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首页> 外文期刊>Australian Journal of Chemistry: A Journal for the Publication of Original Research in All Branches of Chemistry >The 9-Fluorenylmethoxycarbonyl (Fmoc) Group in Chemical Peptide Synthesis - Its Past, Present, and Future
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The 9-Fluorenylmethoxycarbonyl (Fmoc) Group in Chemical Peptide Synthesis - Its Past, Present, and Future

机译:化学肽合成中的9-芴基甲氧基羰基(FMOC)组 - 其过去,现在和未来

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摘要

The chemical formation of the peptide bond has long fascinated and challenged organic chemists. It requires not only the activation of the carboxyl group of an amino acid but also the protection of theNa- amino group. The more than a century of continuous development of ever-improved protecting group chemistry has been married to dramatic advances in the chemical synthesis of peptides that, itself, was substantially enhanced by the development of solid-phase peptide synthesis by R. B. Merrifield in the 1960s. While the latter technology has continued to undergo further refinement and improvement in both its chemistry and automation, the development of the base-labile 9-fluorenylmethoxycarbonyl (Fmoc) group and its integration into current synthesis methods is considered a major landmark in the history of the chemical synthesis of peptides. The many beneficial attributes of the Fmoc group, which have yet to be surpassed by any other Na-protecting group, allow very rapid and highly efficient synthesis of peptides, including ones of significant size and complexity, making it an even more valuable resource for research in the post-genomic world. This review charts the development and use of this Na- protecting group and its adaptation to address the need for more green chemical peptide synthesis processes.
机译:肽键的化学形成具有长期迷人和挑战的有机化学剂。不仅需要氨基酸的羧基的活化,而且需要对氨基的保护。肽的化学合成的化学合成的巨大进展中,肽的化学合成的巨大进展已经不断发展的一世纪以来,这本身就是通过在20世纪60年代R.B.MERRIFIELD的固相肽合成的显着增强。虽然后一项技术在其化学和自动化方面继续进行进一步的改进和改善,但基本不稳定的9-芴基甲氧基羰基(FMOC)组的发展及其进入当前合成方法的一体化被认为是历史上的主要地标化学合成肽。 FMOC组的许多有益属性尚未被任何其他NA保护组出现,允许非常快速且高效地合成肽,包括具有显着大小和复杂性的肽,使其成为研究的更有价值的资源在后基因组世界。本次综述图表该NA保护组的开发和使用及其适应解决了更多绿色化学肽合成过程的需求。

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