Ebert C, Ebert G, Rossmeissl G
Adv Exp Med Biol. 1977;86B:205-11. doi: 10.1007/978-1-4757-9113-6_14.
Addition of cysteine to the double bonds of polydehydroalanine and copolymers of dehydroalanine (DHA) and methylcysteine, alanine, leucine or gamma- methyl-L-glutamate is accompanied by increased solubility and decreased molecular weight. This result is due to a peptide bond cleavage caused by formation of a thiazolidine as a consequence of nucleophilic attack by the sulfur atom on the preceding C=O group and subsequent splitting of the peptide bond by nucleophilic attack of an OH ion. This mechanism is predominant in alkaline media; in acid another mechanism is favoured; carbonyl-oxygen attacks the carbonyl-C-atom of the cysteine residue, forming a second ring system. Addition of one water molecule then yields two peptide fragments, one of them a terminal cysteine residue. Both mechanisms could be confirmed in the case of gamma-L-glutamyl-dehydroalanyl-glycine by adding cysteine. Furthermore, it could be shown that SH-glutathione is decomposed at alevated temperatures according to the two mechanisms mentioned. This SH-induced peptide bond cleavage can be used for selective peptide chain splitting of cysteine-containing polypeptides and proteins under relatively mild conditions.
向聚脱氢丙氨酸以及脱氢丙氨酸(DHA)与甲基半胱氨酸、丙氨酸、亮氨酸或γ-甲基-L-谷氨酸的共聚物的双键中添加半胱氨酸,会伴随着溶解度增加和分子量降低。这一结果是由于硫原子对前面的C=O基团进行亲核攻击形成噻唑烷,随后OH离子进行亲核攻击导致肽键断裂所致。这种机制在碱性介质中占主导;在酸性条件下,另一种机制更受青睐;羰基氧攻击半胱氨酸残基的羰基碳原子,形成第二个环系。然后添加一个水分子会产生两个肽片段,其中一个是末端半胱氨酸残基。通过添加半胱氨酸,在γ-L-谷氨酰-脱氢丙氨酰-甘氨酸的情况下可以证实这两种机制。此外,还可以表明,SH-谷胱甘肽在升高的温度下会根据上述两种机制分解。这种SH诱导的肽键断裂可用于在相对温和的条件下对含半胱氨酸的多肽和蛋白质进行选择性肽链裂解。