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利福霉素与哺乳动物核酸聚合酶的相互作用。

Interaction of rifamycins with mammalian nucleic acid polymerizing enzymes.

作者信息

Sethi V S, Okano P

出版信息

Biochim Biophys Acta. 1976 Dec 1;454(2):230-47. doi: 10.1016/0005-2787(76)90227-6.

Abstract

Procedures were established for the isolation and partial purification of DNA polymerase, RNA polymerase and poly(A) polymerase activities from the cytoplasm and nuclei of NIH-Swiss mouse embryos. Based on the elution pattern of these enzyme activities from DEAE-cellulose and phosphocellulose columns in Tris-HCl buffer, pH 8.0, the apparent basicities of the enzymes can be arranged as follows: cytoplasmic(C) poly(A) polymerase greater than (C)DNA polymerase beta greater than (C)DNA polymerase alpha and nuclear(N) poly(A) polymerase greater than (N)DNA polymerase greater than (N)RNA polymerase I greater than (N)RNA polymerase II. Twenty rifamycins, including rifamycin B, rifamycin S, rifamycin SV, and rifamycin SV derivatives, were examined for their ability to inhibit the above mentioned nucleic acid polymerizing enzymes and Simian sarcoma virus type I (SSV-1) reverse transcriptase. Rifamycin SV 3'-formyldiphenylhydrazone, rifamycin SV 3'-formyl-n-octyloxime (AF/013) and rifamycin SV 3'-formyldiphenylmethyloxime (AF/05) inhibited all the tested enzyme activities. Rifamycin SV 3'-formylpropylphenyloxime (AF/015) inhibited cellular nucleic acid polymerase activities but not SSV-1 DNA polymerase activity. Rifamycin SV 3'-formyldinitrophenylhydrazone (AF/DNFL) strongly inhibited reverse transcriptase activity but did not inhibit cellular DNA polymerase activities. AF/DNFI slightly inhibited RNA and poly(A) polymerase activities. Rifamycin SV 3'-formyldipropylhydrazone (AF/DPI) and 2,6-dimethyl-4-N-benzyldemethyl-rifampicin (AF/ABDMP) slightly inhibited reverse transcriptase activity but did not inhibit cellular nucleic acid polymerase activities. Active rifamycin derivatives inhibited enzyme reactions by interacting with the enzyme proteins. Nascent polynucleotide chain elongation continued although at a reduced rate in the presence of inhibitor. The addition of increasing concentrations of nonionic detergent (Triton X-100) to rifamycin-inhibited enzyme reactions fully restored enzyme activities. The presence of highly lipophilic 3'-side chains on active rifamycins and the reversibility of enzyme inhibition by Triton X-100 suggest that the tested nucleic acid polymerizing enzymes may have hydrophobic regions with which inhibitory rifamycins interact.

摘要

已建立从NIH-瑞士小鼠胚胎的细胞质和细胞核中分离和部分纯化DNA聚合酶、RNA聚合酶和聚(A)聚合酶活性的方法。根据这些酶活性在pH 8.0的Tris-HCl缓冲液中从DEAE-纤维素和磷酸纤维素柱上的洗脱模式,酶的表观碱度可排列如下:细胞质(C)聚(A)聚合酶大于(C)DNA聚合酶β大于(C)DNA聚合酶α,以及细胞核(N)聚(A)聚合酶大于(N)DNA聚合酶大于(N)RNA聚合酶I大于(N)RNA聚合酶II。检测了包括利福霉素B、利福霉素S、利福霉素SV和利福霉素SV衍生物在内的20种利福霉素对上述核酸聚合酶和I型猿猴肉瘤病毒(SSV-1)逆转录酶的抑制能力。利福霉素SV 3'-甲酰基二苯腙、利福霉素SV 3'-甲酰基正辛基肟(AF/013)和利福霉素SV 3'-甲酰基二苯甲基肟(AF/05)抑制了所有测试的酶活性。利福霉素SV 3'-甲酰基丙基苯肟(AF/015)抑制细胞核酸聚合酶活性,但不抑制SSV-1 DNA聚合酶活性。利福霉素SV 3'-甲酰基二硝基苯腙(AF/DNFL)强烈抑制逆转录酶活性,但不抑制细胞DNA聚合酶活性。AF/DNFI轻微抑制RNA和聚(A)聚合酶活性。利福霉素SV 3'-甲酰基二丙腙(AF/DPI)和2,6-二甲基-4-N-苄基去甲基利福平(AF/ABDMP)轻微抑制逆转录酶活性,但不抑制细胞核酸聚合酶活性。活性利福霉素衍生物通过与酶蛋白相互作用抑制酶反应。尽管在存在抑制剂的情况下新生多核苷酸链延伸速率降低,但仍继续进行。向利福霉素抑制的酶反应中添加浓度不断增加的非离子去污剂(Triton X-100)可完全恢复酶活性。活性利福霉素上存在高度亲脂性的3'-侧链以及Triton X-100对酶抑制的可逆性表明,所测试的核酸聚合酶可能具有与抑制性利福霉素相互作用的疏水区域。

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