4.6 Article

The bacterial deubiquitinase Ceg23 regulates the association of Lys-63?linked polyubiquitin molecules on the Legionella phagosome

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 295, Issue 6, Pages 1646-1657

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.RA119.011758

Keywords

bacteria; bacterial pathogenesis; structural biology; deubiquitylation (deubiquitination); polyubiquitin chain; effector protein; Legionella pneumophila; ovarian-tumor family deubiquitinases; type IV secretion system

Funding

  1. National Natural Science Foundation of China [31770149, 31970134, 31770948, 31570875]
  2. Thousand Young Talents Program of the Chinese government
  3. Jilin University
  4. Special Funds of the Central Government Guiding Local Science and Technology Development Grant [2017L3009]
  5. Fujian Normal University [Z0210509]
  6. First Hospital of Jilin University

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Legionella pneumophila is the causative agent of the lung malady Legionnaires' disease, it modulates host function to create a niche termed the Legionella-containing vacuole (LCV) that permits intracellular L. pneumophila replication. One important aspect of such modulation is the co-option of the host ubiquitin network with a panel of effector proteins. Here, using recombinantly expressed and purified proteins, analytic ultracentrifugation, structural analysis, and computational modeling, along with deubiquitinase (DUB), and bacterial infection assays, we found that the bacterial defective in organelle trafficking/intracellular multiplication effector Ceg23 is a member of the ovarian tumor (OTU) DUB family. We found that Ceg23 displays high specificity toward Lys-63?linked polyubiquitin chains and is localized on the LCV, where it removes ubiquitin moieties from proteins ubiquitinated by the Lys-63?chain type. Analysis of the crystal structure of a Ceg23 variant lacking two putative transmembrane domains at 2.80 ? resolution revealed that despite very limited homology to established members of the OTU family at the primary sequence level, Ceg23 harbors a catalytic motif resembling those associated with typical OTU-type DUBs. ceg23 deletion increased the association of Lys-63?linked polyubiquitin with the bacterial phagosome, indicating that Ceg23 regulates Lys-63?linked ubiquitin signaling on the LCV. In summary, our findings indicate that Ceg23 contributes to the regulation of the association of Lys-63 type polyubiquitin with the Legionella phagosome. Future identification of host substrates targeted by Ceg23 could clarify the roles of these polyubiquitin chains in the intracellular life cycle of L. pneumophila and Ceg23's role in bacterial virulence.

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