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内环环炔氨基酸的合成。

Synthesis of Endocyclic Cycloalkyne Amino Acids.

作者信息

Rothman Jeffrey H

机构信息

Herbert Irving Comprehensive Cancer Center, Department of Medicine, Columbia University Medical Center, 1130 St. Nicholas Avenue, New York, New York 10032, United States.

出版信息

ACS Omega. 2022 Mar 4;7(10):9053-9060. doi: 10.1021/acsomega.2c00270. eCollection 2022 Mar 15.

Abstract

"Click-ligation" is a widely adopted and valuable means to ligate biomolecules whereby two appended biologically inert moieties, such as alkynes and azides, link by cycloaddition. For terminal alkynes, Cu catalysis is required which degrades oligonucleotides by catalyzing their hydrolysis but is also physiologically incompatible. The smallest activated alkynes that do not require Cu catalysis are cyclooctynes or dibenzo-cyclooctynes. For this purpose, there are commercially available nucleosides and amino acids that are appended to these moieties. However, these structures are bulky, dissimilar to native amino acids, and when incorporated within biological molecules could likely perturb native structural configuration. Presented are the syntheses of structural analogues of proline with an inserted propargyl moiety within a series of ring sizes. Moreover, a synthetic pathway to medium-size ring heterocycloalkynes mediated by using mild Mitsunobu conditions in tandem with a Nicholas-related strategy for cyclization is introduced. Avoiding the usual harsh acidic conditions for the Nicholas reaction allows improved functional group compatibility.

摘要

“点击连接法”是一种广泛采用且有价值的连接生物分子的方法,通过这种方法,两个附加的生物惰性部分,如炔烃和叠氮化物,通过环加成反应连接在一起。对于末端炔烃,需要铜催化,而铜催化会通过催化寡核苷酸水解使其降解,并且在生理上也不相容。不需要铜催化的最小活性炔烃是环辛炔或二苯并环辛炔。为此,有可商购的连接到这些部分的核苷和氨基酸。然而,这些结构体积庞大,与天然氨基酸不同,并且当掺入生物分子中时可能会扰乱天然结构构型。本文展示了一系列不同环大小的脯氨酸结构类似物的合成,这些类似物在其中插入了炔丙基部分。此外,还介绍了一种合成中号环杂环炔烃的途径,该途径采用温和的 Mitsunobu 条件与尼古拉斯相关的环化策略串联进行。避免尼古拉斯反应通常使用的苛刻酸性条件可提高官能团兼容性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc94/8928491/eccc383a2abf/ao2c00270_0001.jpg

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