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突变对DNA底物在DNA聚合酶I(克列诺片段)的聚合酶和3'-5'核酸外切酶位点之间分配的影响。

Effects of mutations on the partitioning of DNA substrates between the polymerase and 3'-5' exonuclease sites of DNA polymerase I (Klenow fragment).

作者信息

Lam W C, Van der Schans E J, Joyce C M, Millar D P

机构信息

Department of Molecular Biology, Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

Biochemistry. 1998 Feb 10;37(6):1513-22. doi: 10.1021/bi9720181.

Abstract

Site-directed mutagenesis and time-resolved fluorescence spectroscopy were used to evaluate the contributions of individual amino acid side chains to the binding of DNA primer-templates to the 3'-5' exonuclease site of the large proteolytic fragment (Klenow fragment) of DNA polymerase I. Mutations were introduced into side chains that have been shown crystallographically to be in close proximity to a DNA 3' terminus bound at the 3'-5' exonuclease site. The wild-type residues were replaced by alanine in each case. To assess the effects of the mutations on DNA binding, time-resolved fluorescence anisotropy measurements were performed on dansyl-labeled primer-templates bound to the mutant enzymes. In contrast to techniques that simply monitor the overall binding of proteins to DNA, the time-resolved fluorescence anisotropy technique was used to determine the fractional occupancies of the polymerase and 3'-5' exonuclease active sites of Klenow fragment. Equilibrium constants describing the partitioning of DNA between the two active sites were obtained for nine different mutant enzymes bound to both matched and mismatched DNA sequences. Mutations of Leu361 and Phe473 caused the largest effects, significantly destabilizing the binding of mismatched DNA substrates to the 3'-5' exonuclease site relative to DNA bound at the polymerase site, consistent with structural data showing that the side chains of these residues are involved in intimate hydrophobic interactions with the 3' terminal and penultimate bases of the primer strand [Beese, L., and Steitz, T. A. (1991) EMBO J. 10, 25-33]. Mutations of the His660 and Glu357 side chains also resulted in significant effects on the binding of mismatched DNA to the 3'-5' exonuclease site. Surprisingly, mutation of Tyr497 increased the partitioning of mismatched DNA into the 3'-5' exonuclease site, suggesting that the tyrosine side chain in the wildtype enzyme destabilizes substrate binding, despite crystallographic data showing that Tyr497 is H-bonded to the DNA substrate. The effects of mutating the amino acid side chains that serve as ligands to two divalent metal ions bound at the 3'-5' exonuclease site, designated A and B, indicated that metal A also helps to bind DNA to the 3'-5' exonuclease site. These results demonstrate that the time-resolved fluorescence anisotropy technique can be used to quantify the energetic contributions associated with each of the crystallographically defined DNA-protein contacts at the 3'-5' exonuclease site.

摘要

采用定点诱变和时间分辨荧光光谱法,评估单个氨基酸侧链对DNA引物模板与DNA聚合酶I的大蛋白水解片段(克列诺片段)的3'-5'核酸外切酶位点结合的贡献。将突变引入到晶体学研究显示与结合在3'-5'核酸外切酶位点的DNA 3'末端紧邻的侧链中。在每种情况下,野生型残基均被丙氨酸取代。为了评估这些突变对DNA结合的影响,对与突变酶结合的丹磺酰标记引物模板进行了时间分辨荧光 anisotropy测量。与简单监测蛋白质与DNA整体结合的技术不同,时间分辨荧光anisotropy技术用于确定克列诺片段的聚合酶和3'-5'核酸外切酶活性位点的占有率。获得了九种不同突变酶与匹配和错配DNA序列结合时描述DNA在两个活性位点之间分配的平衡常数。Leu361和Phe473的突变产生的影响最大,相对于结合在聚合酶位点的DNA,显著破坏了错配DNA底物与3'-5'核酸外切酶位点的结合,这与结构数据一致,该数据表明这些残基的侧链参与了与引物链的3'末端和倒数第二个碱基的紧密疏水相互作用[Beese, L., and Steitz, T. A. (1991) EMBO J. 10, 25 - 33]。His660和Glu357侧链的突变也对错配DNA与3'-5'核酸外切酶位点的结合产生了显著影响。令人惊讶的是,Tyr497的突变增加了错配DNA进入3'-5'核酸外切酶位点的分配,这表明野生型酶中的酪氨酸侧链破坏了底物结合,尽管晶体学数据显示Tyr497与DNA底物形成了氢键。对作为结合在3'-5'核酸外切酶位点的两个二价金属离子(分别称为A和B)配体的氨基酸侧链进行突变的影响表明,金属A也有助于将DNA结合到3'-5'核酸外切酶位点。这些结果表明,时间分辨荧光anisotropy技术可用于量化与3'-5'核酸外切酶位点上每个晶体学定义的DNA-蛋白质接触相关的能量贡献。

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