Literature DB >> 24917679

A proton wire and water channel revealed in the crystal structure of isatin hydrolase.

Kaare Bjerregaard-Andersen1, Theis Sommer2, Jan K Jensen3, Bjarne Jochimsen3, Michael Etzerodt3, J Preben Morth4.   

Abstract

The high resolution crystal structures of isatin hydrolase from Labrenzia aggregata in the apo and the product state are described. These are the first structures of a functionally characterized metal-dependent hydrolase of this fold. Isatin hydrolase converts isatin to isatinate and belongs to a novel family of metalloenzymes that include the bacterial kynurenine formamidase. The product state, mimicked by bound thioisatinate, reveals a water molecule that bridges the thioisatinate to a proton wire in an adjacent water channel and thus allows the proton released by the reaction to escape only when the product is formed. The functional proton wire present in isatin hydrolase isoform b represents a unique catalytic feature common to all hydrolases is here trapped and visualized for the first time. The local molecular environment required to coordinate thioisatinate allows stronger and more confident identification of orthologous genes encoding isatin hydrolases within the prokaryotic kingdom. The isatin hydrolase orthologues found in human gut bacteria raise the question as to whether the indole-3-acetic acid degradation pathway is present in human gut flora.
© 2014 by The American Society for Biochemistry and Molecular Biology, Inc.

Entities:  

Keywords:  Bacterial Metabolism; Enzyme Structure; Grotthuss; Gut Flora; Hydrolase; Indole-3-acetic Acid Degradation; Kynurenine Formamidase; Metalloenzyme; Proton Transport; Proton Wire

Mesh:

Substances:

Year:  2014        PMID: 24917679      PMCID: PMC4118100          DOI: 10.1074/jbc.M114.568824

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


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