Literature DB >> 16125728

Control of glutathione and phytochelatin synthesis under cadmium stress. Pathway modeling for plants.

David G Mendoza-Cózatl1, Rafael Moreno-Sánchez.   

Abstract

Glutathione (GSH) plays several roles in cell metabolism such as redox state regulation, oxidative stress control, and protection against xenobiotics and heavy metals. GSH is synthesized in two steps catalysed by gamma-glutamylcysteine synthetase (gamma-ECS) and glutathione synthetase. gamma-ECS is feedback inhibited by GSH, which has led to the proposal that this enzyme acts as the rate-limiting step in the pathway. Thus far, the study of GSH metabolism has been confined to GSH synthesis (GSH supply), without considering the GSH-consuming enzymes (GSH demand). Several works have shown that the demand block of enzymes may have a significant control on a pathway; therefore, we hypothesize that GSH-consuming enzymes may exert some control on GSH synthesis. A kinetic model of GSH and phytochelatin synthesis in plants was constructed using the software GEPASI and the kinetic data available in the literature. The main conclusions drawn by the model concerning metabolic control analysis are (1) gamma-ECS is indeed a rate-limiting step in GSH synthesis, but only if GSH-consuming enzymes are not taken into account. (2) At low demand, GSH-consuming enzymes exert significant flux-control on GSH synthesis whereas at high demand, supply and demand blocks share the control of flux. (3) In unstressed conditions, flux to GSH is controlled mainly by demand, so that gamma-ECS determines the degree of homeostasis of the GSH concentration. Under cadmium exposure, the GSH demand increases and flux-control is re-distributed almost equally between the supply and demand blocks. (4) To enhance phytochelatins synthesis without depleting the GSH pool, at least two enzymes (gamma-ECS and PCS) should be increased and/or, alternatively, a branching flux (GSH-S-transferases) could be partially diminished.

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Year:  2005        PMID: 16125728     DOI: 10.1016/j.jtbi.2005.07.003

Source DB:  PubMed          Journal:  J Theor Biol        ISSN: 0022-5193            Impact factor:   2.691


  17 in total

1.  Influence of Zn-contaminated soils in the antioxidative defence system of wheat (Triticum aestivum) and maize (Zea mays) at different exposure times: potential use as biomarkers.

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Journal:  Ecotoxicology       Date:  2014-10-31       Impact factor: 2.823

2.  The role of skeletal muscle in liver glutathione metabolism during acetaminophen overdose.

Authors:  L M Bilinsky; M C Reed; H F Nijhout
Journal:  J Theor Biol       Date:  2015-04-16       Impact factor: 2.691

3.  Kinetics of inhibition of isoproturon to glutathione-associated enzymes in wheat.

Authors:  Nemat M Hassan; Mamdouh M Nemat Alla
Journal:  Physiol Mol Biol Plants       Date:  2020-06-11

4.  Influence of phosphorous fertilization on copper phytoextraction and antioxidant defenses in castor bean (Ricinus communis L.).

Authors:  Guoyong Huang; Muhammad Shahid Rizwan; Chao Ren; Guangguang Guo; Qingling Fu; Jun Zhu; Hongqing Hu
Journal:  Environ Sci Pollut Res Int       Date:  2016-11-23       Impact factor: 4.223

Review 5.  Long-distance transport, vacuolar sequestration, tolerance, and transcriptional responses induced by cadmium and arsenic.

Authors:  David G Mendoza-Cózatl; Timothy O Jobe; Felix Hauser; Julian I Schroeder
Journal:  Curr Opin Plant Biol       Date:  2011-08-05       Impact factor: 7.834

6.  Lower cadmium accumulation and higher antioxidative capacity in edible parts of Brassica campestris L. seedlings applied with glutathione under cadmium toxicity.

Authors:  Yifan Huang; Zhengbo Zhu; Xue Wu; Zili Liu; Jianwen Zou; Yahua Chen; Nana Su; Jin Cui
Journal:  Environ Sci Pollut Res Int       Date:  2019-03-21       Impact factor: 4.223

7.  Phytochelatin synthase of Thlaspi caerulescens enhanced tolerance and accumulation of heavy metals when expressed in yeast and tobacco.

Authors:  Ge-Yu Liu; Yu-Xiu Zhang; Tuan-Yao Chai
Journal:  Plant Cell Rep       Date:  2011-02-16       Impact factor: 4.570

8.  Salt affects plant Cd-stress responses by modulating growth and Cd accumulation.

Authors:  Jin Xu; Hengxia Yin; Xiaojing Liu; Xia Li
Journal:  Planta       Date:  2009-11-27       Impact factor: 4.116

9.  Protective effects of proline against cadmium toxicity in micropropagated hyperaccumulator, Solanum nigrum L.

Authors:  Jin Xu; HengXia Yin; Xia Li
Journal:  Plant Cell Rep       Date:  2008-11-29       Impact factor: 4.570

10.  Investigating arsenic susceptibility from a genetic perspective in Drosophila reveals a key role for glutathione synthetase.

Authors:  Jorge G Muñiz Ortiz; Robert Opoka; Daniel Kane; Iain L Cartwright
Journal:  Toxicol Sci       Date:  2008-09-08       Impact factor: 4.849

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