首页> 美国卫生研究院文献>Nucleic Acids Research >A new affinity reagent for the site-specific covalent attachment of DNA to active-site nucleophiles: application to the EcoRI and RsrI restriction and modification enzymes.
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A new affinity reagent for the site-specific covalent attachment of DNA to active-site nucleophiles: application to the EcoRI and RsrI restriction and modification enzymes.

机译:一种新的亲和试剂用于将DNA特异性结合到活性位点亲核试剂上:适用于EcoRI和RsrI限制和修饰酶。

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摘要

A modified oligodeoxyribonucleotide duplex containing an unnatural internucleotide trisubstituted 3' to 5' pyrophosphate bond in one strand [5'(oligo1)3'-P(OCH3)P-5'(oligo2) 3'] reacts with nucleophiles in aqueous media by acting as a phosphorylating affinity reagent. When interacted with a protein, a portion of the oligonucleotide [--P-5'(oligo2)3'] becomes attached to an amino acid nucleophilic group through a phosphate of the O-methyl-modified pyrophosphate linkage. We demonstrate the affinity labeling of nucleophilic groups at the active sites of the EcoRI and RsrI restriction and modification enzymes with an oligodeoxyribonucleotide duplex containing a modified scissile bond in the EcoRI recognition site. With the EcoRI and RsrI endonucleases in molar excess approximately 1% of the oligonucleotide becomes attached to the protein, and with the companion methyltransferases the yield approaches 40% for the EcoRI enzyme and 30% for the RsrI methyltransferase. Crosslinking proceeds only upon formation of a sequence-specific enzyme-DNA complex, and generates a covalent bond between the 3'-phosphate of the modified pyrophosphate in the substrate and a nucleophilic group at the active site of the enzyme. The reaction results in the elimination of an oligodeoxyribonucleotide remnant that contains the 3'-O-methylphosphate [5'(oligo1)3'-P(OCH3)] derived from the modified phosphate of the pyrophosphate linkage. Hydrolysis properties of the covalent protein-DNA adducts indicate that phosphoamide (P-N) bonds are formed with the EcoRI endonuclease and methyltransferase.
机译:一种修饰的寡脱氧核糖核苷酸双链体,在一条链中含有一个非天然的核苷酸间三取代的3'至5'焦磷酸键[5'(oligo1)3'-P(OCH3)P-5'(oligo2)3']通过作用与水介质中的亲核试剂反应作为磷酸化亲和试剂。当与蛋白质相互作用时,部分寡核苷酸[-P-5'(oligo2)3']通过O-甲基修饰的焦磷酸酯键的磷酸酯与氨基酸亲核基团连接。我们证明亲和基团的亲和标记在EcoRI和RsrI限制和修饰酶的活性位点上的寡聚脱氧核糖核苷酸双链体,在EcoRI识别位点包含修饰的易裂键。使用摩尔过量的EcoRI和RsrI核酸内切酶时,约有1%的寡核苷酸与蛋白质连接,而伴随着甲基转移酶,EcoRI酶的收率接近40%,RsrI甲基转移酶的收率接近30%。交联仅在形成序列特异性酶-DNA复合物时才进行,并在底物中修饰的焦磷酸的3'-磷酸与酶活性位点的亲核基团之间形成共价键。该反应导致消除了寡聚脱氧核糖核苷酸残基,该残基含有衍生自焦磷酸酯键的改性磷酸酯的3'-O-甲基磷酸酯[5'(oligo1)3'-P(OCH3)]。共价蛋白质-DNA加合物的水解特性表明,磷酸酰胺(P-N)键与EcoRI核酸内切酶和甲基转移酶形成。

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