Title of article
Influence of main channel structure on H2O2 access to the heme cavity of catalase KatE of Escherichia coli
Author/Authors
Jha، نويسنده , , Vikash and Chelikani، نويسنده , , Prashen and Carpena، نويسنده , , Xavi and Fita، نويسنده , , Ignacio and Loewen، نويسنده , , Peter C.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
6
From page
54
To page
59
Abstract
The main channel for H2O2 access to the heme cavity in large subunit catalases is twice as long as in small subunit catalases and is divided into two distinct parts. Like small subunit catalases, the 15 إ of the channel adjacent to the heme has a predominantly hydrophobic surface with only weak water occupancy, but the next 15 إ extending to the protein surface is hydrophilic and contains a complex water matrix in multiple passages. At the approximate junction of these two sections are a conserved serine and glutamate that are hydrogen bonded and associated with H2O2 in inactive variants. Mutation of these residues changed the dimensions of the channel, both enlarging and constricting it, and also changed the solvent occupancy in the hydrophobic, inner section of the main channel. Despite these structural changes and the prominent location of the residues in the channel, the variants exhibited less than a 2-fold change in the kcat and apparent KM kinetic constants. These results reflect the importance of the complex multi-passage structure of the main channel. Surprisingly, mutation of either the serine or glutamate to an aliphatic side chain interfered with heme oxidation to heme d.
Keywords
Channel architecture , Side chain modification , KatE , Catalase
Journal title
Archives of Biochemistry and Biophysics
Serial Year
2012
Journal title
Archives of Biochemistry and Biophysics
Record number
1633048
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