Rotoli Bianca Maria, Uggeri Jacopo, Dall'Asta Valeria, Visigalli Rossana, Barilli Amelia, Gatti Rita, Orlandini Guido, Gazzola Gian C, Bussolati Ovidio
Units of General and Clinical Pathology, Department of Experimental Medicine, Universita degli Studi di Parma, Parma, Italy.
Cell Physiol Biochem. 2005;15(6):281-92. doi: 10.1159/000087238.
The resistance to L-asparaginase (ASNase) has been associated to the overexpression of asparagine synthetase (AS), although the role played by other metabolic adaptations has not been yet defined. Both in ASNase-sensitive Jensen rat sarcoma cells and in ARJ cells, their ASNase-resistant counterparts endowed with a five-fold increased AS activity, ASNase treatment rapidly depletes intracellular asparagine. Under these conditions, cell glutamine is also severely reduced and the activity of glutamine synthetase (GS) is very low. After 24 h of treatment, while sensitive cells have undergone massive apoptosis, ARJ cells exhibit a marked increase in GS activity, associated with overexpression of GS protein but not of GS mRNA, and a partial restoration of glutamine and asparagine. However, when ARJ cells are treated with both ASNase and L-methionine-sulfoximine (MSO), an inhibitor of GS, no restoration of cell amino acids occurs and the cell population undergoes a typical apoptosis. No toxicity is observed upon MSO treatment in the absence of ASNase. The effects of MSO are not referable to depletion of cell glutathione or inhibition of AS. These findings indicate that, in the presence of ASNase, the inhibition of GS triggers apoptosis. GS may thus constitute a target for the suppression of ASNase-resistant phenotypes.
对L-天冬酰胺酶(ASNase)的抗性与天冬酰胺合成酶(AS)的过表达有关,尽管其他代谢适应性所起的作用尚未明确。在对ASNase敏感的Jensen大鼠肉瘤细胞和ARJ细胞中,其对ASNase有抗性的对应细胞AS活性增加了五倍,ASNase处理会迅速耗尽细胞内的天冬酰胺。在这些条件下,细胞谷氨酰胺也会严重减少,谷氨酰胺合成酶(GS)的活性非常低。处理24小时后,敏感细胞发生大量凋亡,而ARJ细胞的GS活性显著增加,这与GS蛋白的过表达有关,但与GS mRNA无关,同时谷氨酰胺和天冬酰胺部分恢复。然而,当用ASNase和GS抑制剂L-甲硫氨酸亚砜胺(MSO)处理ARJ细胞时,细胞氨基酸没有恢复,细胞群体发生典型的凋亡。在没有ASNase的情况下,MSO处理未观察到毒性。MSO的作用与细胞谷胱甘肽的消耗或AS的抑制无关。这些发现表明,在存在ASNase的情况下,GS的抑制会引发凋亡。因此,GS可能构成抑制ASNase抗性表型的一个靶点。