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5'-脱氧-5'-甲硫基腺苷磷酸化酶——II. 该酶在5'-脱氧-5'-甲硫基腺苷腺嘌呤取代类似物的代谢及抗肿瘤作用中的角色

5'-deoxy-5'-methylthioadenosine phosphorylase--II. Role of the enzyme in the metabolism and antineoplastic action of adenine-substituted analogs of 5'-deoxy-5'-methylthioadenosine.

作者信息

Savarese T M, Dexter D L, Parks R E

出版信息

Biochem Pharmacol. 1983 Jun 15;32(12):1907-16. doi: 10.1016/0006-2952(83)90057-6.

Abstract

The biological activities of several previously synthesized [J. A. Montgomery et al., J. med. Chem. 17, 1197 (1974)] adenine-substituted analogs of 5'-deoxy-5'-methylthio- or 5'-deoxy-5'-ethyl-thioadenosine, including the 2-fluoroadenine, 2-chloroadenine, 2,6-diaminopurine, 8-azaadenine, and 4-aminopyrazolo [3,4-d]pyrimidine-containing derivatives, have been reexamined. It is demonstrated that many of these analogs are cleaved to their respective free base analogs by 5'-deoxy-5'-methyl-thioadenosine phosphorylase (MTAPase), an enzyme associated with polyamine biosynthesis, and that this reaction is necessary for the cytotoxic action of these MTA analogs to be fully expressed. Evidence to support this includes: (1) the growth of two MTAPase-containing human colon carcinoma cell lines (the HCT-15 and DLD-1 lines) was inhibited by these analogs, whereas an MTAPase-deficient cell line, the CCRF-CEM human T-cell leukemia, was relatively insensitive to their cytotoxic action; (2) extracts of the MTAPase-containing colon carcinoma cell lines were able to cleave these analogs to their respective free base analogs; in contrast, extracts of MTAPase-deficient CCRF-CEM cells were unable to cleave these analogs; (3) intact colon carcinoma cells converted these MTA analogs to their corresponding 5'-phosphorylated analog nucleotides, whereas CCRF-CEM cells did not, at least to detectable levels; and (4) the MTA analog, 5'-deoxy-5'-ethylthio-4-aminopyrazolo [3,4-d]pyrimidine ribonucleoside, which is not a substrate of MTAPase, did not form analog nucleotides and was essentially noncytotoxic to all cell lines tested, whereas the corresponding adenine analog, 4-aminopyrazolo [3,4-d]pyrimidine, readily formed analog nucleotides and was highly cytotoxic to all the lines. It is postulated that the corresponding adenine analog 5'-phosphorylated nucleotides are the primary active metabolites of these MTA analogs, having been formed by the cleavage of these nucleosides to free adenine analogs by MTAPase, followed by the conversion of these base analogs to analog nucleotides by adenine phosphoribosyltransferase and the enzymes of adenine nucleotide phosphorylation. This pathway represents a novel drug-activation system for the synthesis of analog nucleotides and has the potential to be exploited chemotherapeutically.

摘要

对几种先前合成的[J. A. 蒙哥马利等人,《药物化学杂志》17, 1197 (1974)]5'-脱氧-5'-甲硫基或5'-脱氧-5'-乙硫基腺苷的腺嘌呤取代类似物的生物活性进行了重新研究。这些类似物包括含2-氟腺嘌呤、2-氯腺嘌呤、2,6-二氨基嘌呤、8-氮杂腺嘌呤以及4-氨基吡唑并[3,4-d]嘧啶的衍生物。结果表明,许多此类类似物可被5'-脱氧-5'-甲硫基腺苷磷酸化酶(MTAPase)裂解为各自的游离碱类似物,MTAPase是一种与多胺生物合成相关的酶,并且该反应对于这些MTA类似物的细胞毒性作用得以充分发挥是必需的。支持这一观点的证据包括:(1)这些类似物抑制了两种含MTAPase的人结肠癌细胞系(HCT-15和DLD-1细胞系)的生长,而MTAPase缺陷的细胞系,即CCRF-CEM人T细胞白血病细胞系,对它们的细胞毒性作用相对不敏感;(2)含MTAPase的结肠癌细胞系提取物能够将这些类似物裂解为各自的游离碱类似物;相比之下,MTAPase缺陷的CCRF-CEM细胞提取物无法裂解这些类似物;(3)完整的结肠癌细胞将这些MTA类似物转化为相应的5'-磷酸化类似物核苷酸,而CCRF-CEM细胞则不能,至少在可检测水平上不能;(4)MTA类似物5'-脱氧-5'-乙硫基-4-氨基吡唑并[3,4-d]嘧啶核糖核苷不是MTAPase的底物,不形成类似物核苷酸,并且对所有测试的细胞系基本无细胞毒性,而相应的腺嘌呤类似物4-氨基吡唑并[3,4-d]嘧啶很容易形成类似物核苷酸,并且对所有细胞系都具有高度细胞毒性。据推测,相应的腺嘌呤类似物5'-磷酸化核苷酸是这些MTA类似物的主要活性代谢产物,它们是通过MTAPase将这些核苷裂解为游离腺嘌呤类似物,随后通过腺嘌呤磷酸核糖基转移酶和腺嘌呤核苷酸磷酸化酶将这些碱基类似物转化为类似物核苷酸而形成的。该途径代表了一种用于合成类似物核苷酸的新型药物激活系统,具有在化疗中加以利用的潜力。

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