New enzymatic protecting group techniques for the construction of peptides and glycopeptides.

Biomedica biochimica acta Pub Date : 1991-01-01
H Waldmann, P Braun, H Kunz
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引用次数: 0

Abstract

The use of non-proteases for the selective removal of protecting groups from peptides and glycopeptides is described. The N-terminal deprotection of peptides can be achieved by the hydrolysis of the phenylacetyl (PhAc) amide blocking group catalyzed by penicillin G acylase. On the other hand, the lipase-mediated hydrolysis of n-heptyl (Hep) and 2-bromoethyl esters allows for the liberation of the C-terminal carboxy group. The selective C-terminal deprotection can be applied advantageously for the construction of acid- and base-sensitive polyfunctional O-glycopeptides. In all cases the enzymatic reactions are completely selective and proceed under mildest conditions (pH 7-8, r.t. to 37 degrees C) without damaging the various other functionalities present in the complex substrates.

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构建肽和糖肽的新酶保护基团技术。
描述了使用非蛋白酶选择性地从肽和糖肽中去除保护基团。肽的n端去保护可以通过青霉素G酰化酶催化的苯乙酰基(PhAc)酰胺阻断基水解来实现。另一方面,脂肪酶介导的正庚基(Hep)和2-溴乙基酯的水解允许c端羧基的解放。选择性c端脱保护有利于构建酸碱敏感的多功能o -糖肽。在所有情况下,酶促反应都是完全选择性的,并且在最温和的条件下(pH 7-8,室温至37℃)进行,而不会破坏复合底物中存在的各种其他功能。
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