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杂环修饰的 2'-脱氧鸟苷核苷脂质类似物稳定鸟苷凝胶并自组装形成绿色荧光凝胶。

Heterocycle-modified 2'-Deoxyguanosine Nucleolipid Analogs Stabilize Guanosine Gels and Self-assemble to Form Green Fluorescent Gels.

机构信息

Department of Chemistry, Indian Institute of Science Education and Research (IISER), Pune, Dr. Homi Bhabha Road, Pune, 411008, India.

出版信息

Chem Asian J. 2022 Jan 17;17(2):e202101163. doi: 10.1002/asia.202101163. Epub 2021 Dec 16.

Abstract

Nucleoside-lipid conjugates are very useful supramolecular building blocks to construct self-assembled architectures suited for biomedical and material applications. Such nucleoside derivatives can be further synthetically manipulated to endow additional functionalities that could augment the assembling process and impart interesting properties. Here, we report the design, synthesis and self-assembling process of multifunctional supramolecular nucleolipid synthons containing an environment-sensitive fluorescent guanine. The amphiphilic synthons are composed of an 8-(2-(benzofuran-2-yl)vinyl)-guanine core and alkyl chains attached to 3'-O and 5'-O-positions of 2'-deoxyguanosine. The 2-(benzofuran-2-yl)vinyl (BFV) moiety attached at the C8 position of the nucleobase adopted a syn conformation about the glycosidic bond, which facilitated the self-assembly process through the formation of a G-tetrad as the basic unit. While 3',5'-diacylated BFV-modified dG analog stabilized the guanosine hydrogel by hampering the crystallization process and imparted fluorescence, BFV-modified dGs containing longer alkyl chains formed a green fluorescent organogel, which transformed into a yellow fluorescent gel in the presence of a complementary non-fluorescent cytidine nucleolipid. The ability of the dG analog containing short alkyl chains to modulate the mechanical property of a gel, and interesting fluorescence properties and self-assembling behavior exhibited by the dG analogs containing long alkyl chains in response to heat and complementary base underscore the potential use of these new supramolecular synthons in material applications.

摘要

核苷脂质缀合物是非常有用的超分子构建模块,可用于构建适合生物医学和材料应用的自组装结构。此类核苷衍生物可以进一步进行合成修饰,赋予额外的功能,从而增强组装过程并赋予有趣的性质。在这里,我们报告了含有环境敏感荧光鸟嘌呤的多功能超分子核苷脂质缩合剂的设计、合成和自组装过程。两亲性缩合剂由 8-(2-(苯并呋喃-2-基)乙烯基)-鸟嘌呤核心和连接在 2'-脱氧鸟苷 3'-O 和 5'-O 位置的烷基链组成。连接在碱基 C8 位的 2-(苯并呋喃-2-基)乙烯基 (BFV) 部分采用糖苷键的顺式构象,这促进了通过形成 G-四联体作为基本单元的自组装过程。虽然 3',5'-二酰化 BFV 修饰的 dG 类似物通过阻碍结晶过程稳定了鸟苷水凝胶并赋予了荧光,但含有更长烷基链的 BFV 修饰的 dGs 形成了绿色荧光有机凝胶,在存在互补非荧光胞嘧啶核苷脂质的情况下,它转变为黄色荧光凝胶。含有短烷基链的 dG 类似物调节凝胶机械性能的能力,以及含有长烷基链的 dG 类似物对热和互补碱基的有趣荧光性质和自组装行为,突显了这些新的超分子缩合剂在材料应用中的潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d189/7612753/b83a4ff7922d/EMS145044-f011.jpg

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