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The Role of Intermolecular Disulfide Bonds in Stabilizing the Structure of Peroxiredoxins
Authors:M.?G.?Sharapov  author-information"  >  author-information__contact u-icon-before"  >  mailto:sharapov.mg@yandex.ru"   title="  sharapov.mg@yandex.ru"   itemprop="  email"   data-track="  click"   data-track-action="  Email author"   data-track-label="  "  >Email author,N.?V.?Penkov,S.?V.?Gudkov,R.?G.?Goncharov,V.?I.?Novoselov,E.?E.?Fesenko
Affiliation:1.Institute of Cell Biophysics,Russian Academy of Sciences,Pushchino, Moscow oblast,Russia;2.Moscow Regional Research and Clinical Institute (MONIKI),Moscow,Russia;3.Prokhorov General Physics Institute,Russian Academy of Sciences,Moscow,Russia;4.Lobachevsky State University of Nizhny Novgorod,Nizhny Novgorod,Russia
Abstract:The comparative characterization of thermal stability of human peroxiredoxins 1–6 (Prx1–Prx6) has been performed by physicochemical and biochemical methods and the role of disulfide bonds in stabilizing their structure has been shown. Prx1 and Prx2 among the tested peroxiredoxins exhibit the highest peroxidase activity and thermal stability. Prx1 and Prx2 are more than 2 times more active on average with H2O2 and tert-butyl hydroperoxide as substrates compared to other peroxiredoxins and retain at least 50% activity after 30 min heating at a temperature of 64°C, which is more than 10°C higher compared to Prx3–Prx6. The reduction of the disulfide bonds between Prx1 and Prx2 leads to a decrease of their thermal stability, comparable to the thermal stability of Prx3–Prx6, which confirms the important role of the intermolecular S–S bonds in stabilizing the structure of these proteins.
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