Casaretto M, Spoden M, Diaconescu C, Gattner H G, Zahn H, Brandenburg D, Wollmer A
Biol Chem Hoppe Seyler. 1987 Jun;368(6):709-16. doi: 10.1515/bchm3.1987.368.1.709.
After it has been shown that removal of residues B26-B30 leaves insulin with full biological activity, provided the new C-terminus is amidated (Fischer et al. (1985) Biol. Chem. Hoppe-Seyler 366, 521-525), it is demonstrated here that it does not even preclude enhancement of potency. 7 analogues of des-(B26-B30)-insulin-B25-amide were prepared by trypsin-mediated semisynthesis, the replacements being D-PheB24; HisB25, D-PheB25, TrpB25, TyrB25; D-PheB24,B25 and D-PheB24, TyrB25. Mere conversion of the configuration of B25-phenylalanine reduces in vitro potency to 0.5%. If B25-phenylalanine is, however, substituted by histidine or tyrosine activity is increased to 310 or 230, respectively. According to the features common to these two side chains, the favourable effect should be due to their ring structure with balanced aromatic and polar or H-bonding properties, respectively. The results indicate that in the complete insulin molecule the C-terminal pentapeptide modulates the subtle role that residues B24 and/or B25 play in receptor binding and activity; its presence may have a positive or negative effect. The drastic differences in activity between the shortened analogues are in no ways reflected in the CD spectra which are very similar, though clearly different from that of native insulin.
在已证明去除残基B26 - B30后,只要新的C末端酰胺化,胰岛素就具有完全的生物活性(Fischer等人(1985年),《生物化学.霍佩 - 赛勒》366, 521 - 525),在此证明这甚至不排除效力的增强。通过胰蛋白酶介导的半合成制备了7种去(B26 - B30)-胰岛素 - B25 - 酰胺类似物,取代基分别为D - PheB24;HisB25、D - PheB25、TrpB25、TyrB25;D - PheB24,B25和D - PheB24,TyrB25。仅仅改变B25 - 苯丙氨酸的构型会使体外效力降至0.5%。然而,如果B25 - 苯丙氨酸被组氨酸或酪氨酸取代,活性分别增加到310或230。根据这两个侧链的共同特征,有利作用应归因于它们分别具有平衡的芳香性和极性或氢键性质的环结构。结果表明,在完整的胰岛素分子中,C末端五肽调节残基B24和/或B25在受体结合和活性中所起的微妙作用;其存在可能产生正面或负面效应。缩短的类似物之间活性的巨大差异在圆二色光谱中完全没有体现出来,这些光谱非常相似,尽管明显不同于天然胰岛素的光谱。