Glycation of Glutamate Cysteine Ligase by 2-Deoxy-D-Ribose and its Potential Impact on Chemoresistance in Glioblastoma

被引:18
作者
Backos, Donald S. [1 ]
Fritz, Kristofer S. [1 ]
McArthur, Debbie G. [1 ]
Kepa, Jadwiga K. [1 ]
Donson, Andrew M. [2 ]
Petersen, Dennis R. [1 ]
Foreman, Nicholas K. [2 ,3 ]
Franklin, Christopher C. [1 ,3 ]
Reigan, Philip [1 ,3 ]
机构
[1] Univ Colorado Anschutz Med Campus, Skaggs Sch Pharm & Pharmaceut Sci, Dept Pharmaceut Sci, Aurora, CO 80045 USA
[2] Univ Colorado Anschutz Med Campus, Dept Pediat, Aurora, CO 80045 USA
[3] Univ Colorado Anschutz Med Campus, Univ Colorado Canc Ctr, Aurora, CO 80045 USA
关键词
Thymidine phosphorylase; Glutamate cysteine ligase; 2-Deoxyribose; Glutathione; Glioblastoma; Glycation; FACTOR THYMIDINE PHOSPHORYLASE; GAMMA-GLUTAMYLCYSTEINE SYNTHETASE; HUMAN ASTROCYTIC TUMORS; END-PRODUCTS; OXIDATIVE STRESS; GLUTATHIONE SYNTHESIS; ANGIOGENIC FACTORS; MODIFIER SUBUNITS; GROWTH; EXPRESSION;
D O I
10.1007/s11064-013-1090-4
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The antioxidant glutathione (GSH) plays a critical role in maintaining intracellular redox homeostasis but in tumors the GSH biosynthetic pathway is often dysregulated, contributing to tumor resistance to radiation and chemotherapy. Glutamate-cysteine ligase (GCL) catalyzes the first and rate-limiting reaction in GSH synthesis, and enzyme function is controlled by GSH feedback inhibition or by transcriptional upregulation of the catalytic (GCLC) and modifier (GCLM) subunits. However, it has recently been reported that the activity of GCLC and the formation of GCL can be modified by reactive aldehyde products derived from lipid peroxidation. Due to the susceptibility of GCLC to posttranslational modifications by reactive aldehydes, we examined the potential for 2-deoxy-d-ribose (2dDR) to glycate GCLC and regulate enzyme activity and GCL formation. 2dDR was found to directly modify both GCLC and GCLM in vitro, resulting in a significant inhibition of GCLC and GCL enzyme activity without altering substrate affinity or feedback inhibition. 2dDR-mediated glycation also inhibited GCL subunit heterodimerization and formation of the GCL holoenzyme complex while not causing dissociation of pre-formed holoenzyme. This PTM could be of particular importance in glioblastoma (GBM) where intratumoral necrosis provides an abundance of thymidine, which can be metabolized by thymidine phosphorylase (TP) to form 2dDR. TP is expressed at high levels in human GBM tumors and shRNA knockdown of TP in U87 GBM cells results in a significant increase in cellular GCL enzymatic activity.
引用
收藏
页码:1838 / 1849
页数:12
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