Liu Fa, Luo Ethan Y, Flora David B, Mezo Adam R
Lilly Research Laboratories , Indianapolis, Indiana 46285, United States.
J Org Chem. 2014 Jan 17;79(2):487-92. doi: 10.1021/jo4024914. Epub 2014 Jan 6.
Sortase A (SrtA)-mediated ligation has emerged as an attractive tool in bioorganic chemistry attributing to the remarkable specificity of the ligation reaction and the physiological reaction conditions. However, the reversible nature of this reaction limits the efficiency of the ligation reaction and has become a significant constraint to its more widespread use. We report herein a novel set of SrtA substrates (LPETGG-isoacyl-Ser and LPETGG-isoacyl-Hse) that can be irreversibly ligated to N-terminal Gly-containing moieties via the deactivation of the SrtA-excised peptide fragment through diketopiperazine (DKP) formation. The convenience of the synthetic procedure and the stability of the substrates in the ligation buffer suggest that both LPETGG-isoacyl-Ser and LPETGG-isoacyl-Hse are valuable alternatives to existing irreversible SrtA substrate sequences.
分选酶A(SrtA)介导的连接反应因其连接反应的显著特异性和生理反应条件,已成为生物有机化学中一种有吸引力的工具。然而,该反应的可逆性限制了连接反应的效率,并成为其更广泛应用的重大障碍。我们在此报告了一组新型的SrtA底物(LPETGG-异酰基-丝氨酸和LPETGG-异酰基-羟丝氨酸),它们可以通过二酮哌嗪(DKP)的形成使SrtA切除的肽片段失活,从而不可逆地连接到含N端甘氨酸的部分。合成过程的便利性以及底物在连接缓冲液中的稳定性表明,LPETGG-异酰基-丝氨酸和LPETGG-异酰基-羟丝氨酸都是现有不可逆SrtA底物序列的有价值替代品。