Li Moyi, Cui Dafu, Zhang Youshang
Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences.
IUBMB Life. 2002 Jan;53(1):57-60. doi: 10.1080/15216540210808.
A3 Val is important for insulin activity. It is invariant in insulins from different species studied thus far. Based on the three dimensional structure of insulin, it was thought to be involved in receptor binding. Its replacement by Leu resulted in remarkable lowering of insulin activity, indicating the crucial requirement of the side chain geometry at this position. When A3 Val was replaced by Thr, which is hydrophilic but isosteric with Val, substantial insulin activity was retained. Therefore, the isosteric requirement for receptor binding at this site is more stringent than the hydrophobic requirement. Here we report the replacement of A3 Val of porcine insulin by the unnatural allo-Thr. The in vivo biological activity of A3 allo-Thr insulin is similar to that of A3 Thr insulin or native insulin, but its receptor binding activity is 7.6% instead of 50% for A3 Thr insulin, indicating that at the A3 position the hydrophilic OH group of Thr could be more tolerated in receptor binding than the OH group of allo-Thr. The retention of insulin activity by substituting A3 Val with the unnatural isosteric allo-Thr demonstrates again the importance of isosteric interaction in the binding of insulin with its receptor.
A3位缬氨酸对胰岛素活性很重要。在迄今为止所研究的不同物种的胰岛素中,它是不变的。基于胰岛素的三维结构,曾认为它参与受体结合。用亮氨酸取代它会导致胰岛素活性显著降低,这表明该位置侧链几何结构的关键需求。当A3位缬氨酸被苏氨酸取代时,苏氨酸是亲水性的但与缬氨酸等电子体,胰岛素仍保留大量活性。因此,该位点受体结合的等电子体需求比疏水需求更严格。在此我们报道用非天然的别苏氨酸取代猪胰岛素的A3位缬氨酸。A3位别苏氨酸胰岛素的体内生物活性与A3位苏氨酸胰岛素或天然胰岛素相似,但其受体结合活性为7.6%,而A3位苏氨酸胰岛素为50%,这表明在A3位,苏氨酸的亲水性羟基在受体结合中比别苏氨酸的羟基更能被耐受。用非天然等电子体别苏氨酸取代A3位缬氨酸后胰岛素活性的保留再次证明了等电子体相互作用在胰岛素与其受体结合中的重要性。