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Kinetic and Thermodynamic Features Reveal That E. coli BCP Is an Unusually Versatile Peroxiredoxin

机译:动力学和热力学特征表明大肠杆菌BCP是一种异常多功能的过氧氧化毒素

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摘要

In Escherichia coli, bacterioferritin-comigratory protein (BCP) is a peroxiredoxin (Prx) which catalyzes the reduction of H2O2 and organic hydroperoxides. This protein, along with plant PrxQ, is a founding member of one of the least studied subfamilies of Prxs. Recent structural data have suggested that proteins in the BCP/PrxQ group can exist as monomers or dimers; we report here that, by analytical ultracentrifugation, both oxidized and reduced E. coli BCP behave as monomers in solution at concentrations as high as 200 µM. Unexpectedly, thioredoxin (Trx1)-dependent peroxidase assays conducted by stopped flow spectroscopy demonstrated that Vmax,app increases with increasing Trx1 concentrations, indicating a nonsaturable interaction (Km > 100 µM). At a physiologically reasonable Trx1 concentration of 10 µM, the apparent Km value for H2O2 is ~80 µM, and overall Vmax/Km for H2O2, which remains constant over the various Trx1 concentrations (consistent with a ping-pong mechanism), is about 1.3 × 104 M−1 s−1. Our kinetic analyses demonstrated that BCP can utilize a variety of reducing substrates, including Trx1, Trx2, Grx1 and Grx3. BCP exhibited a high redox potential of −145.9 ± 3.2 mV, the highest to date observed for a Prx. Moreover, BCP exhibited a broad peroxide specificity, with comparable rates for H2O2 and cumene hydroperoxide. We determined a pKa of ~5.8 for the peroxidatic cysteine (Cys45) using both spectroscopic and activity titration data. These findings support an important role for BCP in interacting with multiple substrates and remaining active under highly oxidizing cellular conditions, potentially serving as a defense enzyme of last resort.

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