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γ-谷氨酰转肽酶活性调节对HepG2细胞中硫醇稳态和半胱天冬酶-3活性的影响。

The effects of modulation of gamma-glutamyl transpeptidase activity in HepG2 cells on thiol homeostasis and caspase-3-activity.

作者信息

Iciek Małgorzata, Chwatko Grazyna, Rokita Hanna, Bald Edward, Włodek Lidia

机构信息

Chair of Medical Biochemistry, Collegium Medicum, Jagiellonian University, Kopernika Str., 7, 31-034 Kraków, Poland.

出版信息

Biochim Biophys Acta. 2007 Feb;1773(2):201-8. doi: 10.1016/j.bbamcr.2006.10.013. Epub 2006 Oct 27.

Abstract

The present studies aimed to elucidate how the modulation of gamma-glutamyl transpeptidase (gammaGT) activity in human hepatoma (HepG2) cell line influences H(2)O(2) production, caspase 3 activity, protein S-thiolation by glutathione (GSH), cysteinyl-glycine (Cys-Gly) and cysteine (Cys), and the level of other redox forms of these thiols. The experiments showed that 1-h stimulation of gammaGT elevated H(2)O(2) production, leading to prooxidant conditions. After 24-h stimulation, H(2)O(2) concentration was at the control level, while Cys-Gly-, Cys- and GSH-dependent S-thiolation was markedly increased, which was accompanied by a drop in caspase-3 activity. The inhibition of gammaGT activity by acivicin led to H(2)O(2) decrease after 1-h incubation which still persisted after 24 h. The inhibition of gammaGT activity in HepG2 cells was also connected with the lowering of S-thiolation with Cys and Cys-Gly and with increasing of caspase-3 activity. The results of our studies indicate that the modulation of gammaGT activity can be used to change cellular redox status, and can affect Cys- and Cys-Gly-dependent S-thiolation and caspase-3 activity. We suggest that the role of high gammaGT activity in HepG2 cells can be connected with production of reactive oxygen species and with S-thiolation with Cys and Cys-Gly that can influence activity of caspase 3.

摘要

本研究旨在阐明人肝癌(HepG2)细胞系中γ-谷氨酰转肽酶(γGT)活性的调节如何影响过氧化氢(H₂O₂)的产生、半胱天冬酶3活性、谷胱甘肽(GSH)、半胱氨酰甘氨酸(Cys-Gly)和半胱氨酸(Cys)介导的蛋白质S-硫醇化作用,以及这些硫醇其他氧化还原形式的水平。实验表明,γGT经1小时刺激后会提高H₂O₂的产生,导致促氧化状态。24小时刺激后,H₂O₂浓度恢复至对照水平,而Cys-Gly、Cys和GSH依赖的S-硫醇化作用显著增加,同时半胱天冬酶-3活性下降。阿西维辛抑制γGT活性会导致孵育1小时后H₂O₂减少,24小时后仍持续存在。抑制HepG2细胞中的γGT活性还与Cys和Cys-Gly介导的S-硫醇化作用降低以及半胱天冬酶-3活性增加有关。我们的研究结果表明,γGT活性的调节可用于改变细胞氧化还原状态,并可影响Cys和Cys-Gly依赖的S-硫醇化作用以及半胱天冬酶-3活性。我们认为,HepG2细胞中高γGT活性的作用可能与活性氧的产生以及Cys和Cys-Gly介导的S-硫醇化作用有关,而这可能会影响半胱天冬酶3的活性。

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