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在尿苷逆转吡唑呋喃抑制的DNA合成过程中,从头嘧啶生物合成的改变。

Alteration in de novo pyrimidine biosynthesis during uridine reversal of pyrazofurin-inhibited DNA synthesis.

作者信息

Ringer D P, Howell B A, Etheredge J L

机构信息

Samuel Roberts Noble Foundation, Inc., Ardmore, Oklahoma 73402.

出版信息

J Biochem Toxicol. 1991 Spring;6(1):19-27. doi: 10.1002/jbt.2570060104.

Abstract

Pyrazofurin, a pyrimidine nucleoside analogue with antineoplastic activity, inhibits cell proliferation and DNA synthesis in cells by inhibiting uridine 5'-phosphate (UMP) synthase. It has been previously shown in concanavalin A (con A)-stimulated guinea pig lymphocytes (23) that pyrazofurin-inhibited DNA synthesis could be selectively reversed by exogenous uridine (Urd). In this report, we have examined possible mechanisms for the Urd reversal with experiments that determine the ability of exogenous Urd to (a) interfere with either the intracellular transport of pyrazofurin, or the conversion of pyrazofurin to its intracellularly active form, pyrazofurin-5'-phosphate; (b) reverse the pyrazofurin block of [14C]orotic acid incorporation into DNA; and (c) alter the pattern of exogenous [3H]Urd incorporation into DNA-thymine (DNA-Thy) and DNA-cytosine (DNA-Cyt) during pyrazofurin inhibition of pyrimidine de novo biosynthesis. The results of these experiments showed that Urd reversal does not occur through altered pyrazofurin transport or intracellular conversion to pyrazofurin-5'-phosphate, nor does it alter the distribution of [3H]Urd in DNA-Thy and DNA-Cyt. Instead, these findings indicate that the primary mechanism for exogenous Urd reversal of pyrazofurin inhibition of DNA synthesis involves the reversal of pyrazofurin inhibition of UMP synthase, thus restoring orotic acid incorporation into lymphocyte DNA through the pyrimidine de novo pathway.

摘要

吡唑呋喃是一种具有抗肿瘤活性的嘧啶核苷类似物,它通过抑制尿苷5'-磷酸(UMP)合酶来抑制细胞增殖和细胞内的DNA合成。先前在伴刀豆球蛋白A(Con A)刺激的豚鼠淋巴细胞中已经表明(23),吡唑呋喃抑制的DNA合成可以被外源性尿苷(Urd)选择性逆转。在本报告中,我们通过实验研究了Urd逆转的可能机制,这些实验确定了外源性Urd(a)干扰吡唑呋喃的细胞内转运或吡唑呋喃向其细胞内活性形式吡唑呋喃-5'-磷酸转化的能力;(b)逆转吡唑呋喃对[14C]乳清酸掺入DNA的阻断作用;以及(c)在吡唑呋喃抑制嘧啶从头生物合成过程中改变外源性[3H]Urd掺入DNA胸腺嘧啶(DNA-Thy)和DNA胞嘧啶(DNA-Cyt)的模式。这些实验结果表明,Urd的逆转不是通过改变吡唑呋喃的转运或细胞内转化为吡唑呋喃-5'-磷酸而发生的,也不会改变[3H]Urd在DNA-Thy和DNA-Cyt中的分布。相反,这些发现表明,外源性Urd逆转吡唑呋喃对DNA合成抑制的主要机制涉及逆转吡唑呋喃对UMP合酶的抑制作用,从而通过嘧啶从头途径恢复乳清酸掺入淋巴细胞DNA。

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