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A molecular dynamics-guided mutagenesis identifies two aspartic acid residues involved in the pH-dependent activity of OG-OXIDASE 1

Plant Physiol Biochem. 2021-11; 
Anna Scortica, Matteo Capone, Daniele Narzi, Mario Frezzini, Valentina Scafati, Moira Giovannoni, Francesco Angelucci, Leonardo Guidoni, Benedetta Mattei, Manuel Benedetti
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摘要

During the infection, plant cells secrete different OG-oxidase (OGOX) paralogs, defense flavoproteins that oxidize the oligogalacturonides (OGs), homogalacturonan fragments released from the plant cell wall that act as Damage Associated Molecular Patterns. OGOX-mediated oxidation inactivates their elicitor nature, but on the other hand makes OGs less hydrolysable by microbial endo-polygalacturonases (PGs). Among the different plant defense responses, apoplastic alkalinization can further reduce the degrading potential of PGs by boosting the oxidizing activity of OGOXs. Accordingly, the different OGOXs so far characterized showed an optimal activity at pH values greater than 8. Here, an approach of molecular dyn... More

關鍵詞

ABTS-HRP coupled Assay, Molecular dynamics, OGOX, OGs, Plant defense, Site-directed mutagenesis, pH-dependent activity
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