The structure of the NuA4–Tip60 complex reveals the mechanism and importance of long-range chromatin modification

被引:0
|
作者
Alexander Fréchard
Céline Faux
Rozalie Hexnerova
Corinne Crucifix
Gabor Papai
Ekaterina Smirnova
Conor McKeon
Florie Lo Ying Ping
Dominique Helmlinger
Patrick Schultz
Adam Ben-Shem
机构
[1] Institut de Génétique et de Biologie Moléculaire et Cellulaire,Centre de Recherche en Biologie cellulaire de Montpellier (CRBM)
[2] Integrated Structural Biology Department,undefined
[3] Centre National de la Recherche Scientifique,undefined
[4] UMR7104,undefined
[5] Institut National de la Santé et de la Recherche Médicale,undefined
[6] U1258,undefined
[7] Université de Strasbourg,undefined
[8] Equipe labellisée Ligue Contre le Cancer,undefined
[9] Université de Montpellier,undefined
[10] CNRS,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Histone acetylation regulates most DNA transactions and is dynamically controlled by highly conserved enzymes. The only essential histone acetyltransferase (HAT) in yeast, Esa1, is part of the 1-MDa NuA4 complex, which plays pivotal roles in both transcription and DNA-damage repair. NuA4 has the unique capacity to acetylate histone targets located several nucleosomes away from its recruitment site. Neither the molecular mechanism of this activity nor its physiological importance are known. Here we report the structure of the Pichia pastoris NuA4 complex, with its core resolved at 3.4-Å resolution. Three subunits, Epl1, Eaf1 and Swc4, intertwine to form a stable platform that coordinates all other modules. The HAT module is firmly anchored into the core while retaining the ability to stretch out over a long distance. We provide structural, biochemical and genetic evidence that an unfolded linker region of the Epl1 subunit is critical for this long-range activity. Specifically, shortening the Epl1 linker causes severe growth defects and reduced H4 acetylation levels over broad chromatin regions in fission yeast. Our work lays the foundations for a mechanistic understanding of NuA4’s regulatory role and elucidates how its essential long-range activity is attained.
引用
收藏
页码:1337 / 1345
页数:8
相关论文
共 24 条
  • [21] Analysis of the 4q35 chromatin organization reveals distinct long-range interactions in patients affected with Facio-Scapulo-Humeral Dystrophy
    Marie-Cécile Gaillard
    Natacha Broucqsault
    Julia Morere
    Camille Laberthonnière
    Camille Dion
    Cherif Badja
    Stéphane Roche
    Karine Nguyen
    Frédérique Magdinier
    Jérôme D. Robin
    Scientific Reports, 9
  • [22] The TIP60 Complex Regulates Bivalent Chromatin Recognition by 53BP1 through Direct H4K20me Binding and H2AK15 Acetylation
    Jacquet, Karine
    Fradet-Turcotte, Amelie
    Avvakumov, Nikita
    Lambert, Jean-Philippe
    Roques, Celine
    Pandita, Raj K.
    Paquet, Eric
    Herst, Pauline
    Gingras, Anne-Claude
    Pandita, Tej K.
    Legube, Gaelle
    Doyon, Yannick
    Durocher, Daniel
    Cote, Jacques
    MOLECULAR CELL, 2016, 62 (03) : 409 - 421
  • [23] Long range 1,4 and 1,6-interstrand cross-links formed by a trinuclear platinum complex. Minor groove preassociation affects kinetics and mechanism of cross-link formation as well as adduct structure
    Hegmans, A
    Berners-Price, SJ
    Davies, MS
    Thomas, DS
    Humphreys, AS
    Farrell, N
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2004, 126 (07) : 2166 - 2180
  • [24] Long Range 1,4 and 1,6-Interstrand Cross-Links Formed by a Trinuclear Platinum Complex. Minor Groove Preassociation Affects Kinetics and Mechanism of Cross-Link Formation as Well as Adduct Structure
    Hegmans, Alexander
    Berners-Price, Susan J.
    Davies, Murray S.
    Thomas, Donald S.
    Humphreys, Anthony S.
    Farrell, Nicholas
    Journal of the American Chemical Society, 1600, 126 (07): : 2166 - 2180