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Structure of nucleosome-bound human PBAF complex

Author

Listed:
  • Li Wang

    (Shanghai Medical College of Fudan University
    Shanghai Medical College of Fudan University
    Fudan University)

  • Jiali Yu

    (Shanghai Medical College of Fudan University)

  • Zishuo Yu

    (Shanghai Medical College of Fudan University)

  • Qianmin Wang

    (Shanghai Medical College of Fudan University)

  • Wanjun Li

    (Shanghai Medical College of Fudan University)

  • Yulei Ren

    (Shanghai Medical College of Fudan University)

  • Zhenguo Chen

    (Shanghai Medical College of Fudan University
    Fudan University)

  • Shuang He

    (Shanghai Medical College of Fudan University)

  • Yanhui Xu

    (Shanghai Medical College of Fudan University
    Shanghai Medical College of Fudan University
    Fudan University)

Abstract

BAF and PBAF are mammalian SWI/SNF family chromatin remodeling complexes that possess multiple histone/DNA-binding subunits and create nucleosome-depleted/free regions for transcription activation. Despite previous structural studies and recent advance of SWI/SNF family complexes, it remains incompletely understood how PBAF-nucleosome complex is organized. Here we determined structure of 13-subunit human PBAF in complex with acetylated nucleosome in ADP-BeF3-bound state. Four PBAF-specific subunits work together with nine BAF/PBAF-shared subunits to generate PBAF-specific modular organization, distinct from that of BAF at various regions. PBAF-nucleosome structure reveals six histone-binding domains and four DNA-binding domains/modules, the majority of which directly bind histone/DNA. This multivalent nucleosome-binding pattern, not observed in previous studies, suggests that PBAF may integrate comprehensive chromatin information to target genomic loci for function. Our study reveals molecular organization of subunits and histone/DNA-binding domains/modules in PBAF-nucleosome complex and provides structural insights into PBAF-mediated nucleosome association complimentary to the recently reported PBAF-nucleosome structure.

Suggested Citation

  • Li Wang & Jiali Yu & Zishuo Yu & Qianmin Wang & Wanjun Li & Yulei Ren & Zhenguo Chen & Shuang He & Yanhui Xu, 2022. "Structure of nucleosome-bound human PBAF complex," Nature Communications, Nature, vol. 13(1), pages 1-11, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-34859-5
    DOI: 10.1038/s41467-022-34859-5
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    References listed on IDEAS

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    1. Felix R. Wagner & Christian Dienemann & Haibo Wang & Alexandra Stützer & Dimitry Tegunov & Henning Urlaub & Patrick Cramer, 2020. "Structure of SWI/SNF chromatin remodeller RSC bound to a nucleosome," Nature, Nature, vol. 579(7799), pages 448-451, March.
    2. Sebastian Eustermann & Kevin Schall & Dirk Kostrewa & Kristina Lakomek & Mike Strauss & Manuela Moldt & Karl-Peter Hopfner, 2018. "Structural basis for ATP-dependent chromatin remodelling by the INO80 complex," Nature, Nature, vol. 556(7701), pages 386-390, April.
    3. Zhen-Lin Chen & Jia-Ming Meng & Yong Cao & Ji-Li Yin & Run-Qian Fang & Sheng-Bo Fan & Chao Liu & Wen-Feng Zeng & Yue-He Ding & Dan Tan & Long Wu & Wen-Jing Zhou & Hao Chi & Rui-Xiang Sun & Meng-Qiu Do, 2019. "A high-speed search engine pLink 2 with systematic evaluation for proteome-scale identification of cross-linked peptides," Nature Communications, Nature, vol. 10(1), pages 1-12, December.
    4. Yan Han & Alexis A Reyes & Sara Malik & Yuan He, 2020. "Cryo-EM structure of SWI/SNF complex bound to a nucleosome," Nature, Nature, vol. 579(7799), pages 452-455, March.
    5. A. Ari Hakimi & Kyrollis Attalla & Renzo G. DiNatale & Irina Ostrovnaya & Jessica Flynn & Kyle A. Blum & Yasser Ged & Douglas Hoen & Sviatoslav M. Kendall & Ed Reznik & Anita Bowman & Jason Hwee & Chr, 2020. "A pan-cancer analysis of PBAF complex mutations and their association with immunotherapy response," Nature Communications, Nature, vol. 11(1), pages 1-11, December.
    6. Daniel P. Maskell & Ludovic Renault & Erik Serrao & Paul Lesbats & Rishi Matadeen & Stephen Hare & Dirk Lindemann & Alan N. Engelman & Alessandro Costa & Peter Cherepanov, 2015. "Structural basis for retroviral integration into nucleosomes," Nature, Nature, vol. 523(7560), pages 366-369, July.
    7. Junjie Yuan & Kangjing Chen & Wenbo Zhang & Zhucheng Chen, 2022. "Structure of human chromatin-remodelling PBAF complex bound to a nucleosome," Nature, Nature, vol. 605(7908), pages 166-171, May.
    8. Meijing Li & Xian Xia & Yuanyuan Tian & Qi Jia & Xiaoyu Liu & Ying Lu & Ming Li & Xueming Li & Zhucheng Chen, 2019. "Mechanism of DNA translocation underlying chromatin remodelling by Snf2," Nature, Nature, vol. 567(7748), pages 409-413, March.
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