explaining our preprint - jump to (21) for the new stuff 👀 Synergy between cis-regulatory elements can render cohesin dispensable for distal enhancer function now revised and journal accepted at www.science.org/doi/10.1126/... 🧵👇
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Bryony Leeke @bryonyleeke.bsky.social · 27/11/2025
Join @mpercharde.bsky.social Lab at the MRC LMS! We have an 18mo postdoc position to cover a couple of projects (maternity leave and paper revisions). The projects are focussed on chromatin in early mouse embryos and metabolism in mouse embryonic stem cells and pluripotency.
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EMBL Events @events.embl.org · 14/11/2025
Come discuss recent breakthroughs in RNA biology, from molecules to organisms, at the EMBO | EMBL Symposium 'The complex life of RNA'! 👉 s.embl.org/ees26-12-bl Submit your abstract by 7 July and present your research at #EESRNA 🥼
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Hannah Long @hannahlong.bsky.social · 10/11/2025
📣 Paper alert! I am delighted that our paper exploring the impact of Neanderthal-derived variants on the activity of a disease-associated craniofacial enhancer has been published in Development today! journals.biologists.com/dev/article/...
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Raquel Fueyo @fueyoraquel.bsky.social · 06/11/2025
Thrilled to start my Group Leader adventure with these and other great scientists!
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Max Planck Institute for Molecular Genetics @molgen.mpg.de · 04/11/2025
🧬 Interested in dissecting dose-dependent transcriptional regulation through epigenome editing and synthetic biology for your PhD? Apply by 07.01.2026 to join the lab of @eddaschulz.bsky.social @molgen.mpg.de & #IMPRS-BAC #gradschool. 👉 www.molgen.mpg.de/5099133/schu...
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Arc Institute @arcinstitute.org · 06/11/2025
Work published today in @natbiotech.nature.com from Arc’s Luke Gilbert and Patrick Hsu labs presents a new way to insert large DNA sequences into the genome using engineered recombinases that don’t require DNA cutting or rely on the cell's repair machinery.
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James Davies @jojdavies.bsky.social · 05/11/2025
Our latest paper has just been published in Cell! doi.org/10.1016/j.ce... We developed a new method called MCC ultra, which allows 3D chromatin structure to be visualised with a 1 base pair pixel size.
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Dr. Sedona Murphy @sedonamurphy.bsky.social · 21/10/2025
Here, we show that the unique regulatory landscape of ecDNA enables an ancient LINE to resurrect and act as an enhancer of Myc. This was so fun with @katerinakraft.bsky.social and @mattjones.bsky.social and others. www.nature.com/articles/s41...
nature.com
Enhancer activation from transposable elements in extrachromosomal DNA - Nature Cell Biology
Kraft, Murphy, Jones et al. identify extrachromosomal DNA (ecDNA)-interacting elements (EIEs) enriched for transposable elements within ecDNA in colorectal cancer cells. They show that EIE 14 integrat...
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Raquel Fueyo @fueyoraquel.bsky.social · 01/10/2025
Today in @nature.com, we present our work leveraging functional genomics and human blastoids to uncover a human-specific mechanism in preimplantation development driven by the endogenous retrovirus HERVK. Special thanks to the reviewers whose comments improved our manuscript a lot! rdcu.be/eI3tD
rdcu.be
A human-specific regulatory mechanism revealed in a pre-implantation model
Nature - Genetic manipulation of blastoids reveals the role of recently emerged transposable elements and genes in human development.
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Max Planck Institute for Molecular Genetics @molgen.mpg.de · 17/10/2025
In our "Meet the First Author" series, we spoke with Magdalena Schindler and Christian Feregrino about the fascinating world of bats, how teamwork can lead to friendship, and the potential of basic research. Watch the video ⬇️ and read the full interview here: www.molgen.mpg.de/2025-16-10-m...
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Juliane Glaser @julianeg.bsky.social · 16/10/2025
What mediates enhancer-promoter compatibility? Get some answers & learn about the important of the promoter-proximal region here 👇 Congratulations @blanka-majchrzycka.bsky.social @danielibrahim.bsky.social on this beautiful work!!!!🥂🥂
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Daniel Ibrahim @danielibrahim.bsky.social · 16/10/2025
What is a promoter? And how does it work? We very happy to share our latest work trying to understand enhancer-promoter compatibility. I am very excited about the results of @blanka-majchrzycka.bsky.social, which changed the way I think about promoters www.biorxiv.org/content/10.1...
biorxiv.org
Enhancer-promoter compatibility is mediated by the promoter-proximal region
Gene promoters induce transcription in response to distal enhancers. How enhancers specifically activate their target promoter while bypassing other promoters remains unclear. Here, we find that the p...
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Edda Schulz @eddaschulz.bsky.social · 06/10/2025
⚠️ Paper alert: Using a novel CRISPR screening approach, we mapped the entire regulatory network controlling Xist—key for X-chromosome inactivation. 👉 We discover how sex and development signals are decoded at a single gene locus. www.nature.com/articles/s41... 👇 Bluetorial
nature.com
Reporter CRISPR screens decipher cis-regulatory and trans-regulatory principles at the Xist locus - Nature Structural & Molecular Biology
Here Schwämmle et al. develop CRISPR reporter screens to map transcription-factor-regulatory element interactions at the Xist locus, revealing a two-step mechanism integrating developmental and X-dosage signals to initiate X-chromosome inactivation.
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Jamie Hackett @jamiehackett.bsky.social · 27/09/2025
❓Can a father’s environmental exposures before conception influence their offspring? We systematically tackled this - identifying effects of paternal age, environment and genetics on early embryos - as well as confounding influences www.embopress.org/doi/full/10....
embopress.org
Embryonic signatures of intergenerational epigenetic inheritance across paternal environments and genetic backgrounds | The EMBO Journal
imageimagePaternal environmental exposures have been linked with modulation of phenotype and disease risk in offspring via largely unclear mechanisms. This study employs in vitro fertilization and sin...
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Hubrecht Institute @hubrechtinstitute.bsky.social · 26/09/2025
Ready to establish your own research group at the Hubrecht Institute for Molecular and Developmental Biology? We’re seeking a tenure-track group leader to develop an innovative research line within our vibrant scientific community. Learn more & apply! f.mtr.cool/jncxfqkuds
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Denis Duboule @denisduboule.bsky.social · 17/09/2025
Out today. 🙏 again to everyone for this wonderful piece of work, in particular to Aurelie @aurhin.bsky.social Chase @chasebolt.bsky.social and Brent @homeobox.bsky.social. 🙏 also to the Harris lab @fish4walking.bsky.social and @neilshubin.bsky.social @biology-unige.bsky.social @college-de-france.fr
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Luca Braccioli Lab @ UU @bracciolilab.bsky.social · 16/09/2025
Ever wondered how to get a gastruloid to grow a head? The Bulut-Karslioğlu lab figured out that by growing different stem cell aggregates in high and low oxygen and later assembling them, you can get gastruloids with a fully formed neural tube. Check out our "In preprints": doi.org/10.1242/dev....
doi.org
In preprints: gastruloids get (a)head
A major breakthrough in the field of mammalian embryology is the development of stem-cell based embryo models. Derived from pluripotent stem cells, such as embryonic stem cells or induced pluripotent ...
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Julia Batki @juliabatki.bsky.social · 14/09/2025
I am excited to announce that we are looking for a Lab Manager @fmiscience.bsky.social in Basel. If you want to be part of a growing team investigating development and tissue formation, and are enthusiastic about helping set up a new lab, please check out the role: www.fmi.ch/education-ca...
fmi.ch
Friedrich Miescher Institute, open position
Friedrich Miescher Institute, open position
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FMI science @fmiscience.bsky.social · 02/09/2025
🚨 Job Alert: we seek a Lab Manager for @juliabatki.bsky.social's new group (start Mar 2026), which will study cell fate regulation during organ development. Join the Batki's group to drive experiments & lab operations! Apply at: www.fmi.ch/education-ca...
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Anna A Monaco @annaamonaco.bsky.social · 07/09/2025
A bit late, but I finally got around to writing an accessible piece about @julianeg.bsky.social 's cover article from July. In case you needed something else to worry about in this day and age! 🦠 tinyurl.com/mrx5tfre #scicomm #devbio #transposons
tinyurl.com
Awakening monsters in the dark (genome)
Hidden in our DNA are “jumping genes” that usually stay silent. But sometimes they wake up, reshaping bodies in dramatic ways. A strange mutation in mice showed how one rogue element near a key lim…
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