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zadetkov: 153.281
1.
  • Structure of the ER membran... Structure of the ER membrane complex, a transmembrane-domain insertase
    Bai, Lin; You, Qinglong; Feng, Xiang ... Nature (London), 08/2020, Letnik: 584, Številka: 7821
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    The endoplasmic reticulum (ER) membrane complex (EMC) cooperates with the Sec61 translocon to co-translationally insert a transmembrane helix (TMH) of many multi-pass integral membrane proteins into ...
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2.
  • Structures of transcription... Structures of transcription pre-initiation complex with TFIIH and Mediator
    Schilbach, S; Hantsche, M; Tegunov, D ... Nature (London), 11/2017, Letnik: 551, Številka: 7679
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    For the initiation of transcription, RNA polymerase II (Pol II) assembles with general transcription factors on promoter DNA to form the pre-initiation complex (PIC). Here we report cryo-electron ...
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3.
  • Phase separation organizes ... Phase separation organizes the site of autophagosome formation
    Fujioka, Yuko; Alam, Jahangir Md; Noshiro, Daisuke ... Nature (London), 02/2020, Letnik: 578, Številka: 7794
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    Many biomolecules undergo liquid-liquid phase separation to form liquid-like condensates that mediate diverse cellular functions . Autophagy is able to degrade such condensates using ...
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4.
  • Structure of the mitochondr... Structure of the mitochondrial import gate reveals distinct preprotein paths
    Araiso, Yuhei; Tsutsumi, Akihisa; Qiu, Jian ... Nature (London), 11/2019, Letnik: 575, Številka: 7782
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    The translocase of the outer mitochondrial membrane (TOM) is the main entry gate for proteins . Here we use cryo-electron microscopy to report the structure of the yeast TOM core complex at 3.8-Å ...
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5.
  • Cryo-EM structure of the ye... Cryo-EM structure of the yeast U4/U6.U5 tri-snRNP at 3.7 Å resolution
    Nguyen, Thi Hoang Duong; Galej, Wojciech P; Bai, Xiao-Chen ... Nature (London), 02/2016, Letnik: 530, Številka: 7590
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    U4/U6.U5 tri-snRNP represents a substantial part of the spliceosome before activation. A cryo-electron microscopy structure of Saccharomyces cerevisiae U4/U6.U5 tri-snRNP at 3.7 Å resolution led to ...
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6.
  • Structural Basis of Silenci... Structural Basis of Silencing: Sir3 BAH Domain in Complex with a Nucleosome at 3.0 Å Resolution
    Armache, Karim-Jean; Garlick, Joseph D.; Canzio, Daniele ... Science (American Association for the Advancement of Science), 11/2011, Letnik: 334, Številka: 6058
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    Gene silencing is essential for regulating cell fate in eukaryotes. Altered chromatin architectures contribute to maintaining the silenced state in a variety of species. The silent information ...
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7.
  • Diverse roles of assembly f... Diverse roles of assembly factors revealed by structures of late nuclear pre-60S ribosomes
    Wu, Shan; Tutuncuoglu, Beril; Yan, Kaige ... Nature (London), 06/2016, Letnik: 534, Številka: 7605
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    Ribosome biogenesis is a highly complex process in eukaryotes, involving temporally and spatially regulated ribosomal protein (r-protein) binding and ribosomal RNA remodelling events in the ...
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8.
  • Mechanism of chromatin remo... Mechanism of chromatin remodelling revealed by the Snf2-nucleosome structure
    Liu, Xiaoyu; Li, Meijing; Xia, Xian ... Nature (London), 04/2017, Letnik: 544, Številka: 7651
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    Chromatin remodellers are helicase-like, ATP-dependent enzymes that alter chromatin structure and nucleosome positions to allow regulatory proteins access to DNA. Here we report the cryo-electron ...
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9.
  • The RNA-binding proteomes f... The RNA-binding proteomes from yeast to man harbour conserved enigmRBPs
    Beckmann, Benedikt M; Horos, Rastislav; Fischer, Bernd ... Nature communications, 12/2015, Letnik: 6, Številka: 1
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    RNA-binding proteins (RBPs) exert a broad range of biological functions. To explore the scope of RBPs across eukaryotic evolution, we determined the in vivo RBP repertoire of the yeast Saccharomyces ...
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