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大肠杆菌DNA聚合酶III全酶α亚基活性位点的定位

Localization of the active site of the alpha subunit of the Escherichia coli DNA polymerase III holoenzyme.

作者信息

Kim D R, Pritchard A E, McHenry C S

机构信息

Department of Biochemistry and Molecular Genetics, University of Colorado Health Sciences Center, Denver 80262, USA.

出版信息

J Bacteriol. 1997 Nov;179(21):6721-8. doi: 10.1128/jb.179.21.6721-6728.1997.

Abstract

Using a deletion approach on the alpha subunit of DNA polymerase III from Escherichia coli, we show that there is an N-proximal polymerase domain which is distinct from a more C-proximal tau and beta binding domain. Although deletion of 60 residues from the alpha N terminus abolishes polymerase activity, deletions of 48, 169, and 342 amino acids from the C terminus progressively impair its catalytic efficiency but preserve an active site. Deletion of 342 C-terminal residues reduces k(cat) 46-fold, increases the Km for gapped DNA 5.5-fold, and increases the Km for deoxynucleoside triphosphates (dNTPs) twofold. The 818-residue protein with polymerase activity displays typical Michaelis-Menten behavior, catalyzing a polymerase reaction that is saturable with substrate and linear with time. With the aid of newly acquired sequences of the polymerase III alpha subunit from a variety of organisms, candidates for two key aspartate residues in the active site are identified at amino acids 401 and 403 of the E. coli sequence by inspection of conserved acidic amino acids. The motif Pro-Asp-X-Asp, where X is a hydrophobic amino acid, is shown to be conserved among all known DnaE proteins, including those from Bacillaceae, cyanobacteria, Mycoplasma, and mycobacteria. The E. coli DnaE deletion protein with only the N-terminal 366 amino acids does not have polymerase activity, consistent with the proposed position of the active-site residues.

摘要

通过对大肠杆菌DNA聚合酶III的α亚基采用缺失方法,我们发现存在一个靠近N端的聚合酶结构域,它与更靠近C端的τ和β结合结构域不同。虽然从α亚基N端缺失60个残基会消除聚合酶活性,但从C端分别缺失48、169和342个氨基酸会逐渐损害其催化效率,但仍保留活性位点。缺失342个C端残基会使k(cat)降低46倍,使缺口DNA的Km增加5.5倍,使脱氧核苷三磷酸(dNTPs)的Km增加两倍。具有聚合酶活性的818个残基的蛋白质表现出典型的米氏行为,催化一个底物饱和且反应速率随时间呈线性的聚合酶反应。借助从多种生物新获得的聚合酶IIIα亚基序列,通过检查保守的酸性氨基酸,在大肠杆菌序列的第401和403位氨基酸处确定了活性位点中两个关键天冬氨酸残基的候选者。仅具有N端366个氨基酸的大肠杆菌DnaE缺失蛋白没有聚合酶活性,这与活性位点残基的推测位置一致。

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