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一种稳定咪唑修饰双链DNA的pKa调节基序的鉴定。

Identification of a pKa-regulating motif stabilizing imidazole-modified double-stranded DNA.

作者信息

Buyst Dieter, Gheerardijn Vicky, Fehér Krisztina, Van Gasse Bjorn, Van Den Begin Jos, Martins José C, Madder Annemieke

机构信息

Department of Organic and Macromolecular Chemistry, NMR and Structure Analysis Unit, Ghent University, Gent, Oost-Vlaanderen 9000, Belgium.

Department of Organic and Macromolecular Chemistry, Organic and Biomimetic Chemistry Research Group, Ghent University, Gent, Oost-Vlaanderen 9000, Belgium.

出版信息

Nucleic Acids Res. 2015 Jan;43(1):51-62. doi: 10.1093/nar/gku1306. Epub 2014 Dec 17.

Abstract

The predictable 3D structure of double-stranded DNA renders it ideally suited as a template for the bottom-up design of functionalized nucleic acid-based active sites. We here explore the use of a 14mer DNA duplex as a scaffold for the precise and predictable positioning of catalytic functionalities. Given the ubiquitous participation of the histidine-based imidazole group in protein recognition and catalysis events, single histidine-like modified duplexes were investigated. Tethering histamine to the C5 of the thymine base via an amide bond, allows the flexible positioning of the imidazole function in the major groove. The mutual interactions between the imidazole and the duplex and its influence on the imidazolium pKaH are investigated by placing a single modified thymine at four different positions in the center of the 14mer double helix. Using NMR and unrestrained molecular dynamics, a structural motif involving the formation of a hydrogen bond between the imidazole and the Hoogsteen side of the guanine bases of two neighboring GC base pairs is established. The motif contributes to a stabilization against thermal melting of 6°C and is key in modulating the pKaH of the imidazolium group. The general features, prerequisites and generic character of the new pKaH-regulating motif are described.

摘要

双链DNA可预测的三维结构使其非常适合作为自下而上设计基于核酸的功能化活性位点的模板。我们在此探索使用14聚体DNA双链体作为支架,用于催化功能的精确和可预测定位。鉴于基于组氨酸的咪唑基团在蛋白质识别和催化事件中普遍存在,我们研究了单组氨酸样修饰的双链体。通过酰胺键将组胺连接到胸腺嘧啶碱基的C5上,可以使咪唑功能在大沟中灵活定位。通过将单个修饰的胸腺嘧啶置于14聚体双螺旋中心的四个不同位置,研究了咪唑与双链体之间的相互作用及其对咪唑鎓pKaH的影响。使用核磁共振和无约束分子动力学,建立了一个结构基序,该基序涉及咪唑与两个相邻GC碱基对的鸟嘌呤碱基的Hoogsteen面之间形成氢键。该基序有助于稳定6°C的热解链,并在调节咪唑鎓基团的pKaH中起关键作用。描述了新的pKaH调节基序的一般特征、先决条件和通用特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac47/4288195/b0442ede66c4/gku1306fig1.jpg

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