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Toward Efficient Zn(II)-Based Artificial Nucleases

机译:迈向高效的基于Zn(II)的人工核酸酶

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摘要

A series of cis-cis-triaminocyclohexane Zn(II) complex-anthraquinone intercalator conjugates, designed in such a way to allow their easy synthesis and modification, have been investigated as hydrolytic cleaving agents for plasmid DNA. The ligand structure comprises a triaminocyclohexane platform linked by means of alkyl spacers of different length (from C_4 to C_8) to the anthraquinone group which may intercalate the DNA. At a concentration of 5 M, the complex of the derivative with a C_8 alkyl spacer induces the hydrolytic stand scission of supercoiled DNA with a rate of 4.6 * 10~(-6) s~(-1) at pH 7 and 37 C. The conjugation of the metal complex with the anthraquinone group leads to a 15-fold increase of the cleavage efficiency when compared with the anthraquinone lacking Zn-triaminocyclohexane complex. The straightforward synthetic procedure employed, allowing a systematic change of the spacer length, made possible to gain more insight on the role of the intercalating group in determining the reactivity of the systems. Comparison of the reactivity of the different complexes shows a remarkable increase of the DNA cleaving efficiency with the length of the spacer. In the case of too-short spacers, the advantages due to the increased DNA affinity are canceled due to the incorrect positioning of the reactive group, thus leading to cleavage inhibition.
机译:已研究了一系列顺式-顺式-三氨基环己烷Zn(II)配合物-蒽醌嵌入剂偶联物,其设计使其易于合成和修饰,已作为质粒DNA的水解剂进行了研究。配体结构包括三氨基环己烷平台,该平台通过不同长度的烷基间隔基(从C_4至C_8)连接至可嵌入DNA的蒽醌基团。在5 M的浓度下,衍生物与C_8烷基间隔基的复合物在pH 7和37 C下以4.6 * 10〜(-6)s〜(-1)的速率诱导超螺旋DNA的水解断裂。与缺少锌-三氨基环己烷配合物的蒽醌相比,金属配合物与蒽醌基团的结合导致裂解效率提高了15倍。所采用的直接合成程序可实现间隔物长度的系统性改变,从而使人们对插层基团在确定系统反应性中的作用有更多的了解。比较不同复合物的反应性表明,随着间隔子的长度,DNA切割效率显着提高。在间隔子太短的情况下,由于反应基团的不正确定位而抵消了由于增加的DNA亲和力而产生的优点,从而导致了切割抑制。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2004年第14期|p. 4543-4549|共7页
  • 作者单位

    Contribution from the Dipartimento di Scienze Chimiche e Istituto CNR Tecnologia delle Membrane-Sezione di Padova, Universita di Padova, via Marzolo 1, I-35131 Padova, Italy;

    Dipartimento di Scienze Chimiche, Universita di Trieste, via Giorgeri 1, I-34127 Trieste, Italy;

    Dipartimento di Scienze Farmaceutiche, Universita di Padova, via Marzolo 5, I-35131 Padova, Italy;

    Contribution from the Dipartimento di Scienze Chimiche e Istituto CNR Tecnologia delle Membrane-Sezione di Padova, Universita di Padova, via Marzolo 1, I-35131 Padova, Italy;

    Dipartimento di Scienze Farmaceutiche, Universita di Padova, via Marzolo 5, I-35131 Padova, Italy;

    Dipartimento di Scienze Farmaceutiche, Universita di Padova, via Marzolo 5, I-35131 Padova, Italy;

    Dipartimento di Scienze Farmaceutiche, Universita di Padova, via Marzolo 5, I-35131 Padova, Italy;

    Dipartimento di Scienze Chimiche, Universita di Trieste, via Giorgeri 1, I-34127 Trieste, Italy;

    Contribution from the Dipartimento di Scienze Chimiche e Istituto CNR Tecnologia delle Membrane-Sezione di Padova, Universita di Padova, via Marzolo 1, I-35131 Padova, Italy;

    Dipartimento di Scienze Farmaceutiche, Universita di Padova, via Marzolo 5, I-35131 Padova, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 03:24:45

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