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T7 RNA聚合酶羧基末端突变体的起始、延伸及持续合成能力

Initiation, elongation, and processivity of carboxyl-terminal mutants of T7 RNA polymerase.

作者信息

Gardner L P, Mookhtiar K A, Coleman J E

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520-8114, USA.

出版信息

Biochemistry. 1997 Mar 11;36(10):2908-18. doi: 10.1021/bi962397i.

Abstract

Bacteriophage T7 RNA polymerase is a single-subunit enzyme which has a C-terminal amino acid sequence of Phe-Ala-Phe-Ala883 (FAFA883). Closely related hydrophobic sequences are present at the C termini of seven other single-subunit RNA polymerases, including the mitochondrial RNA polymerase. Mutations at any of the four C-terminal residues depress initiation rates of T7 RNA polymerase from 50 to 95%, accompanied by large increases in the K(m) values for the initiating nucleotide, GTP, as well as the K(m)'s for promoter DNA. The dramatic drops in initiation rates shown by the mutant enzymes remain after correcting for any alteration in saturation of the enzyme by the initiating nucleotide or the promoter DNA resulting from the changes in K(m). In contrast, the high processivity of the enzyme is not altered by mutations in the last four residues. However, the propensity for the enzyme to add an untemplated nucleotide at the 3'-ends of transcripts is abolished by the A880AFA883 mutation. The C-terminal FAFA sequence or foot appears to interact both with the initiating NTP and with the most downstream nucleotides of the promoter, possibly through hydrophobic interactions with the minor groove, in the region where free radical footprinting of the polymerase-promoter DNA complex suggests that the enzyme binds across the minor groove.

摘要

噬菌体T7 RNA聚合酶是一种单亚基酶,其C端氨基酸序列为Phe-Ala-Phe-Ala883(FAFA883)。包括线粒体RNA聚合酶在内的其他七种单亚基RNA聚合酶的C端也存在密切相关的疏水序列。四个C端残基中任何一个发生突变,都会使T7 RNA聚合酶的起始速率降低50%至95%,同时起始核苷酸GTP的K(m)值以及启动子DNA的K(m)值大幅增加。校正因K(m)变化导致的起始核苷酸或启动子DNA对酶饱和程度的任何改变后,突变酶显示出的起始速率仍会急剧下降。相比之下,酶的高持续合成能力不会因最后四个残基的突变而改变。然而,A880AFA883突变消除了酶在转录本3'端添加非模板核苷酸的倾向。C端的FAFA序列或结构域似乎既与起始NTP相互作用,也与启动子最下游的核苷酸相互作用,可能是通过与小沟的疏水相互作用,在该区域,聚合酶 - 启动子DNA复合物自由基足迹分析表明酶跨小沟结合。

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