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Structural and functional insight into the mechanism of an alkaline exonuclease from Laribacter hongkongensis.
Yang, Wen; Chen, Wen-yang; Wang, Hui; Ho, John W S; Huang, Jian-Dong; Woo, Patrick C Y; Lau, Susanna K P; Yuen, Kwok-Yung; Zhang, Qionglin; Zhou, Weihong; Bartlam, Mark; Watt, Rory M; Rao, Zihe.
Affiliation
  • Yang W; State Key Laboratory of Medicinal Chemical Biology, Nankai University, Tianjin 300071, China.
Nucleic Acids Res ; 39(22): 9803-19, 2011 Dec.
Article in En | MEDLINE | ID: mdl-21893587
Alkaline exonuclease and single-strand DNA (ssDNA) annealing proteins (SSAPs) are key components of DNA recombination and repair systems within many prokaryotes, bacteriophages and virus-like genetic elements. The recently sequenced ß-proteobacterium Laribacter hongkongensis (strain HLHK9) encodes putative homologs of alkaline exonuclease (LHK-Exo) and SSAP (LHK-Bet) proteins on its 3.17 Mb genome. Here, we report the biophysical, biochemical and structural characterization of recombinant LHK-Exo protein. LHK-Exo digests linear double-stranded DNA molecules from their 5'-termini in a highly processive manner. Exonuclease activities are optimum at pH 8.2 and essentially require Mg(2+) or Mn(2+) ions. 5'-phosphorylated DNA substrates are preferred over dephosphorylated ones. The crystal structure of LHK-Exo was resolved to 1.9 Å, revealing a 'doughnut-shaped' toroidal trimeric arrangement with a central tapered channel, analogous to that of λ-exonuclease (Exo) from bacteriophage-λ. Active sites containing two bound Mg(2+) ions on each of the three monomers were located in clefts exposed to this central channel. Crystal structures of LHK-Exo in complex with dAMP and ssDNA were determined to elucidate the structural basis for substrate recognition and binding. Through structure-guided mutational analysis, we discuss the roles played by various active site residues. A conserved two metal ion catalytic mechanism is proposed for this class of alkaline exonucleases.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Exodeoxyribonucleases / Neisseriaceae Language: En Journal: Nucleic Acids Res Year: 2011 Type: Article Affiliation country: China

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Exodeoxyribonucleases / Neisseriaceae Language: En Journal: Nucleic Acids Res Year: 2011 Type: Article Affiliation country: China