| Literature DB >> 34407442 |
Adam Osinski1, Miles H Black1, Krzysztof Pawłowski2, Zhe Chen3, Yang Li4, Vincent S Tagliabracci5.
Abstract
The kinase domain transfers phosphate from ATP to substrates. However, the Legionella effector SidJ adopts a kinase fold, yet catalyzes calmodulin (CaM)-dependent glutamylation to inactivate the SidE ubiquitin ligases. The structural and mechanistic basis in which the kinase domain catalyzes protein glutamylation is unknown. Here we present cryo-EM reconstructions of SidJ:CaM:SidE reaction intermediate complexes. We show that the kinase-like active site of SidJ adenylates an active-site Glu in SidE, resulting in the formation of a stable reaction intermediate complex. An insertion in the catalytic loop of the kinase domain positions the donor Glu near the acyl-adenylate for peptide bond formation. Our structural analysis led us to discover that the SidJ paralog SdjA is a glutamylase that differentially regulates the SidE ligases during Legionella infection. Our results uncover the structural and mechanistic basis in which the kinase fold catalyzes non-ribosomal amino acid ligations and reveal an unappreciated level of SidE-family regulation.Entities:
Keywords: Legionella; SdeA; SdeB; SdeC; SdjA; SidE; SidJ; effectors; glutamylation; pseudokinase
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Year: 2021 PMID: 34407442 PMCID: PMC8571041 DOI: 10.1016/j.molcel.2021.08.007
Source DB: PubMed Journal: Mol Cell ISSN: 1097-2765 Impact factor: 17.970