Structure of the essential peptidoglycan amidotransferase MurT/GatD complex from Streptococcus pneumoniae
Morlot, Cécile; Straume, Daniel; Peters, Katharina; Hegnar, Olav A.; Simon, Nolwenn; Villard, Anne-Marie; Contreras-Martel, Carlos; Leisico, Francisco; Breukink, Eefjan; Gravier-Pelletier, Christine; Le Corre, Laurent; Vollmer, Waldemar; Pietrancosta, Nicolas; Håvarstein, Leiv Sigve; Zapun, André
(2018) Nature Communications, volume 9, issue 1
(Article)
Abstract
The universality of peptidoglycan in bacteria underlies the broad spectrum of many successful antibiotics. However, in our times of widespread resistance, the diversity of peptidoglycan modifications offers a variety of new antibacterials targets. In some Gram-positive species such as Streptococcus pneumoniae, Staphylococcus aureus, or Mycobacterium tuberculosis, the second residue of
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the peptidoglycan precursor, D-glutamate, is amidated into iso-D-glutamine by the essential amidotransferase MurT/GatD complex. Here, we present the structure of this complex at 3.0 Å resolution. MurT has central and C-terminal domains similar to Mur ligases with a cysteine-rich insertion, which probably binds zinc, contributing to the interface with GatD. The mechanism of amidation by MurT is likely similar to the condensation catalyzed by Mur ligases. GatD is a glutaminase providing ammonia that is likely channeled to the MurT active site through a cavity network. The structure and assay presented here constitute a knowledge base for future drug development studies.
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Keywords: ammonia, GatD glutaminase, glutaminase, glutamine, ligase, MurT ligase, peptidoglycan, unclassified drug, zinc, amidation, article, carboxy terminal sequence, enzyme active site, enzyme activity, enzyme kinetics, nonhuman, operon, pH, Streptococcus pneumoniae
ISSN: 2041-1723
Publisher: Nature Publishing Group
(Peer reviewed)