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Organic arsenicals target thioredoxin reductase followed by oxidative stress and mitochondrial dysfunction resulting in apoptosis. | LitMetric

Organic arsenicals target thioredoxin reductase followed by oxidative stress and mitochondrial dysfunction resulting in apoptosis.

Eur J Med Chem

Collaborative Innovation Center of Chemistry for Life Sciences, School of Life Sciences, University of Sciences and Technology of China, Hefei 230027, PR China. Electronic address:

Published: January 2018

AI Article Synopsis

  • Researchers are focusing on designing drugs that target thioredoxin reductase (TrxR) due to its key role in maintaining cellular redox balance.
  • Two organic arsenicals, PIM-PAO-PDT and PAM-PAO-PDT, have been synthesized and demonstrated strong inhibitory effects on TrxR activity, particularly in HL-60 cells.
  • The inhibition causes increased reactive oxygen species (ROS) and oxidative stress, leading to mitochondrial dysfunction and triggering apoptosis, which can be countered by antioxidants like NAC, DTT, or LA.

Article Abstract

Considering the vital role of cellular redox state, more and more researches focus on the design of drugs targeting thioredoxin reductase (TrxR), an important enzyme in maintaining the balance of cellular redox. Here two organic arsenicals, 2-(((4-(1,3,2-dithiarsinan-2-yl) phenyl) imino) methyl) phenol (PIM-PAO-PDT) and N-(4-(1,3,2-dithiarsinan-2-yl) phenyl)-2-hydroxybenzamide (PAM-PAO-PDT), bearing the S-As-S chemical scaffold and different linking groups have been synthesized, and both of them show the better inhibitory activity and selectivity towards HL-60 cells. Importantly, it is illustrated that they can target TrxR selectively and inhibit its activity via the disturbance for Cys83 and Cys88 located in conserved active sites. Afterwards, the cells suffer from the burst of ROS, consumption of antioxidants and high sensitivity for oxidants, which further damage the mitochondria leading to dysfunction including the collapse of membrane potential, ATP level decline, mitochondrial membrane swelling, MPTP opening, Ca and cytochrome c release. Then the mitochondria-dependent apoptosis is triggered by PIM-PAO-PDT and PAM-PAO-PDT, which can also be deterred in the presence of NAC, DTT or LA. Although the organic arsenicals can suppress TrxR activity, the following oxidative stress and mitochondrial dysfunction are the main causes for apoptosis.

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Source
http://dx.doi.org/10.1016/j.ejmech.2017.05.022DOI Listing

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