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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Ligand binding to nucleic acids and proteins: Does selectivity increase with strength?
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Ligand binding to nucleic acids and proteins: Does selectivity increase with strength?

机译:配体与核酸和蛋白质的结合:选择性是否随强度增加?

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摘要

The possible relation of strength and selectivity of ligand binding to biomacromolecules and its theoretical limitation is discussed and illustrated with some examples. It is shown that a linear correlation between selectivity and affinity may be expected on the basis of thermodynamic principles, which also imply that multivalency is as important for selectivity as for affinity enhancement. That strictly linear correlations are often not observed is, apart form statistical problems, mostly due to interactions which may remain constant only at some sites but can differ significantly at other sites, which, e.g., dominate the affinity. Nevertheless, some drugs exhibit in line with theory at the same time a peak affinity and selectivity, such as etonitazene with different opioid receptors. Double-stranded nucleic acids feature relative stable and uniform structures and therefore show relatively good correlations with simple polyamines as ligands and RNA or DNA model receptors. Metalloproteins possess strong binding centers with additional discrimination sites, and can exhibit linear correlations, at least with structurally related metalloproteinases and their inhibitors.
机译:讨论并举例说明了配体与生物大分子结合的强度和选择性的可能关系及其理论局限性。结果表明,根据热力学原理,选择性和亲和力之间存在线性关系,这也意味着多价对于选择性和亲和力提高同样重要。除了统计问题之外,经常没有观察到严格的线性相关性,这主要是由于相互作用,该相互作用仅在某些位点可以保持恒定,而在其他位点则可以显着不同,例如,占优势。然而,某些药物同时显示出符合理论的峰亲和力和选择性,例如具有不同阿片受体的依托尼泽恩。双链核酸具有相对稳定和均匀的结构,因此与作为配体的简单多胺和RNA或DNA模型受体显示出相对良好的相关性。金属蛋白具有强大的结合中心和额外的识别位点,并且至少与结构相关的金属蛋白酶及其抑制剂具有线性相关性。

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