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氨基酸连接的铂(II)化合物:非经典核苷偏好性及其对糖苷键稳定性的影响。

Amino acid-linked platinum(II) compounds: non-canonical nucleoside preferences and influence on glycosidic bond stabilities.

机构信息

Department of Chemistry, Wayne State University, Detroit, MI, 48202, USA.

出版信息

J Biol Inorg Chem. 2019 Oct;24(7):985-997. doi: 10.1007/s00775-019-01693-y. Epub 2019 Jul 29.

Abstract

Nucleobases serve as ideal targets where drugs bind and exert their anticancer activities. Cisplatin (cisPt) preferentially coordinates to 2'-deoxyguanosine (dGuo) residues within DNA. The dGuo adducts that are formed alter the DNA structure, contributing to inhibition of function and ultimately cancer cell death. Despite its success as an anticancer drug, cisPt has a number of drawbacks that reduce its efficacy, including repair of adducts and drug resistance. Some approaches to overcome this problem involve development of compounds that coordinate to other purine nucleobases, including those found in RNA. In this work, amino acid-linked platinum(II) (AAPt) compounds of alanine and ornithine (AlaPt and OrnPt, respectively) were studied. Their reactivity preferences for DNA and RNA purine nucleosides (i.e., 2'-deoxyadenosine (dAdo), adenosine (Ado), dGuo, and guanosine (Guo)) were determined. The chosen compounds form predominantly monofunctional adducts by reacting at the N1, N3, or N7 positions of purine nucleobases. In addition, features of AAPt compounds that impact the glycosidic bond stability of Ado residues were explored. The glycosidic bond cleavage is activated differentially for AlaPt-Ado and OrnPt-Ado isomers. Formation of unique adducts at non-canonical residues and subsequent destabilization of the glycosidic bonds are important features that could circumvent platinum-based drug resistance.

摘要

碱基是药物结合并发挥抗癌活性的理想靶点。顺铂(cisPt)优先与 DNA 中的 2'-脱氧鸟苷(dGuo)残基配位。形成的 dGuo 加合物改变了 DNA 结构,导致功能抑制,最终导致癌细胞死亡。尽管顺铂作为一种抗癌药物取得了成功,但它存在许多降低疗效的缺点,包括加合物的修复和耐药性。克服这个问题的一些方法涉及开发与其他嘌呤碱基配位的化合物,包括 RNA 中的碱基。在这项工作中,研究了氨基酸连接的铂(II)(AAPt)化合物的丙氨酸和鸟氨酸(AlaPt 和 OrnPt)。它们对 DNA 和 RNA 嘌呤核苷(即 2'-脱氧腺苷(dAdo)、腺苷(Ado)、dGuo 和鸟苷(Guo))的反应活性偏好进行了确定。所选的化合物主要通过在嘌呤碱基的 N1、N3 或 N7 位置反应形成单功能加合物。此外,还探讨了影响 Ado 残基糖苷键稳定性的 AAPt 化合物的特征。AlaPt-Ado 和 OrnPt-Ado 异构体的糖苷键断裂被不同程度地激活。在非规范残基形成独特的加合物并随后使糖苷键失稳是可以规避基于铂的耐药性的重要特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f9d/6806012/76f2e0a1fcef/775_2019_1693_Fig1_HTML.jpg

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