| Literature DB >> 26894530 |
Huyen Thi Tran1, Myoung Ki Hong1, Ho Phuong Thuy Ngo1, Kim Hung Huynh1, Yeh Jin Ahn2, Zhong Wang3, Lin Woo Kang1.
Abstract
D-Alanyl-D-alanine is an essential precursor of bacterial peptidoglycan and is synthesized by D-alanine-D-alanine ligase (DDL) with hydrolysis of ATP; this reaction makes DDL an important drug target for the development of antibacterial agents. Five crystal structures of DDL from Yersinia pestis (YpDDL) were determined at 1.7-2.5 Å resolution: apo, AMP-bound, ADP-bound, adenosine 5'-(β,γ-imido)triphosphate-bound, and D-alanyl-D-alanine- and ADP-bound structures. YpDDL consists of three domains, in which four loops, loop 1, loop 2 (the serine loop), loop 3 (the ω-loop) and loop 4, constitute the binding sites for two D-alanine molecules and one ATP molecule. Some of them, especially the serine loop and the ω-loop, show flexible conformations, and the serine loop is mainly responsible for the conformational change in substrate nucleotide phosphates. Enzyme-kinetics assays were carried out for both the D-alanine and ATP substrates and a substrate-binding mechanism was proposed for YpDDL involving conformational changes of the loops.Entities:
Keywords: X-ray crystallography; Yersinia pestis; bacterial cell-wall synthesis; d-alanine-d-alanine ligase; drug targets
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Year: 2016 PMID: 26894530 DOI: 10.1107/S2059798315021671
Source DB: PubMed Journal: Acta Crystallogr D Struct Biol ISSN: 2059-7983 Impact factor: 7.652