Rafael D. Acemel

@rdacemel.bsky.social

RyC researcher at Centro Andaluz de Biología del Desarrollo (Sevilla/Spain). Trying to apply genomics to understand things about gene regulation and Evo-Devo.

Amazing job by Iván and colleagues! Great insights into the evolution of steroidogenesis and gonadal cell lineages from the rebel rabbits :) Reads well together with our recent work on turtles!!

Iván Barberá Aura@ivan-barbera-aura.bsky.social · 2mo ago

Preprint from @dariloops.bsky.social lab !!🚨🚨 An unexpected source of sex hormones in the mammalian gonad: Supporting-like cells (SLCs). SLCs have a latent steroidogenic potential and may represent an ancestral lineage conserved beyond mammals. www.biorxiv.org/content/10.6...

HERITAGE NIGHT ! 🤍 We are now celebrating the remarkable careers of wonderful scientists that left a deep print in our community. Thank you for your legacy : Blanche Capel, Arthur Arnold, Jenny Graves, Marilyn Renfree, Tanaka Minoru & Eric Pailhoux ! 🙏 #VSD26 #heritage

🧵 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...

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

biorxiv.org

🐟How does the Amazon molly defy all evolutionary odds and overcome the detrimental costs of asexual reproduction?🧬 😊Glad that @rdacemel.bsky.social and I could contribute to this fascinating study, brilliantly led by Ed Ricemeyer @nature.com 👏Congrats to all authors! @cabd-upo-csic.bsky.social

Nature@nature.com · 5mo ago

Nature research paper: Gene conversion empowers natural selection in a clonal fish species go.nature.com/4uDK6Ou

🚨 Happy to see that my PhD work is finally published! We present METALoci, a tool that integrates #3Dgenome and #Epigenetics to identify regulatory hubs. Applied to #sexdetermination we uncover: ✔️ Non-coding regulatory region controlling Fgf9 ✔️ Meis genes as key players 👉 rdcu.be/e5sm2

Chromatin spatial analysis by METALoci unveils sex-determining 3D regulatory hubs

Nature Structural & Molecular Biology - METALoci, a new three-dimensional genome computational tool, reveals a major rewiring of regulatory interactions during sex determination. By combining...

nature.com

How could a simple self-replicating system emerge at the origins of life? RNA polymerase ribozymes can replicate RNA, but existing ones are so large that their self-replication seems impossible. Could they be smaller? Excited to share our latest work in @science.org on a new small polymerase. 1/n

A small polymerase ribozyme that can synthesize itself and its complementary strand

The emergence of a chemical system capable of self-replication and evolution is a critical event in the origin of life. RNA polymerase ribozymes can replicate RNA, but their large size and structural ...

science.org

We are thrilled to share our new pre-print: “System-wide extraction of cis-regulatory rules from sequence-to-function models in human neural development”. S2F-deeplearning models can accurately encode enhancers, yet decoding these models into human-interpretable rules remains a major challenge.