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Structure of SWI/SNF chromatin remodeller RSC bound to a nucleosome 期刊论文
NATURE, 2020
作者:  Coll, Anthony P.;  Chen, Michael;  Taskar, Pranali;  Rimmington, Debra;  Patel, Satish;  Tadross, John A.;  Cimino, Irene;  Yang, Ming;  Welsh, Paul;  Virtue, Samuel;  Goldspink, Deborah A.;  Miedzybrodzka, Emily L.;  Konopka, Adam R.;  Esponda, Raul Ruiz;  Huang, Jeffrey T. -J.;  Tung, Y. C. Loraine;  Rodriguez-Cuenca, Sergio
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The cryo-electron microscopy structure of the 16-subunit yeast SWI/SNF complex RSC in complex with a nucleosome substrate provides insights into the chromatin-remodelling function of this family of protein complexes.


Chromatin-remodelling complexes of the SWI/SNF family function in the formation of nucleosome-depleted, transcriptionally active promoter regions (NDRs)(1,2). In the yeast Saccharomyces cerevisiae, the essential SWI/SNF complex RSC3 contains 16 subunits, including the ATP-dependent DNA translocase Sth1(4,5). RSC removes nucleosomes from promoter regions(6,7) and positions the specialized +1 and -1 nucleosomes that flank NDRs(8,9). Here we present the cryo-electron microscopy structure of RSC in complex with a nucleosome substrate. The structure reveals that RSC forms five protein modules and suggests key features of the remodelling mechanism. The body module serves as a scaffold for the four flexible modules that we call DNA-interacting, ATPase, arm and actin-related protein (ARP) modules. The DNA-interacting module binds extra-nucleosomal DNA and is involved in the recognition of promoter DNA elements(8,10,11) that influence RSC functionality(12). The ATPase and arm modules sandwich the nucleosome disc with the Snf2 ATP-coupling (SnAC) domain and the finger helix, respectively. The translocase motor of the ATPase module engages with the edge of the nucleosome at superhelical location +2. The mobile ARP module may modulate translocase-nucleosome interactions to regulate RSC activity(5). The RSC-nucleosome structure provides a basis for understanding NDR formation and the structure and function of human SWI/SNF complexes that are frequently mutated in cancer(13).


  
Observation of coherent elastic neutrino-nucleus scattering 期刊论文
SCIENCE, 2017, 357 (6356) : 1123-+
作者:  Akimov, D.;  Albert, J. B.;  An, P.;  Awe, C.;  Barbeau, P. S.;  Becker, B.;  Belov, V.;  Brown, A.;  Bolozdynya, A.;  Cabrera-Palmer, B.;  Cervantes, M.;  Collar, J. I.;  Cooper, R. J.;  Cooper, R. L.;  Cuesta, C.;  Dean, D. J.;  Detwiler, J. A.;  Eberhardt, A.;  Efremenko, Y.;  Elliott, S. R.;  Erkela, E. M.;  Fabris, L.;  Febbraro, M.;  Fields, N. E.;  Fox, W.;  Fu, Z.;  Galindo-Uribarri, A.;  Green, M. P.;  Hai, M.;  Heath, M. R.;  Hedges, S.;  Hornback, D.;  Hossbach, T. W.;  Iverson, E. B.;  Kaufman, L. J.;  Ki, S.;  Klein, S. R.;  Khromov, A.;  Konovalov, A.;  Kremer, M.;  Kumpan, A.;  Leadbetter, C.;  Li, L.;  Lu, W.;  Mann, K.;  Markoff, D. M.;  Miller, K.;  Moreno, H.;  Mueller, P. E.;  Newby, J.;  Orrell, J. L.;  Overman, C. T.;  Parno, D. S.;  Penttila, S.;  Perumpilly, G.;  Ray, H.;  Raybern, J.;  Reyna, D.;  Rich, G. C.;  Rimal, D.;  Rudik, D.;  Scholberg, K.;  Scholz, B. J.;  Sinev, G.;  Snow, W. M.;  Sosnovtsev, V.;  Shakirov, A.;  Suchyta, S.;  Suh, B.;  Tayloe, R.;  Thornton, R. T.;  Tolstukhin, I.;  Vanderwerp, J.;  Varner, R. L.;  Virtue, C. J.;  Wan, Z.;  Yoo, J.;  Yu, C. -H.;  Zawada, A.;  Zettlemoyer, J.;  Zderic, A. M.
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