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Phase separation directs ubiquitination of gene-body nucleosomes 期刊论文
NATURE, 2020, 579 (7800) : 592-+
作者:  Zhang, Wenjuan;  Tarutani, Airi;  Newell, Kathy L.;  Murzin, Alexey G.;  Matsubara, Tomoyasu;  Falcon, Benjamin;  Vidal, Ruben;  Garringer, Holly J.;  Shi, Yang;  Ikeuchi, Takeshi;  Murayama, Shigeo;  Ghetti, Bernardino;  Hasegawa, Masato;  Goedert, Michel;  Scheres, Sjors H. W.
收藏  |  浏览/下载:10/0  |  提交时间:2020/07/03

The yeast E3 ligase Bre1 forms a core-shell condensate with the scaffold protein Lge1, implicating liquid-liquid phase separation as a mechanism in the ubiquitination of histone H2B along gene bodies.


The conserved yeast E3 ubiquitin ligase Bre1 and its partner, the E2 ubiquitin-conjugating enzyme Rad6, monoubiquitinate histone H2B across gene bodies during the transcription cycle(1). Although processive ubiquitination might-in principle-arise from Bre1 and Rad6 travelling with RNA polymerase II2, the mechanism of H2B ubiquitination across genic nucleosomes remains unclear. Here we implicate liquid-liquid phase separation(3) as the underlying mechanism. Biochemical reconstitution shows that Bre1 binds the scaffold protein Lge1, which possesses an intrinsically disordered region that phase-separates via multivalent interactions. The resulting condensates comprise a core of Lge1 encapsulated by an outer catalytic shell of Bre1. This layered liquid recruits Rad6 and the nucleosomal substrate, which accelerates the ubiquitination of H2B. In vivo, the condensate-forming region of Lge1 is required to ubiquitinate H2B in gene bodies beyond the +1 nucleosome. Our data suggest that layered condensates of histone-modifying enzymes generate chromatin-associated '  reaction chambers'  , with augmented catalytic activity along gene bodies. Equivalent processes may occur in human cells, and cause neurological disease when impaired.


  
Tripled yield in direct-drive laser fusion through statistical modelling 期刊论文
NATURE, 2019, 565 (7741) : 581-+
作者:  Gopalaswamy, V.;  Betti, R.;  Knauer, J. P.;  Luciani, N.;  Patel, D.;  Woo, K. M.;  Bose, A.;  Igumenshchev, I. V.;  Campbell, E. M.;  Anderson, K. S.;  Bauer, K. A.;  Bonino, M. J.;  Cao, D.;  Christopherson, A. R.;  Collins, G. W.;  Collins, T. J. B.;  Davies, J. R.;  Delettrez, J. A.;  Edgell, D. H.;  Epstein, R.;  Forrest, C. J.;  Froula, D. H.;  Glebov, V. Y.;  Goncharov, V. N.;  Harding, D. R.;  Hu, S. X.;  Jacobs-Perkins, D. W.;  Janezic, R. T.;  Kelly, J. H.;  Mannion, O. M.;  Maximov, A.;  Marshall, F. J.;  Michel, D. T.;  Miller, S.;  Morse, S. F. B.;  Palastro, J.;  Peebles, J.;  Radha, P. B.;  Regan, S. P.;  Sampat, S.;  Sangster, T. C.;  Sefkow, A. B.;  Seka, W.;  Shah, R. C.;  Shmyada, W. T.;  Shvydky, A.;  Stoeckl, C.;  Solodov, A. A.;  Theobald, W.;  Zuegel, J. D.;  Johnson, M. Gatu;  Petrasso, R. D.;  Li, C. K.;  Frenje, J. A.
收藏  |  浏览/下载:12/0  |  提交时间:2019/11/27
Cryo-EM structures of tau filaments from Alzheimer's disease 期刊论文
NATURE, 2017, 547 (7662) : 185-+
作者:  Fitzpatrick, Anthony W. P.;  Falcon, Benjamin;  He, Shaoda;  Murzin, Alexey G.;  Murshudov, Garib;  Garringer, Holly J.;  Crowther, R. Anthony;  Ghetti, Bernardino;  Goedert, Michel;  Scheres, Sjors H. W.
收藏  |  浏览/下载:5/0  |  提交时间:2019/11/27