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Crystal structure of Staphylococcus aureus Zn-glyoxalase I: new subfamily of glyoxalase I family.
Chirgadze, Yuri N; Boshkova, Eugenia A; Battaile, Kevin P; Mendes, Vitor G; Lam, Robert; Chan, Tiffany S Y; Romanov, Vladimir; Pai, Emil F; Chirgadze, Nickolay Y.
Afiliação
  • Chirgadze YN; a Institute of Protein Research , Russian Academy of Sciences , Pushchino 142290 , Moscow Region , Russia.
  • Boshkova EA; a Institute of Protein Research , Russian Academy of Sciences , Pushchino 142290 , Moscow Region , Russia.
  • Battaile KP; b Advanced Photon Source, Argonne National Laboratory , Hauptman-Woodward Medical Research Institute, IMCA-CAT , Argonne , IL 60439 , USA.
  • Mendes VG; c Department of Biochemistry , University of Cambridge , Cambridge CB2 1GA , UK.
  • Lam R; d Campbell Family Cancer Research Institute, Ontario Cancer Institute , Princess Margaret Hospital, University Health Network , Toronto , Ontario M5G 2C4 , Canada.
  • Chan TSY; d Campbell Family Cancer Research Institute, Ontario Cancer Institute , Princess Margaret Hospital, University Health Network , Toronto , Ontario M5G 2C4 , Canada.
  • Romanov V; d Campbell Family Cancer Research Institute, Ontario Cancer Institute , Princess Margaret Hospital, University Health Network , Toronto , Ontario M5G 2C4 , Canada.
  • Pai EF; d Campbell Family Cancer Research Institute, Ontario Cancer Institute , Princess Margaret Hospital, University Health Network , Toronto , Ontario M5G 2C4 , Canada.
  • Chirgadze NY; e Department of Biochemistry , University of Toronto , Toronto , Ontario M5S 1A8 , Canada.
J Biomol Struct Dyn ; 36(2): 376-386, 2018 02.
Article em En | MEDLINE | ID: mdl-28034013
The crystal structures of protein SA0856 from Staphylococcus aureus in its apo-form and in complex with a Zn2+-ion have been presented. The 152 amino acid protein consists of two similar domains with α + ß topology. In both crystalline state and in solution, the protein forms a dimer with monomers related by a twofold pseudo-symmetry rotation axis. A sequence homology search identified the protein as a member of the structural family Glyoxalase I. We have shown that the enzyme possesses glyoxalase I activity in the presence of Zn2+, Mg2+, Ni2+, and Co2+, in this order of preference. Sequence and structure comparisons revealed that human glyoxalase I should be assigned to a subfamily A, while S. aureus glyoxalase I represents a new subfamily B, which includes also proteins from other bacteria. Both subfamilies have a similar protein chain fold but rather diverse sequences. The active sites of human and staphylococcus glyoxalases I are also different: the former contains one Zn-ion per chain; the latter incorporates two of these ions. In the active site of SA0856, the first Zn-ion is well coordinated by His58, Glu60 from basic molecule and Glu40*, His44* from adjacent symmetry-related molecule. The second Zn3-ion is coordinated only by residue His143 from protein molecule and one acetate ion. We suggest that only single Zn1-ion plays the role of catalytic center. The newly found differences between the two subfamilies could guide the design of new drugs against S. aureus, an important pathogenic micro-organism.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Staphylococcus aureus / Zinco / Lactoilglutationa Liase Limite: Humans Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Staphylococcus aureus / Zinco / Lactoilglutationa Liase Limite: Humans Idioma: En Ano de publicação: 2018 Tipo de documento: Article