Literature DB >> 15751958

Phosphorylation of bovine adrenodoxin by protein kinase CK2 affects the interaction with its redox partner cytochrome P450scc (CYP11A1).

Matthias Bureik1, Andy Zöllner, Norbert Schuster, Mathias Montenarh, Rita Bernhardt.   

Abstract

Adrenodoxin (Adx), a [2Fe-2S] vertebrate-type ferredoxin, transfers electrons from the NADPH-dependent flavoprotein Adx reductase (AdR) to mitochondrial cytochrome P450 enzymes of the CYP11A and CYP11B families, which catalyze key reactions in steroid hormone biosynthesis. Adx is a known phosphoprotein, but the kinases that phosphorylate Adx have remained mostly obscure. The aim of this study was to identify previously unknown Adx phosphorylating kinases and to acquire a deeper insight into the functional consequences of such a modification. Here, we show for the first time that bovine Adx is a substrate of protein kinase CK2, whereas bovine CYP11A1, CYP11B1, and AdR are not phosphorylated by this kinase. CK2 phosphorylation of mature Adx requires the presence of both the catalytic alpha-subunit and the regulatory beta-subunit of CK2 and takes place exclusively at residue Thr-71, which is located within the redox partner interaction domain of the protein. We created two Adx mutants, Adx-T71E (imitating a phosphorylation) and Adx-T71V (which cannot be phosphorylated at this site), respectively, and investigated how these mutations affected the interaction of Adx with its redox partners. These data were supplemented with detailed spectroscopic and functional assays using the phosphorylated protein. All Adx species behaved like wild type (Adx-WT) with respect to their redox potential, iron-sulfur cluster symmetry, and overall backbone structure. Substrate conversion assays catalyzed by CYP11A1 showed an increase in product formation when Adx-T71E or CK2-phosphorylated Adx were used as electron carrier instead of Adx-WT, whereas the activity toward CYP11B1 was not altered using these Adx species. Additionally, Adx-T71E represents the only full-length Adx mutant which leads to an increase in CYP11A1 product formation. Therefore, characterizing this full-length mutant helps to improve our knowledge on the functional effects of phosphorylations on complex redox systems.

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Year:  2005        PMID: 15751958     DOI: 10.1021/bi047697b

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  5 in total

1.  Specificity of the Redox Complex between Cytochrome P450 24A1 and Adrenodoxin Relies on Carbon-25 Hydroxylation of Vitamin-D Substrate.

Authors:  Amit Kumar; D Fernando Estrada
Journal:  Drug Metab Dispos       Date:  2019-07-09       Impact factor: 3.922

2.  Protein phosphorylation and intermolecular electron transfer: a joint experimental and computational study of a hormone biosynthesis pathway.

Authors:  Andy Zöllner; Melissa A Pasquinelli; Rita Bernhardt; David N Beratan
Journal:  J Am Chem Soc       Date:  2007-03-15       Impact factor: 15.419

3.  The cytochrome P450 24A1 interaction with adrenodoxin relies on multiple recognition sites that vary among species.

Authors:  D Fernando Estrada
Journal:  J Biol Chem       Date:  2018-01-25       Impact factor: 5.157

4.  Predicting CK2 beta-dependent substrates using linear patterns.

Authors:  Teresa Núñez de Villavicencio-Díaz; Yuliet Mazola; Yasser Perera Negrín; Yiliam Cruz García; Osmany Guirola Cruz; Silvio E Perea Rodríguez
Journal:  Biochem Biophys Rep       Date:  2015-08-20

5.  Ferredoxin 1b (Fdx1b) Is the Essential Mitochondrial Redox Partner for Cortisol Biosynthesis in Zebrafish.

Authors:  Aliesha Griffin; Silvia Parajes; Meltem Weger; Andreas Zaucker; Angela E Taylor; Donna M O'Neil; Ferenc Müller; Nils Krone
Journal:  Endocrinology       Date:  2015-12-09       Impact factor: 4.736

  5 in total

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