Guthrie Quibria A E, Young Hailey A, Proulx Caroline
Department of Chemistry , North Carolina State University , Raleigh , NC 27695-8204 , USA . Email:
Chem Sci. 2019 Aug 29;10(41):9506-9512. doi: 10.1039/c9sc04028e. eCollection 2019 Nov 7.
Chemoselective ligation methods that preserve or introduce side chain diversity are critical for chemical synthesis of peptides and proteins. Starting from ketone substrates instead of aldehydes in oxime ligation reactions would allow substitution at the site of ligation; however, synthetic challenges to readily access ketone derivatives from common amino acid building blocks have precluded the widespread use of ketoxime peptide ligation reactions thus far. Moreover, ketones are typically much slower to react in condensation reactions compared to aldehydes. Here, one-pot catalyst-free oxidative couplings of α-substituted -aryl peptides with alkoxyamines provide access to oxime linkages with diverse side chains. Electron-rich -(-MeN-phenyl)-amino acids possessing substituents at the α-carbon were found to be uniquely capable of undergoing site-selective α-C-H oxidations under an O atmosphere at neutral pH. Comparative studies with -arylglycinyl peptides revealed that substitution at the α-carbon caused notable changes in reactivity, with greater sensitivity to solvent and buffer salt composition.
保留或引入侧链多样性的化学选择性连接方法对于肽和蛋白质的化学合成至关重要。在肟连接反应中从酮底物而非醛底物开始,将允许在连接位点进行取代;然而,从常见氨基酸构建块容易获得酮衍生物的合成挑战迄今为止阻碍了酮肟肽连接反应的广泛使用。此外,与醛相比,酮在缩合反应中的反应通常要慢得多。在这里,α-取代的芳基肽与烷氧基胺的无催化剂一锅氧化偶联提供了具有不同侧链的肟键。发现在α-碳上具有取代基的富电子-(-MeN-苯基)-氨基酸在中性pH的O气氛下能够独特地进行位点选择性α-C-H氧化。与芳基甘氨酰肽的比较研究表明,α-碳上的取代导致反应性发生显著变化,对溶剂和缓冲盐组成更敏感。