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2YG4

Structure-based redesign of cofactor binding in Putrescine Oxidase: wild type bound to Putrescine

2YG4 の概要
エントリーDOI10.2210/pdb2yg4/pdb
関連するPDBエントリー2YG3 2YG5 2YG6 2YG7
分子名称PUTRESCINE OXIDASE, FLAVIN-ADENINE DINUCLEOTIDE, 4-HYDROXYBUTAN-1-AMINIUM, ... (6 entities in total)
機能のキーワードoxidoreductase, flavin
由来する生物種RHODOCOCCUS ERYTHROPOLIS
タンパク質・核酸の鎖数2
化学式量合計101297.96
構造登録者
Kopacz, M.M.,Rovida, S.,van Duijn, E.,Fraaije, M.W.,Mattevi, A. (登録日: 2011-04-11, 公開日: 2011-05-18, 最終更新日: 2023-12-20)
主引用文献Kopacz, M.M.,Rovida, S.,Van Duijn, E.,Fraaije, M.W.,Mattevi, A.
Structure-Based Redesign of Cofactor Binding in Putrescine Oxidase.
Biochemistry, 50:4209-, 2011
Cited by
PubMed Abstract: Putrescine oxidase (PuO) from Rhodococcus erythropolis is a soluble homodimeric flavoprotein, which oxidizes small aliphatic diamines. In this study, we report the crystal structures and cofactor binding properties of wild-type and mutant enzymes. From a structural viewpoint, PuO closely resembles the sequence-related human monoamine oxidases A and B. This similarity is striking in the flavin-binding site even if PuO does not covalently bind the cofactor as do the monoamine oxidases. A remarkable conserved feature is the cis peptide conformation of the Tyr residue whose conformation is important for substrate recognition in the active site cavity. The structure of PuO in complex with the reaction product reveals that Glu324 is crucial in recognizing the terminal amino group of the diamine substrate and explains the narrow substrate specificity of the enzyme. The structural analysis also provides clues for identification of residues that are responsible for the competitive binding of ADP versus FAD (~50% of wild-type PuO monomers isolated are occupied by ADP instead of FAD). By replacing Pro15, which is part of the dinucleotide-binding domain, enzyme preparations were obtained that are almost 100% in the FAD-bound form. Furthermore, mutants have been designed and prepared that form a covalent 8α-S-cysteinyl-FAD linkage. These data provide new insights into the molecular basis for substrate recognition in amine oxidases and demonstrate that engineering of flavoenzymes to introduce covalent linkage with the cofactor is a possible route to develop more stable protein molecules, better suited for biocatalytic purposes.
PubMed: 21486042
DOI: 10.1021/BI200372U
主引用文献が同じPDBエントリー
実験手法
X-RAY DIFFRACTION (2.3 Å)
構造検証レポート
Validation report summary of 2yg4
検証レポート(詳細版)ダウンロードをダウンロード

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件を2024-11-13に公開中

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