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酵母中的转录:α-鹅膏蕈碱敏感性以及区分RNA聚合酶I和III的其他特性。

Transcription in yeast: alpha-amanitin sensitivity and other properties which distinguish between RNA polymerases I and III.

作者信息

Schultz L D, Hall B D

出版信息

Proc Natl Acad Sci U S A. 1976 Apr;73(4):1029-33. doi: 10.1073/pnas.73.4.1029.

Abstract

Three peaks of DNA-dependent RNA polymerase (RNA nucleotidyltransferase) activity are resolved by chromatography of a sonicated yeast cell extract on DEAE-Sephadex. The enzymes, which are named RNA polymerases I, II, and III in order of elution, show similar catalytic properties to the vertebrate class I, class II, and class III RNA polymerases, respectively. Yeast RNA polymerase III is readily distinguished from yeast polymerase I by its biphasic amnonium sulfate activation profile with native DNA templates, greater enzymatic activity with poly[d(I-C)] than with native salmon sperm DNA, and distinctive chromatographic elution positions from DEAE-cellulose (0.12 M ammonium sulfate) compared with DEAE-Sephadex (0.32 M ammonium sulfate). The three yeast RNA polymerases also show significant differences in alpha-amanitin inhibition. RNA polymerase II is the most sensitive (50% inhibition at 1.0 mug of alpha-amanitin per ml). Contrary to the results for vertebrate systems, yeast polymerase I can be completely inhibited by alpha-amanitin at high concentrations (50% inhibition at 600 mug/ml) while yeast RNA polymerase II BEGINS TO SHOW SIGNIFICANT INHIBITION ONLY AT CONCENTRATIONS EXCEEDING 1 MG/ML. Therefore, yeast RNA polymerases I and III show a pattern of alpha-amanitin sensitivity that is the reverse of that seen for the analogous vertebrate RNA polymerases.

摘要

通过将超声破碎的酵母细胞提取物在二乙氨基乙基葡聚糖(DEAE - Sephadex)上进行层析,可分离出DNA依赖性RNA聚合酶(RNA核苷酸转移酶)活性的三个峰。这些酶按照洗脱顺序分别命名为RNA聚合酶I、II和III,它们分别与脊椎动物的I类、II类和III类RNA聚合酶表现出相似的催化特性。酵母RNA聚合酶III很容易与酵母聚合酶I区分开来,其在天然DNA模板上具有双相硫酸铵激活曲线,对聚[d(I - C)]的酶活性高于天然鲑鱼精DNA,并且与DEAE - 葡聚糖(0.32 M硫酸铵)相比,在DEAE - 纤维素(0.12 M硫酸铵)上具有独特的层析洗脱位置。三种酵母RNA聚合酶在α - 鹅膏蕈碱抑制方面也表现出显著差异。RNA聚合酶II最敏感(每毫升1.0微克α - 鹅膏蕈碱时50%抑制)。与脊椎动物系统的结果相反,酵母聚合酶I在高浓度(600微克/毫升时50%抑制)下可被α - 鹅膏蕈碱完全抑制,而酵母RNA聚合酶II仅在浓度超过1毫克/毫升时才开始表现出显著抑制。因此,酵母RNA聚合酶I和III表现出的α - 鹅膏蕈碱敏感性模式与类似的脊椎动物RNA聚合酶相反。

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