人γ -谷氨酰水解酶的底物特异性功能多态性改变急性淋巴细胞白血病细胞的催化活性和甲氨蝶呤谷氨酸积累。

Qing Cheng, Bainan Wu, Leo Kager, J Carl Panetta, Jie Zheng, Ching-Hon Pui, Mary V Relling, William E Evans
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引用次数: 75

摘要

我们发现,在非高二倍体b系急性淋巴细胞白血病(ALL)细胞中,经高剂量甲氨蝶呤(HDMTX) (1 g/m i.v)均匀处理后,γ -谷氨酰水化酶(GGH)活性与长链甲氨蝶呤多谷氨酸(MTXPG4-7)的积累之间存在显著的反比关系。为了确定改变人类GGH功能的遗传多态性,我们对ALL儿童基因组DNA的GGH外显子进行了测序,这些儿童在诊断时的ALL细胞中GGH活性范围为7.8倍。低GGH活性患者存在单核苷酸多态性(452C>T, T127I),高GGH活性患者不存在单核苷酸多态性。计算模型表明,T127I取代改变了GGH上催化裂孔末端的分子表面构象,预测这将改变与长链而非短链甲氨蝶呤多谷氨酸的结合亲和力。酶动力学分析显示,与野生型GGH相比,以长链MTXPG5为底物的T127I变体的Km值显著提高(2.7倍),Vmax/Km值降低(67%),而以短链MTXPG2为底物的T127I变体的变化不显著。452C>T单核苷酸多态性(SNP)也与高二倍体b系和T系ALL细胞中较低的GGH活性有关。高加索人(10.0%;95%置信区间(CI) 6.7-13.3%;(n = 155),发现他们的Ile等位基因频率明显高于非裔美国人(4.4%;95% ci 1.2-7.5%;n = 80) (P = 0.033)。这些研究表明,人类GGH基因中的底物特异性功能SNP (452C>T)与HDMTX治疗的白血病细胞中较低的催化活性和较高的长链MTX-PG积累有关。
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A substrate specific functional polymorphism of human gamma-glutamyl hydrolase alters catalytic activity and methotrexate polyglutamate accumulation in acute lymphoblastic leukaemia cells.

We found a significant inverse relationship between gamma-glutamyl hydrolase (GGH) activity and the accumulation of long-chain methotrexate polyglutamates (MTXPG4-7) in non-hyperdiploid B-lineage acute lymphoblastic leukaemia (ALL) cells after uniform treatment with high-dose methotrexate (HDMTX) (1 g/m i.v.). To identify genetic polymorphisms that alter the function of human GGH, we sequenced the GGH exons of genomic DNA from children with ALL, who had a 7.8-fold range of GGH activity in their ALL cells at diagnosis. A single nucleotide polymorphism (452C>T, T127I) was found among patients with low GGH activity, but not found in patients with high GGH activity. Computational modelling indicated that the T127I substitution alters the molecular surface conformation at the catalytic cleft-tail on GGH, which is predicted to alter binding affinity with long chain but not short-chain methotrexate polyglutamates. Enzyme kinetic analysis of heterologously expressed GGH revealed a significantly higher Km (2.7-fold) and lower catalytic efficiency (Vmax/Km reduced 67%) of the T127I variant compared to wild-type GGH using long-chain MTXPG5 as substrate, but not a significant change with short-chain MTXPG2. The 452C>T single nucleotide polymorphism (SNP) was also associated with lower GGH activity in hyperdiploid B-lineage and T lineage ALL cells. Caucasians [10.0%; 95% confidence interval (CI) 6.7-13.3%; n = 155] were found to have a significantly higher frequency of the Ile allele than African-Americans (4.4%; 95% CI 1.2-7.5%; n = 80) (P = 0.033). These studies demonstrate a substrate specific functional SNP (452C>T) in the human GGH gene that is associated with lower catalytic activity and higher accumulation of long-chain MTX-PG in leukaemia cells of patients treated with HDMTX.

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