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Legionella effector LnaB is a phosphoryl-AMPylase that impairs phosphosignalling

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Listed:
  • Ting Wang

    (Zhejiang University
    Zhejiang University
    Zhejiang University)

  • Xiaonan Song

    (Zhejiang University
    Zhejiang University
    Zhejiang University)

  • Jiaxing Tan

    (Zhejiang University
    Zhejiang University
    Zhejiang University)

  • Wei Xian

    (Peking University Health Science Center)

  • Xingtong Zhou

    (Zhejiang University
    Zhejiang University
    Zhejiang University)

  • Mingru Yu

    (Zhejiang University
    Zhejiang University
    Zhejiang University)

  • Xiaofei Wang

    (Zhejiang University
    Zhejiang University)

  • Yan Xu

    (Zhejiang University
    Zhejiang University
    Zhejiang University)

  • Ting Wu

    (Zhejiang University)

  • Keke Yuan

    (Zhejiang University
    Zhejiang University
    Zhejiang University)

  • Yu Ran

    (Zhejiang University)

  • Bing Yang

    (Zhejiang University)

  • Gaofeng Fan

    (ShanghaiTech University)

  • Xiaoyun Liu

    (Peking University Health Science Center)

  • Yan Zhou

    (Zhejiang University
    Zhejiang University)

  • Yongqun Zhu

    (Zhejiang University
    Zhejiang University
    Zhejiang University
    State Key Laboratory of Transvascular Implantation Devices)

Abstract

AMPylation is a post-translational modification in which AMP is added to the amino acid side chains of proteins1,2. Here we show that, with ATP as the ligand and actin as the host activator, the effector protein LnaB of Legionella pneumophila exhibits AMPylase activity towards the phosphoryl group of phosphoribose on PRR42-Ub that is generated by the SidE family of effectors, and deubiquitinases DupA and DupB in an E1- and E2-independent ubiquitination process3–7. The product of LnaB is further hydrolysed by an ADP-ribosylhydrolase, MavL, to Ub, thereby preventing the accumulation of PRR42-Ub and ADPRR42-Ub and protecting canonical ubiquitination in host cells. LnaB represents a large family of AMPylases that adopt a common structural fold, distinct from those of the previously known AMPylases, and LnaB homologues are found in more than 20 species of bacterial pathogens. Moreover, LnaB also exhibits robust phosphoryl-AMPylase activity towards phosphorylated residues and produces unique ADPylation modifications in proteins. During infection, LnaB AMPylates the conserved phosphorylated tyrosine residues in the activation loop of the Src family of kinases8,9, which dampens downstream phosphorylation signalling in the host. Structural studies reveal the actin-dependent activation and catalytic mechanisms of the LnaB family of AMPylases. This study identifies, to our knowledge, an unprecedented molecular regulation mechanism in bacterial pathogenesis and protein phosphorylation.

Suggested Citation

  • Ting Wang & Xiaonan Song & Jiaxing Tan & Wei Xian & Xingtong Zhou & Mingru Yu & Xiaofei Wang & Yan Xu & Ting Wu & Keke Yuan & Yu Ran & Bing Yang & Gaofeng Fan & Xiaoyun Liu & Yan Zhou & Yongqun Zhu, 2024. "Legionella effector LnaB is a phosphoryl-AMPylase that impairs phosphosignalling," Nature, Nature, vol. 631(8020), pages 393-401, July.
  • Handle: RePEc:nat:nature:v:631:y:2024:i:8020:d:10.1038_s41586-024-07573-z
    DOI: 10.1038/s41586-024-07573-z
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    Cited by:

    1. Minhyeong Choi & Minwoo Jeong & Sangwoo Kang & Hayoung Jeon & Donghyuk Shin, 2024. "Legionella pneumophila evades host-autophagic clearance using phosphoribosyl-polyubiquitin chains," Nature Communications, Nature, vol. 15(1), pages 1-4, December.

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