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1.
Archaea ; 2017: 5395293, 2017.
Article in English | MEDLINE | ID: mdl-28536498

ABSTRACT

Thermococcus onnurineus NA1 is an anaerobic archaeon usually found in a deep-sea hydrothermal vent area, which can use elemental sulfur (S0) as a terminal electron acceptor for energy. Sulfur, essential to many biomolecules such as sulfur-containing amino acids and cofactors including iron-sulfur cluster, is usually mobilized from cysteine by the pyridoxal 5'-phosphate- (PLP-) dependent enzyme of cysteine desulfurase (CDS). We determined the crystal structures of CDS from Thermococcus onnurineus NA1 (ToCDS), which include native internal aldimine (NAT), gem-diamine (GD) with alanine, internal aldimine structure with existing alanine (IAA), and internal aldimine with persulfide-bound Cys356 (PSF) structures. The catalytic intermediate structures showed the dihedral angle rotation of Schiff-base linkage relative to the PLP pyridine ring. The ToCDS structures were compared with bacterial CDS structures, which will help us to understand the role and catalytic mechanism of ToCDS in the archaeon Thermococcus onnurineus NA1.


Subject(s)
Archaeal Proteins/chemistry , Carbon-Sulfur Lyases/chemistry , Thermococcus/enzymology , Protein Conformation
2.
J Agric Food Chem ; 64(39): 7307-7314, 2016 Oct 05.
Article in English | MEDLINE | ID: mdl-27616570

ABSTRACT

Xanthomonas oryzae pv. oryzae (Xoo) causes bacterial blight on rice; this species is one of the most destructive pathogenic bacteria in rice cultivation worldwide. Peptide deformylase (PDF) catalyzes the removal of the N-formyl group from the N-terminus of newly synthesized polypeptides in bacterial cells and is an important target to develop antibacterial agents. We determined crystal structures of Xoo PDF (XoPDF) at up to 1.9 Å resolution, which include apo, two substrate-bound (methionine-alanine or methionine-alanine-serine), an inhibitor-bound (actinonin), and six fragment chemical-bound structures. Six fragment chemical compounds were bound in the substrate-binding pocket. The fragment chemical-bound structures were compared to the natural PDF inhibitor actinonin-bound structure. The fragment chemical molecules will be useful to design an inhibitor specific to XoPDF and a potential pesticide against Xoo.


Subject(s)
Amidohydrolases/chemistry , Bacterial Proteins/chemistry , Xanthomonas/enzymology , Anti-Bacterial Agents , Crystallography, X-Ray , Gene Expression Regulation, Bacterial , Hydroxamic Acids/chemistry , Oryza/microbiology , Peptides/chemistry , Plant Diseases/microbiology , Structure-Activity Relationship
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