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Glutathione in Cancer Cell Death

Cancers · 2011 · Vol. 3(1) · pp. 1285–1310
Ángel OrtegaSalvador MenaJosé M. Estrela

Abstract

Glutathione (L-γ-glutamyl-L-cysteinyl-glycine; GSH) in cancer cells is particularly relevant in the regulation of carcinogenic mechanisms; sensitivity against cytotoxic drugs, ionizing radiations, and some cytokines; DNA synthesis; and cell proliferation and death. The intracellular thiol redox state (controlled by GSH) is one of the endogenous effectors involved in regulating the mitochondrial permeability transition pore complex and, in consequence, thiol oxidation can be a causal factor in the mitochondrion-based mechanism that leads to cell death. Nevertheless GSH depletion is a common feature not only of apoptosis but also of other types of cell death. Indeed rates of GSH synthesis and fluxes regulate its levels in cellular compartments, and potentially influence switches among different mechanisms of death. How changes in gene expression, post-translational modifications of proteins, and signaling cascades are implicated will be discussed. Furthermore, this review will finally analyze whether GSH depletion may facilitate cancer cell death under in vivo conditions, and how this can be applied to cancer therapy.

Sulfur Compounds in BiologyAmino Acid Enzymes and MetabolismDrug Transport and Resistance MechanismsGlutathioneProgrammed cell deathApoptosisCell biologyCancer cellMitochondrionIntracellularEffectorMitochondrial permeability transition poreCell growth

Funding

  • Ministerio de Ciencia e Innovación
Citations
307
FWCI
7.66
field-weighted impact
References
200
Percentile
98%
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Citations per year
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