Survival Curves of Glutathione Synthetase Deficient Human Fibroblasts: Correlation between Radiosensitivity in Hypoxia and Glutathione Synthetase Activity
- 1 January 1985
- journal article
- research article
- Published by Taylor & Francis in International Journal of Radiation Biology
- Vol. 48 (4) , 525-543
- https://doi.org/10.1080/09553008514551591
Abstract
The role of intracellular non-protein bound sulphydryl compounds (NPSH), and in particular that of glutathione (GSH), in the response of cells to ionizing radiation under different O2 concentrations has been assessed using cell strains deficient in glutathione synthetase and exhibiting different NPSH levels. The cell strains used originated from patients with 5-oxoprolinuria and from their relatives (heterozygotes and proficient homozygotes). No correlation has been found between NPSH and GSH concentrations and radiosensitivity under oxic, aerobic and hypoxic conditions. However, a highly significant correlation has been observed between radiosensitivity under hypoxic conditions (and therefore the oxygen enhancement ratio) and the glutathione synthetase activity, suggesting that synthesis of GSH is required after irradiation. In order to explain our results we postulated, beside radical processes, the existence of a GSH-dependent enzymatic repair mechanism for N2 type damage. Hypoxic radiosensitivity measured with survival curves would result from the interaction of both competition and biochemical repair processes.This publication has 79 references indexed in Scilit:
- The oxygen effect in haploid and diploid yeast strains of different sensitivitiesMutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, 1982
- Glutathione in fibroblasts from normal and cystinotic childrenLife Sciences, 1978
- 5-Oxoprolinuria: Biochemical observations and case reportThe Journal of Pediatrics, 1977
- Non-specific reactions of the glutathione oxidant “diamide” with mammalian cellsBiochemical and Biophysical Research Communications, 1972
- Evaluation of a new glutathione-oxidizing reagent for studies of nucleated mammalian cells*1Experimental Cell Research, 1971
- The effect of oxygen on cellular survival and recovery after radiationThe British Journal of Radiology, 1969
- Increase in the Content of Endogenous Sulphydryl Compounds as the Mechanism of Radio–Protective ActionNature, 1966
- Intrinsic Non-Protein Sulphydryl Levels and Cellular RadiosensitivityNature, 1963
- The Modification of Damage Caused by Primary Ionization of Biological TargetsRadiation Research, 1956
- Role of Oxygen in Modifying the Radiosensitivity of E. Coli B.Nature, 1956