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Probing the conformational mobility of the active site of a heme peroxidase. | LitMetric

AI Article Synopsis

  • The study builds on previous findings that removing tryptophan (Trp41) in ascorbate peroxidase enhances flexibility in the active site, specifically affecting the histidine (His42).
  • Researchers investigated if other amino acids (Cys, Tyr, Met) could replace His42 in bonding with the heme, but found that while they created a pocket, they did not form the desired 6-coordinate heme.
  • The study also explored how the interaction of Asn-71 with His42 affects the low-spin form of heme, suggesting that His42 not only aids in the reaction with peroxide but also contributes to the structure of the active site.

Article Abstract

We have previously demonstrated (Badyal et al., J. Biol. Chem., 2006, 281, 24512) that removal of the active site tryptophan (Trp41) in ascorbate peroxidase increases the conformational mobility of the distal histidine residue (His42) and that His42 coordinates to the iron in the oxidised W41A enzyme to give a 6-coordinate, low-spin peroxidase. In this work, we probe the conformational flexibility of the active site in more detail. We examine whether other residues (Cys, Tyr, Met) can also ligate to the heme at position 42; we find that introduction of other ligating amino acids created a cavity in the heme pocket, but that formation of 6-coordinate heme is not observed. In addition, we examine the role of Asn-71, which hydrogen bonds to His42 and tethers the distal histidine in the active site pocket; we find that removal of this hydrogen bond increases the proportion of low-spin heme. We suggest that, in addition to its well-known role in facilitating the reaction with peroxide, His42 also plays a role in defining the shape and folding of the active site pocket.

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Source
http://dx.doi.org/10.1039/c2dt32455eDOI Listing

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