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酰胺键与三氟乙酸(20%)的不稳定性:含β-肌钙蛋白肼基酸的可裂解酰胺键的合成、构象分析及机理研究

Instability of Amide Bond with Trifluoroacetic Acid (20%): Synthesis, Conformational Analysis, and Mechanistic Insights into Cleavable Amide Bond Comprising β-Troponylhydrazino Acid.

作者信息

Dalabehera Nihar Ranjan, Meher Sagarika, Bhusana Palai Bibhuti, Sharma Nagendra K

机构信息

National Institute of Science Education and Research (NISER)-Bhubaneswar, Jatni Campus, Jatni, Odisha 752050, India.

Homi Bhabha National Institute (HBNI), HBNI-Mumbai, Mumbai 400 094, India.

出版信息

ACS Omega. 2020 Oct 1;5(40):26141-26152. doi: 10.1021/acsomega.0c03729. eCollection 2020 Oct 13.

Abstract

The instability of an amide bond with dilute trifluoroacetic acid (TFA) is a rare chemical event. The native amide bonds are stable even in the neat TFA, which is one of the reagents that releases the peptides from the solid support in the solid-supported peptide synthesis method. In the repertoire of unnatural peptidomics, α-/β-hydrazino acids and their peptides are explored for the synthesis of -amino peptide derivatives, and their amide bonds are stable in TFA (∼100%) as natural amide bonds. This report describes the synthesis of a β-hydrazino acid analogue as β-troponylhydrazino acid, containing a nonbenzenoid natural troponyl scaffold. The structural and conformational studies of their hybrid di-/tripeptides with the natural amino acid show that the 2-aminotroponyl residue is involved in hydrogen bonding. Surprisingly, the amide bond of β-troponylhydrazino peptides is cleavable with TFA (∼20%) through the formation of a new heterocyclic molecule -troponylpyrazolidinone or troponylpyrazolidinone. Tropolone and related compounds are excellent biocompatible chromophores. Hence, β-troponylhydrazino acid could be employed for tuning the peptide structure and considered a promising chromophoric acid-sensitive protecting group of a free amine of amino acids/peptides. It could be applied for the estimation of the free amine group functionality by a UV-vis spectrophotometer.

摘要

酰胺键在稀三氟乙酸(TFA)作用下发生的不稳定性是一种罕见的化学现象。天然酰胺键即使在纯TFA中也是稳定的,而TFA是固相肽合成方法中用于从固相载体上释放肽的试剂之一。在非天然肽组学领域,人们探索了α-/β-肼基酸及其肽用于合成-氨基肽衍生物,并且它们的酰胺键在TFA(约100%)中与天然酰胺键一样稳定。本报告描述了一种β-肼基酸类似物即β-氧杂环庚三烯基肼基酸的合成,其含有一个非苯型天然氧杂环庚三烯基骨架。它们与天然氨基酸形成的混合二肽/三肽的结构和构象研究表明,2-氨基氧杂环庚三烯基残基参与了氢键形成。令人惊讶的是,β-氧杂环庚三烯基肼基肽的酰胺键可被TFA(约20%)通过形成一种新的杂环分子-氧杂环庚三烯基吡唑烷酮或氧杂环庚三烯基吡唑烷酮而裂解。氧杂环庚三酮及相关化合物是优良的生物相容性发色团。因此,β-氧杂环庚三烯基肼基酸可用于调节肽结构,并被认为是一种有前景的对氨基酸/肽游离胺具有发色酸敏感性的保护基团。它可通过紫外可见分光光度计用于游离胺基官能团的测定。

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