Suppr超能文献

来自兔肝脏的C因子。一种新型的DNA聚合酶的聚(dC)和聚[d(G-C)]模板选择性刺激蛋白。

Factor C from rabbit liver. A new poly(dC) and poly[d(G-C)] template-selective stimulatory protein of DNA polymerases.

作者信息

Asna N, Weisman-Shomer P, Waldman E, Fry M

机构信息

Rappaport Institute for Research in the Medical Sciences, Technion- Israel Institute of Technology, Haifa.

出版信息

J Biol Chem. 1989 Mar 25;264(9):5245-52.

PMID:2925691
Abstract

We have undertaken a search for mammalian DNA-binding proteins that enhance the activity of DNA polymerases in a template sequence-specific fashion. In this paper, we report the extensive purification and characterization of a new DNA-binding protein from rabbit liver that selectively stimulates DNA polymerases to copy synthetic poly[d(G-C)] and the poly(dC) strand of poly(dC).poly(dG) as well as single-stranded natural DNA that contains stretches of oligo(dC). The enhancing protein, a polypeptide of 65 kDa designated factor C, stimulates the copying of the two synthetic templates by Escherichia coli DNA polymerase I, Micrococcus luteus polymerase, and eukaryotic DNA polymerases alpha and beta, but not by avian myeloblastosis virus polymerase. Factor C, however, does not affect utilization by these polymerases of the poly(dG) strand of poly(dC).poly(dG), of poly(dC) primed by oligo(dG), or of poly(dA).poly(dT) and poly[d(A-T)]. With polymerase I, Michaelis constants (Km) of poly[d(G-C)] and of the poly(dC) strand of poly(dC).poly(dG) are decreased by factor C 37- and 4.7-fold, respectively, whereas maximum velocity (Vmax) remains unchanged. By contrast, neither the Km value of the poly(dG) strand of poly(dC).poly(dG) nor the Vmax value with this template is altered by factor C. Rates of copying of activated DNA, denatured DNA, or singly primed M13 DNA are not affected significantly by factor C. However, primer extension analysis of the copying of recombinant M13N4 DNA that contains runs of oligo(dC) within an inserted thymidine kinase gene shows that factor C increases processivity by specifically augmenting the efficiency at which polymerase I traverses the oligo(dC) stretches. Direct binding of factor C to denatured DNA is indicated by retention of the protein-DNA complex on columns of DEAE-cellulose. Binding of factor C to poly[d(G-C)] is demonstrated by the specific adsorption of the enhancing protein to columns of poly[d(G-C)]-Sepharose. We propose that by binding to poly[d(G-C)] and to poly(dC).poly(dG), factor C enables tighter binding of some DNA polymerases to these templates and facilitates enzymatic activity.

摘要

我们已着手寻找以模板序列特异性方式增强DNA聚合酶活性的哺乳动物DNA结合蛋白。在本文中,我们报告了从兔肝脏中广泛纯化和鉴定一种新的DNA结合蛋白,该蛋白可选择性地刺激DNA聚合酶复制合成的聚[d(G-C)]和聚(dC).聚(dG)的聚(dC)链以及含有寡聚(dC)片段的单链天然DNA。这种增强蛋白是一种65 kDa的多肽,命名为因子C,它可刺激大肠杆菌DNA聚合酶I、藤黄微球菌聚合酶以及真核DNA聚合酶α和β复制这两种合成模板,但禽成髓细胞瘤病毒聚合酶则不受其刺激。然而,因子C并不影响这些聚合酶对聚(dC).聚(dG)的聚(dG)链、由寡聚(dG)引发的聚(dC)、聚(dA).聚(dT)和聚[d(A-T)]的利用。对于聚合酶I,因子C可使聚[d(G-C)]和聚(dC).聚(dG)的聚(dC)链的米氏常数(Km)分别降低37倍和4.7倍,而最大速度(Vmax)保持不变。相比之下,因子C既不改变聚(dC).聚(dG)的聚(dG)链的Km值,也不改变该模板的Vmax值。因子C对活化DNA、变性DNA或单引物M13 DNA的复制速率没有显著影响。然而,对在插入的胸苷激酶基因内含有寡聚(dC)片段的重组M13N4 DNA复制的引物延伸分析表明,因子C通过特异性提高聚合酶I穿越寡聚(dC)片段的效率来增加持续合成能力。DEAE-纤维素柱上蛋白质-DNA复合物的保留表明因子C与变性DNA直接结合。聚[d(G-C)]-琼脂糖柱对增强蛋白的特异性吸附证明了因子C与聚[d(G-C)]的结合。我们提出,通过与聚[d(G-C)]和聚(dC).聚(dG)结合,因子C使一些DNA聚合酶与这些模板的结合更紧密,并促进酶活性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验