SFB1361

@sfb1361.bsky.social

SFB1361 "Regulation of DNA Repair and Genome Stability" Imprint: https://sfb1361.de/imprint

Just published: New paper by our associated member, Dr Maximilian Reuter! 📃🧬 The article explores mechanisms of MCM2–7 helicase activation and initial DNA melting at near base-pair resolution. 🔎Find out more: www.nature.com/articles/s41... Amazing work - Congratulations! 🎊🎉

Max Reuter@reuterlm.bsky.social · 2w ago

New paper out in Nature Communications! 🥳🧬🔬 We map the earliest DNA strand separation during MCM2-7 helicase activation at near base-pair resolution, revealing where origin melting begins and how DNA is routed through the Mcm2/5 gate. doi.org/10.1038/s414... #DNAReplication

#SFB1361 in action in Würzburg!🥼 Great to see the programmes unite to spark curiosity about DNA in young students!🧬

König Lab@koenig-lab.bsky.social · 4w ago

Today, researchers from @nucleate-cluster.bsky.social, TRR 319, @sfb1551.bsky.social, and @sfb1361.bsky.social visited a primary school in Würzburg to show the fascinating world of DNA! 🧬 Thanks to the great team from the König and @zarnack-group.bsky.social labs at @uni-wuerzburg.de! #MissionDNA

Heartfelt congratulations to our SFB 1361 PI, Thomas Carell from LMU München (@lmu.de) on receiving an ERC Advanced Grant for his project "RFrag - Synthesis and Function of Non-Canonical RNA Fragments"! 🎉🎉 #ERCAdG #SFB1361 #Science

LMU München@lmu.de · last mo.

🙌 Congratulations! Three #ERC Advanced Grants for #LMU researchers: Philosopher @alyssaney.bsky.social, neuroimmunologist Martin Kerschensteiner, and chemist Thomas Carell have each been awarded an Advanced Grant by the @erc.europa.eu. #ERCAdG #LMUMunich www.lmu.de/en/newsroom/...

Publication alert!!📃 Congrats to the Carell lab on their latest work! The article focuses on structural and biochemical characterization of yeast Tcd enzymes installing the post-transcriptional modification ct6A in tRNA. Find out more here: academic.oup.com/nar/article/...

Structural and biochemical characterization of yeast Tcd enzymes installing the post-transcriptional modification ct6A in tRNA

Abstract. Post-transcriptional modifications near the anticodon of transfer ribonucleic acids (tRNAs) ensure translation fidelity and accuracy. For instanc

academic.oup.com

Publication alert!! 📃 Congratulations to the Hopfner lab (@hopfnerlab.bsky.social) on their new publication: "Recognition and remodelling of nucleosomes and hexasomes by the human INO80 complex" 🔎Find out more here: doi.org/10.1093/nar/...

Hopfner Lab@hopfnerlab.bsky.social · 5mo ago

We are excited to share our latest cryo-EM study of the human INO80 remodeler, now featured as a Breakthrough article in NAR @narjournal.bsky.social Check it out here and a big shoutout to @priyanka-pdm.bsky.social and Manmohan et al. for their contributions! 🧬

Preprint alert!!📑 We're happy to share a new preprint from our associated member, Dr Maximilian Reuter (@reuterlm.bsky.social), on "Mechanisms of MCM2-7 helicase activation and initial DNA melting at near base-pair resolution"  🔎Read more here: www.biorxiv.org/content/10.6...

Mechanisms of MCM2-7 helicase activation and initial DNA melting at near base-pair resolution

During eukaryotic DNA replication initiation, inactive MCM2-7 double-hexamers assembled at replication origins must be converted into two active CMG helicases, yet how this transition is coupled to origin DNA unwinding in vivo remains unclear. Here, we identify a DNA-bound intermediate with an extended genomic footprint that forms during helicase activation. Genome-wide mapping of initial strand separation reveals that DNA unwinding initiates near the N-terminal interface of opposing MCM2-7 hexamers. At these sites, the origin DNA exhibits a conserved AT-rich/GC-rich/AT-rich sequence architecture on which the helicase complex is centred, consistent with a role in promoting DNA extrusion following double-hexamer separation. We further show that restricting hexamer rotation and splitting delays release of the Cdc45-loading factor Sld3, demonstrating that mechanical transitions during helicase activation are tightly coupled to complex disassembly. Finally, we provide in vivo evidence that single-stranded DNA is ejected through a specialised DNA exit gate at the Mcm2/5 interface during helicase activation, which is dispensable for ongoing DNA synthesis. Together, these findings establish a mechanistic framework for how replication origins are remodelled to initiate DNA replication and reveal key intermediates and DNA transactions during helicase activation. ### Competing Interest Statement The authors have declared no competing interest. Deutsche Forschungsgemeinschaft, https://ror.org/018mejw64, ZA 153/28-1, 393547839 - SFB1361, 505087959 Engineering and Physical Sciences Research Council, EP/N509486/1 European Commission, 101109916 Biotechnology and Biological Sciences Research Council, BB/N000323/1, BB/S001387/1 Medical Research Council, MC_U120085811 Wellcome Trust, 107903/Z/15/Z

biorxiv.org

Max Reuter@reuterlm.bsky.social · 6mo ago

New preprint🎉 Happy to share our collaborative manuscript, where we provide in vivo and genome-wide evidence linking MCM2-7 helicase activation, DNA extrusion to initial origin melting, thereby adding a new mechanistic layer to how eukaryotic DNA replication is initiated. 👉 doi.org/10.64898/202...

We are excited to share that our #SFB1361 alumni, Dr Gabriel M. C. Longo, received a Walter Benjamin Fellowship to support his postdoctoral research in the Kleinstiver lab at Harvard Medical School/Massachusetts General Hospital, Boston. Congratulations! 🎉🎉

Bild