Author:
Zhang Leilei,Zhang Jie,Ye Zhiwei,Manevich Yefim,Townsend Danyelle M.,Marshall David T.,Tew Kenneth D.
Abstract
AbstractIn biological tissues, radiation causes the formation of reactive oxygen species (ROS), some of which lead to sequential oxidation of certain protein cysteine residues. Resultant cysteinyl radicals are subject to post-translational modification through S-glutathionylation. The present clinical trial was designed to determine if S-glutathionylated serine protease inhibitors (serpins) in blood could be used as biomarkers of exposure to radiation. 56 male prostate cancer patients treated with radiotherapy were enrolled in the trial and levels of S-glutathionylated serpins A1 and A3 were assessed by immunoblotting. Patients were classified into three groups: (1) external beam radiation therapy (EBRT); (2) brachytherapy (BT); (3) both EBRT and BT. Prior to treatment, baseline plasma levels of both unmodified and S-glutathionylated serpins were similar in each group. We identified elevated plasma levels of S-glutathionylated serpin A1 monomer, trimer and serpin A3 monomer in patient blood following radiation. Maximal increased levels of these S-glutathionylated serpins were correlated with increased duration of radiotherapy treatments. We conclude that it is practical to quantify patient plasma S-glutathionylated serpins and that these post-translationally modified proteins are candidate biomarkers for measuring radiation exposure. This provides a platform for use of such biomarkers in trials with the range of drugs that, like radiation, produce ROS.
Publisher
Springer Science and Business Media LLC
Reference21 articles.
1. Personalized Medicine at FDA. A progress & Outlook report (2018).
2. Tew, K. D. Glutathione-associated enzymes in anticancer drug resistance. Cancer Res 54, 4313–4320 (1994).
3. Morgan, M. A., Ten Haken, R. K. & Lawrence, T. S. In Cancer, Principles & Practice of Oncology Cancer, Principles & Practice of Oncology (ed. Lawrence & Rosenberg DeVita) Ch. 289–311 (Lippincott Williams & Wilkins, 2011).
4. Tew, K. D. Redox in redux: Emergent roles for glutathione S-transferase P (GSTP) in regulation of cell signaling and S-glutathionylation. Biochem Pharmacol 73, 1257–1269 (2007).
5. Xiong, Y., Uys, J. D., Tew, K. D. & Townsend, D. M. S-Glutathionylation: From Molecular Mechanisms to Health Outcomes. Antioxidants & redox signaling 15, 233–270 (2011).
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