Kurumizaka Lab (@kurumizakalab) 's Twitter Profile
Kurumizaka Lab

@kurumizakalab

The University of Tokyo / Chromatin / nucleosome/epigenetics/The singing structural biologist

ID: 1052536335641137153

linkhttps://www.iqb.u-tokyo.ac.jp/kurumizakalab/ calendar_today17-10-2018 12:26:32

141 Tweet

1,1K Followers

166 Following

Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

A new paper has been published! Congratulations to the Uemura lab (Univ of Tokyo) and Takada lab (Kyoto Univ) for our collaborative work on observing nucleosome unwinding using solid-state nanopores! nature.com/articles/s4200…

Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

With collaboration with Sugiyama lab(Kyoto Univ.), Our work regarding Cryo-EM and SAXS analysis of overlapping dinucleosome has been published! doi.org/10.1093/pnasne…

Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

Our new paper about the cryo-EM structures of barrier-to-autointegration factor (BAF) and Lamin A/C complexed with nucleosomes has been published! This study reveals that BAF and Lamin A/C interact with nucleosomes in multiple binding modes. rdcu.be/d9jmd

Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

Check out our paper on the chromatin protein DEK published NatureStructMolBiol! We found DEK as a nucleosome binding protein and its role in promoting H3K27me3 by PRC2! Great collaboration with Gotoh Lab, Yusuke Kishi , MasumotoG, and Hiroshi ! Thank you! nature.com/articles/s4159…

Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

Excited to share our paper on the RNAPII-NELF-DSIF-TFIIS-nucleosome complex published Science Advances , in collaboration with the Sekine lab 理研BDR(生命機能科学研究センター) ! This study reveals how NELF and nucleosome function in promoter-proximal pausing of RNAPII! doi.org/10.1126/sciadv…

Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

Our paper, “The cryo-EM structure of full-length RAD52 protein contains an undecameric ring,” is among the top 10 most-cited papers in FEBS Open Bio (2023)! Great collaboration with Kagawa-lab (Meisei Univ.)—congrats, Kagawa-group! 🔗 doi.org/10.1002/2211-5… #CryoEM #RAD52

Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

Check out the cryo-EM structure of the CENP-A-H4 octasome. This nucleosome-like structure contains a histone octamer composed solely of centromere specific histone variant, CENP-A, and H4! Amazing work by Nozawa Lab! Congratulations! 🎉 #Subnucleosome onlinelibrary.wiley.com/doi/10.1111/gt…

Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

Check out our paper on the cryo-EM analysis of chromatin derived from human cells! We have established a technically accessible method for analyzing the chromatin structure prepared from human cells. onlinelibrary.wiley.com/doi/10.1111/gt…

Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

Check out our methods paper on high-resolution cryo-EM analyses of nucleosomes is published! It covers nucleosome preparation, grid making, and single-particle analysis for cryo-EM. This work is a collaboration with the Danev Lab at the University of Tokyo.link.springer.com/protocol/10.10…

Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

Check out our review article on noncanonical nucleosomes, which differ from canonical nucleosomes in their histone composition and DNA wrapping. The article highlights recent insights into their structural and functional diversity. sciencedirect.com/science/articl…

Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

Check out our new preprint on H3-H4 octasome transcription by RNAPII! We discovered that H3-H4 octasome is transcribed more efficiently than nucleosomes and visualized its transcription process by cryo-EM. #cryoEM doi.org/10.1101/2025.0…

Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

Our new paper has been published! In this study, we revealed the mechanism by which the efficient transcription by RNA polymerase II is accomplished on nucleosomes containing a histone variant H2A.B. #cryoEM embopress.org/doi/full/10.10…

Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

Check out our new review on RAD51 activity in the context of chromatin! We highlight the latest insights into how RAD51 collaborates with diverse factors and functions within the chromatin environment in eukaryotic cells. #DNARepair #RAD51 #Nucleosome sciencedirect.com/science/articl…