Nagai M, Natsumeda Y, Konno Y, Hoffman R, Irino S, Weber G
Department of Medicine, Indiana University School of Medicine, Indianapolis 46202-5200.
Cancer Res. 1991 Aug 1;51(15):3886-90.
The discovery of isozymes (types I and II) of IMP dehydrogenase (IMPDH; EC 1.1.1.205), the rate-limiting enzyme of de novo GTP biosynthesis, has attracted attention as a possible novel approach to cancer diagnosis and selective tumor cell chemotherapy. To elucidate differences in expression and regulation of the two IMPDH isozymes, we examined the steady-state levels of these mRNAs in various types of leukemic cells from patients. Northern blot analysis revealed that type II IMPDH was more active transcriptionally (1.5- to 5.1-fold) in all the leukemic cells examined than in normal lymphocytes, whereas type I expression was similar. The increased expression of type II mRNA in leukemic cells was closely linked with the increase in total IMPDH activity (r = 0.92). When leukemic cells from a patient with chronic granulocytic leukemia in blast crisis were separated into blast-rich and mature leukocyte-rich fractions, the expression of type II mRNA correlated positively with the population of immature leukemic cells, whereas type I expression was unchanged. Treatment of leukemic blasts with 12-O-tetradecanoyl-phorbol-13-acetate for 5 days resulted in a 90% decrease in the expression of type II mRNA with macrophage-like differentiation, while the expression of type I mRNA was relatively stable. These observations suggest that expression of type II IMPDH is stringently linked with immature characteristics of leukemic cells; thus, it should be a selective target for antileukemic chemotherapy.
肌苷酸脱氢酶(IMPDH;EC 1.1.1.205)是从头合成GTP的限速酶,其同工酶(I型和II型)的发现,作为一种可能用于癌症诊断和选择性肿瘤细胞化疗的新方法,已引起关注。为了阐明这两种IMPDH同工酶在表达和调控上的差异,我们检测了患者各种类型白血病细胞中这些mRNA的稳态水平。Northern印迹分析显示,在所有检测的白血病细胞中,II型IMPDH的转录活性比正常淋巴细胞高(1.5至5.1倍),而I型的表达相似。白血病细胞中II型mRNA表达的增加与总IMPDH活性的增加密切相关(r = 0.92)。当将处于急变期的慢性粒细胞白血病患者的白血病细胞分离为富含原始细胞和富含成熟白细胞的组分时,II型mRNA的表达与未成熟白血病细胞群体呈正相关,而I型的表达未改变。用12-O-十四烷酰佛波醇-13-乙酸酯处理白血病原始细胞5天,导致II型mRNA表达下降90%,同时出现巨噬细胞样分化,而I型mRNA的表达相对稳定。这些观察结果表明,II型IMPDH的表达与白血病细胞的未成熟特征密切相关;因此,它应该是抗白血病化疗的一个选择性靶点。