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5'-氟磺酰苯甲酰腺苷对大肠杆菌DNA聚合酶I的亲和标记。确定聚合作用必需的结构域以及Arg-682为反应位点。

Affinity labeling of Escherichia coli DNA polymerase I by 5'-fluorosulfonylbenzoyladenosine. Identification of the domain essential for polymerization and Arg-682 as the site of reactivity.

作者信息

Pandey V N, Modak M J

机构信息

Department of Biochemistry, University of Medicine and Dentistry, New Jersey Medical School, Newark 07103.

出版信息

J Biol Chem. 1988 May 5;263(13):6068-73.

PMID:3283117
Abstract

Preincubation of Escherichia coli DNA polymerase I (pol I) with 5'-fluorosulfonylbenzoyladenosine (5'-FSBA) results in an irreversible inactivation of DNA polymerase activity with concomitant covalent binding of 5'-FSBA to enzyme. pol I-associated 3'-5' exonuclease activity, however, remains unaffected. Kinetic studies of inactivation indicate that the degree of inactivation is directly proportional to the concentration of 5'-FSBA and increases linearly with time. The presence of the metal chelate form of dNTP substrates or template primer, but not the template or primer alone, protects the enzyme from inactivation by 5'-FSBA. A complete inactivation of polymerase activity occurs when 2 mol of 5'-FSBA are covalently linked to 1 mol of enzyme, suggesting two sites of modification. Tryptic peptide mapping of 5'-FSBA-treated enzyme revealed the presence of two distinct peptides containing the affinity label, confirming the presence of two reactive sites in the enzyme. However, we find that only one of the two sites is essential for the polymerase activity since, in the presence of substrate dNTP or template primer during preincubation of enzyme with 5'-FSBA, incorporation of the affinity label is reduced by only 1 mol. Peptide analysis of dNTP or template primer-protected enzyme further revealed that a peptide eluting at 35 min from the C-18 matrix was protected from the 5'-FSBA reaction. It is therefore concluded that this peptide contains the domain essential for polymerase activity. Staphylococcus aureus V-8 protease digestion, amino acid composition, and sequence analysis of this peptide revealed this domain to span residues 669 to 687 in the primary amino acid sequence of pol I, and arginine 682 was found to be the site of 5'-FSBA reactivity.

摘要

用5'-氟磺酰苯甲酰腺苷(5'-FSBA)对大肠杆菌DNA聚合酶I(pol I)进行预孵育,会导致DNA聚合酶活性不可逆失活,同时5'-FSBA与酶发生共价结合。然而,与pol I相关的3'-5'核酸外切酶活性不受影响。失活的动力学研究表明,失活程度与5'-FSBA的浓度成正比,并随时间呈线性增加。dNTP底物或模板引物的金属螯合形式的存在可保护酶不被5'-FSBA失活,但单独的模板或引物则不能。当2摩尔的5'-FSBA与1摩尔的酶共价连接时,聚合酶活性完全失活,这表明有两个修饰位点。对5'-FSBA处理的酶进行胰蛋白酶肽图谱分析,发现存在两个含有亲和标记的不同肽段,证实了酶中存在两个反应位点。然而,我们发现两个位点中只有一个对聚合酶活性至关重要,因为在酶与5'-FSBA预孵育期间存在底物dNTP或模板引物时,亲和标记的掺入仅减少1摩尔。对dNTP或模板引物保护的酶进行肽段分析进一步表明,从C-18基质中在35分钟洗脱的一个肽段可免受5'-FSBA反应的影响。因此可以得出结论,该肽段包含聚合酶活性所必需的结构域。对该肽段进行金黄色葡萄球菌V-8蛋白酶消化、氨基酸组成和序列分析,发现该结构域在pol I的一级氨基酸序列中跨越第669至687位残基,并且发现精氨酸682是5'-FSBA反应的位点。

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