Cheng Qing, Cheng Cheng, Crews Kristine R, Ribeiro Raul C, Pui Ching-Hon, Relling Mary V, Evans William E
Hematological Malignancies Program, Department of Pharmaceutical Sciences, St. Jude Children's Research Hospital, Memphis, TN 38105, USA.
Am J Hum Genet. 2006 Aug;79(2):264-74. doi: 10.1086/505645. Epub 2006 Jun 6.
Gamma-glutamyl hydrolase (GGH) catalyzes degradation of the active polyglutamates of natural folates and the antifolate methotrexate (MTX). We found that GGH activity is directly related to GGH messenger RNA expression in acute lymphoblastic leukemia (ALL) cells of patients with a wild-type germline GGH genotype. We identified two CpG islands (CpG1 and CpG2) in the region extending from the GGH promoter through the first exon and into intron 1 and showed that methylation of both CpG islands in the GGH promoter (seen in leukemia cells from approximately 15% of patients with nonhyperdiploid B-lineage ALL) is associated with significantly reduced GGH mRNA expression and catalytic activity and with significantly higher accumulation of MTX polyglutamates (MTXPG(4-7)) in ALL cells. Furthermore, methylation of CpG1 was leukemia-cell specific and had a pronounced effect on GGH expression, whereas methylation of CpG2 was common in leukemia cells and normal leukocytes but did not significantly alter GGH expression. These findings indicate that GGH activity in human leukemia cells is regulated by epigenetic changes, in addition to previously recognized genetic polymorphisms and karyotypic abnormalities, which collectively determine interindividual differences in GGH activity and influence MTXPG accumulation in leukemia cells.
γ-谷氨酰水解酶(GGH)催化天然叶酸和抗叶酸药物甲氨蝶呤(MTX)的活性多聚谷氨酸盐的降解。我们发现,在具有野生型种系GGH基因型的急性淋巴细胞白血病(ALL)患者细胞中,GGH活性与GGH信使核糖核酸表达直接相关。我们在从GGH启动子延伸至第一个外显子并进入内含子1的区域中鉴定出两个CpG岛(CpG1和CpG2),并表明GGH启动子中两个CpG岛的甲基化(在约15%的非超二倍体B系ALL患者的白血病细胞中可见)与GGH信使核糖核酸表达和催化活性显著降低以及ALL细胞中甲氨蝶呤多聚谷氨酸盐(MTXPG(4-7))的显著更高积累相关。此外,CpG1的甲基化具有白血病细胞特异性,对GGH表达有显著影响,而CpG2的甲基化在白血病细胞和正常白细胞中常见,但不会显著改变GGH表达。这些发现表明,除了先前认识到的基因多态性和核型异常外,人类白血病细胞中的GGH活性还受表观遗传变化的调节,这些因素共同决定了个体间GGH活性的差异,并影响白血病细胞中MTXPG的积累。