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PvuII核酸内切酶的Asp34直接参与DNA小沟识别,并间接参与催化作用。

Asp34 of PvuII endonuclease is directly involved in DNA minor groove recognition and indirectly involved in catalysis.

作者信息

Horton J R, Nastri H G, Riggs P D, Cheng X

机构信息

Department of Biochemistry, Emory University School of Medicine, 1510 Clifton Road, Atlanta, GA, 30322, USA.

出版信息

J Mol Biol. 1998 Dec 18;284(5):1491-504. doi: 10.1006/jmbi.1998.2269.

Abstract

The PvuII restriction endonuclease is a homodimer that recognizes and cleaves the DNA sequence 5'-CAGCTG-3' in double-stranded DNA, and the structure of this enzyme has been reported. In the wild-type enzyme, Asp34 interacts with the internal guanine of the recognition sequence on the minor groove side. The Asp34 codon was altered to specify Gly (D34G), and in vitro studies have revealed that the D34G protein has lost binding specificity for the central G.C base-pairs, and that it cuts the canonical sequence with 10(-4)-fold reduced activity as compared to the wild-type enzyme. We have now determined the structure at 1.59 A resolution of the D34G PvuII endonuclease complexed with a 12 bp duplex deoxyoligonucleotide containing the cognate sequence. The D34G alteration results in several structural changes relative to wild-type protein/DNA complexes. First, the sugar moiety of the internal guanine changes from a C2'-endo to C3'-endo pucker while that of the 3' guanine changes from C3'-endo to C2'-endo pucker. Second, the axial rise between the internal G.C base-pairs is reduced while that between the G.C and flanking base-pairs is expanded. Third, two distinct monomeric active sites are observed that we refer to as being "primed" and "unprimed" for phosphodiester bond cleavage. The primed and unprimed sites differ in the conformation of the Asp58 side-chain, and in the absence from unprimed sites of four networked water molecules. These water molecules, present in the primed site, have been implicated in the catalytic mechanism of this and other endonucleases; some of them can be replaced by the Mg2+ necessary for cleavage. Taken together, these structural changes imply that the Asp34 side-chains from the two subunits maintain a distinct conformation of its DNA substrate, properly situating the target backbone phosphates and indirectly manipulating the active sites. This provides some insight into how recognition of the specific DNA sequence is linked to catalysis by the highly specific restriction endonucleases, and reveals one way in which the structural conformation of the DNA is modulated coordinately with that of the PvuII protein.

摘要

PvuII限制性内切酶是一种同型二聚体,它能识别并切割双链DNA中的5'-CAGCTG-3'序列,且该酶的结构已被报道。在野生型酶中,Asp34在小沟侧与识别序列的内部鸟嘌呤相互作用。将Asp34密码子改变以指定甘氨酸(D34G),体外研究表明D34G蛋白对中央G.C碱基对失去了结合特异性,并且与野生型酶相比,它切割标准序列的活性降低了10^(-4)倍。我们现已确定了与包含同源序列的12bp双链脱氧寡核苷酸复合的D34G PvuII内切酶在1.59 Å分辨率下的结构。相对于野生型蛋白质/DNA复合物,D34G改变导致了几个结构变化。首先,内部鸟嘌呤的糖部分从C2'-内式构象变为C3'-内式构象,而3'鸟嘌呤的糖部分从C3'-内式构象变为C2'-内式构象。其次,内部G.C碱基对之间的轴向上升减少,而G.C与侧翼碱基对之间的轴向上升增加。第三,观察到两个不同的单体活性位点,我们将其称为磷酸二酯键切割的“引发”和“未引发”位点。引发和未引发位点在Asp58侧链的构象上有所不同,并且未引发位点缺少四个网络水分子。存在于引发位点的这些水分子与该内切酶和其他内切酶的催化机制有关;其中一些可以被切割所需的Mg2+取代。综上所述,这些结构变化表明来自两个亚基的Asp34侧链维持其DNA底物的独特构象,正确定位目标主链磷酸基团并间接操纵活性位点。这为特定DNA序列的识别如何与高度特异性的限制性内切酶的催化相联系提供了一些见解,并揭示了DNA的结构构象与PvuII蛋白的结构构象协调调节的一种方式。

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