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ABC核酸外切酶的DNA酶I足迹法

DNase I footprint of ABC excinuclease.

作者信息

Van Houten B, Gamper H, Sancar A, Hearst J E

机构信息

Department of Biochemistry, University of North Carolina at Chapel Hill School of Medicine 27514.

出版信息

J Biol Chem. 1987 Sep 25;262(27):13180-7.

PMID:3308871
Abstract

The incision and excision steps of nucleotide excision repair in Escherichia coli are mediated by ABC excinuclease, a multisubunit enzyme composed of three proteins, UvrA, UvrB, and UvrC. To determine the DNA contact sites and the binding affinity of ABC excinuclease for damaged DNA, it is necessary to engineer a DNA fragment uniquely modified at one nucleotide. We have recently reported the construction of a 40 base pair (bp) DNA fragment containing a psoralen adduct at a central TpA sequence (Van Houten, B., Gamper, H., Hearst, J. E., and Sancar, A. (1986a) J. Biol. Chem. 261, 14135-14141). Using similar methodology a 137-bp fragment containing a psoralen-thymine adduct was synthesized, and this substrate was used in DNase I-footprinting experiments with the subunits of ABC excinuclease. It was found that the UvrA subunit binds specifically to the psoralen modified 137-bp fragment with an apparent equilibrium constant of K8 = 0.7 - 1.5 X 10(8) M-1, while protecting a 33-bp region surrounding the DNA adduct. The equilibrium constant for the nonspecific binding of UvrA was Kns = 0.7 - 2.9 X 10(5) M-1 (bp). In the presence of the UvrB subunit, the binding affinity of UvrA for the damaged substrate increased to K8 = 1.2 - 6.7 X 10(8) M-1 while the footprint shrunk to 19 bp. In addition the binding of the UvrA and UvrB subunits to the damaged substrate caused the 11th phosphodiester bond 5' to the psoralen-modified thymine to become hypersensitive to DNase I cleavage. These observations provide evidence of an alteration in the DNA conformation which occurs during the formation of the ternary UvrA.UvrB.DNA complex. The addition of the UvrC subunit to the UvrA.UvrB.DNA complex resulted in incisions on both sides of the adduct but did not cause any detectable change in the footprint. Experiments with shorter psoralen-modified DNA fragments (20-40 bp) indicated that ABC excinuclease is capable of incising a DNA fragment extending either 3 or 1 bp beyond the normal 5' or 3' incision sites, respectively. These results suggest that the DNA beyond the incision sites, while contributing to ABC excinuclease-DNA complex formation, is not essential for cleavage to occur.

摘要

大肠杆菌核苷酸切除修复的切割和切除步骤由ABC核酸外切酶介导,ABC核酸外切酶是一种由三种蛋白质UvrA、UvrB和UvrC组成的多亚基酶。为了确定ABC核酸外切酶与受损DNA的DNA接触位点和结合亲和力,有必要构建一个在一个核苷酸处经过独特修饰的DNA片段。我们最近报道了构建一个40碱基对(bp)的DNA片段,该片段在中央TpA序列处含有一个补骨脂素加合物(Van Houten, B., Gamper, H., Hearst, J. E., and Sancar, A. (1986a) J. Biol. Chem. 261, 14135 - 14141)。使用类似的方法合成了一个含有补骨脂素 - 胸腺嘧啶加合物的137 - bp片段,并将该底物用于与ABC核酸外切酶亚基的DNase I足迹实验。发现UvrA亚基以表观平衡常数K8 = 0.7 - 1.5×10⁸ M⁻¹特异性结合补骨脂素修饰的137 - bp片段,同时保护DNA加合物周围33 - bp的区域。UvrA非特异性结合的平衡常数为Kns = 0.7 - 2.9×10⁵ M⁻¹(bp)。在UvrB亚基存在的情况下,UvrA对受损底物的结合亲和力增加到K8 = 1.2 - 6.7×10⁸ M⁻¹,而足迹缩小到19 bp。此外,UvrA和UvrB亚基与受损底物的结合导致补骨脂素修饰的胸腺嘧啶5'端的第11个磷酸二酯键对DNase I切割变得高度敏感。这些观察结果提供了在三元UvrA.UvrB.DNA复合物形成过程中发生DNA构象改变的证据。将UvrC亚基添加到UvrA.UvrB.DNA复合物中导致在加合物两侧进行切割,但未导致足迹有任何可检测到的变化。用较短的补骨脂素修饰的DNA片段(20 - 40 bp)进行的实验表明,ABC核酸外切酶能够分别在正常5'或3'切割位点之外延伸3或1 bp的DNA片段上进行切割。这些结果表明,切割位点之外的DNA虽然有助于ABC核酸外切酶 - DNA复合物的形成,但对于切割的发生不是必需的。

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