Early cysteine-dependent inactivation of 26S proteasomes does not involve particle disassembly

26S蛋白酶体的早期半胱氨酸依赖性失活不涉及粒子的分解

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作者:Martín Hugo, Ioanna Korovila, Markus Köhler, Carlos García-García, J Daniel Cabrera-García, Anabel Marina, Antonio Martínez-Ruiz, Tilman Grune

Abstract

Under oxidative stress 26S proteasomes suffer reversible disassembly into its 20S and 19S subunits, a process mediated by HSP70. This inhibits the degradation of polyubiquitinated proteins by the 26S proteasome and allows the degradation of oxidized proteins by a free 20S proteasome. Low fluxes of antimycin A-stimulated ROS production caused dimerization of mitochondrial peroxiredoxin 3 and cytosolic peroxiredoxin 2, but not peroxiredoxin overoxidation and overall oxidation of cellular protein thiols. This moderate redox imbalance was sufficient to inhibit the ATP stimulation of 26S proteasome activity. This process was dependent on reversible cysteine oxidation. Moreover, our results show that this early inhibition of ATP stimulation occurs previous to particle disassembly, indicating an intermediate step during the redox regulation of the 26S proteasome with special relevance under redox signaling rather than oxidative stress conditions.

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