Sastry S S, Ross B M
Laboratory of Molecular Genetics, Box 174, The Rockefeller University, New York, New York 10021, USA.
J Biol Chem. 1997 Mar 28;272(13):8644-52. doi: 10.1074/jbc.272.13.8644.
We have discovered that T7 RNA polymerase, purified to apparent homogeneity from overexpressing Escherichia coli cells, possesses a DNase and an RNase activity. Mutations in the active center of T7 RNA polymerase abolished or greatly decreased the nuclease activity. This nuclease activity is specific for single-stranded DNA and RNA oligonucleotides and does not manifest on double-stranded DNAs. Under the conditions of promoter-driven transcription on double-stranded DNA, no nuclease activity was observed. The nuclease attacks DNA oligonucleotides in mono- or dinucleotide steps. The nuclease is a 3' to 5' exonuclease leaving a 3'-OH end, and it degrades DNA oligonucleotides to a minimum size of 3 to 5 nucleotides. It is completely dependent on Mg2+. The T7 RNA polymerase-nuclease is inhibited by T7 lysozyme and heparin, although not completely. In the presence of rNTPs, the nuclease activity is suppressed but an unusual 3'-end-initiated polymerase activity is unmasked. RNA from isolated pre-elongation and elongation complexes arrested by a psoralen roadblock or naturally paused at the 3'-end of an oligonucleotide template exhibited evidence of nuclease activity. The nuclease activity of T7 RNA polymerase is unrelated to pyrophosphorolysis. We propose that the nuclease of T7 RNA polymerase acts only in arrested or paused elongation complexes, and that in combination with the unusual 3'-end polymerizing activity, causes heterogeneity in elongation complexes. Additionally, during normal transcription elongation, the kinetic balance between nuclease and polymerase is shifted in favor of polymerase.
我们发现,从过表达的大肠杆菌细胞中纯化至表观均一的T7 RNA聚合酶具有DNA酶和RNA酶活性。T7 RNA聚合酶活性中心的突变消除或大大降低了核酸酶活性。这种核酸酶活性对单链DNA和RNA寡核苷酸具有特异性,对双链DNA无活性。在双链DNA上启动子驱动的转录条件下,未观察到核酸酶活性。核酸酶以单核苷酸或二核苷酸步骤攻击DNA寡核苷酸。该核酸酶是一种3'至5'外切核酸酶,留下3'-OH末端,它将DNA寡核苷酸降解至最小尺寸为3至5个核苷酸。它完全依赖于Mg2+。T7 RNA聚合酶核酸酶受到T7溶菌酶和肝素的抑制,尽管不是完全抑制。在rNTP存在的情况下,核酸酶活性受到抑制,但一种不寻常的3'-末端起始聚合酶活性被暴露出来。来自被补骨脂素路障阻滞或在寡核苷酸模板3'-末端自然暂停的分离的预延伸和延伸复合物的RNA表现出核酸酶活性的证据。T7 RNA聚合酶的核酸酶活性与焦磷酸解无关。我们提出,T7 RNA聚合酶的核酸酶仅在停滞或暂停的延伸复合物中起作用,并且与不寻常的3'-末端聚合活性相结合,导致延伸复合物中的异质性。此外,在正常转录延伸过程中,核酸酶和聚合酶之间的动力学平衡向有利于聚合酶的方向转移。