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通过热力学和突变研究定义可卡因结合适体的二级结构要求。

Defining the secondary structural requirements of a cocaine-binding aptamer by a thermodynamic and mutation study.

机构信息

Department of Chemistry, York University, Toronto, Ontario, Canada.

出版信息

Biophys Chem. 2010 Dec;153(1):9-16. doi: 10.1016/j.bpc.2010.09.009. Epub 2010 Oct 4.

Abstract

Isothermal titration calorimetry (ITC) was used to measure the binding affinity and thermodynamics of a cocaine-binding aptamer as a function of pH and NaCl concentration. Tightest binding was achieved at a pH value of 7.4 and under conditions of no added NaCl. These data indicate that ionic interactions occur in the ligand binding mechanism. ITC was also used to measure the binding thermodynamics of a variety of sequence variants of the cocaine-binding aptamer that analyzed which regions and nucleotides of the aptamer are important for maintaining high-affinity binding. Individually, each of the three stems can be shortened, resulting in a reduced binding affinity. If all three stems are shortened, no binding occurs. If all three of the stems in the aptamer are lengthened by five base pairs ligand affinity increases. Changes in nucleotide identity at the three-way junction all decrease the affinity of the aptamer to cocaine. The greatest decrease in affinity results from changes that disrupt the GA base pairs and the identity of T19.

摘要

等温滴定量热法(ITC)被用于测量可卡因结合适体的结合亲和力和热力学性质,这取决于 pH 值和 NaCl 浓度。在 pH 值为 7.4 和没有添加 NaCl 的条件下,达到了最紧密的结合。这些数据表明,离子相互作用发生在配体结合机制中。ITC 还用于测量可卡因结合适体的各种序列变体的结合热力学,这分析了适体的哪些区域和核苷酸对于维持高亲和力结合是重要的。单独地,三个茎中的每一个都可以缩短,导致结合亲和力降低。如果三个茎都缩短,则不会发生结合。如果适体中的三个茎都延长五个碱基对,则配体亲和力增加。在三链结处的核苷酸同一性的变化都会降低适体与可卡因的亲和力。亲和力降低最大的结果是打乱 GA 碱基对和 T19 的同一性的变化。

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