Guo Z Y, Tang Y H, Zhang Z, Feng Y M
Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences.
IUBMB Life. 2001 Dec;52(6):309-14. doi: 10.1080/152165401317291165.
To further understand the role of the three conserved Val residues in insulin, B12Val, B18Val, and A3Val, five insulin mutants-[A3Ser]insulin, [B12Thr]insulin, (desB30)[B12Ser]insulin, [B18Thr] insulin, and [B18Leu]insulin--were obtained by means of site-directed mutagenesis and their receptor-binding activities as well as in vivo biological potencies were measured. The two B18 mutants, [B18Thr]insulin and [B18Leu]insulin, both retained relatively high receptor-binding activities (70% and 30% of native porcine insulin, respectively) as well as relatively high in vivo biological potencies. The receptor-binding activities of [B12Thr]insulin and (desB30)[B12Ser]insulin were 5.1% and 0.2%, respectively. However the in vivo biological potency of [B12Thr]insulin was still about 50% of native insulin, whereas that of (desB30)[B12Ser]insulin decreased drastically. The [A3Ser]insulin retained 1.4% of the receptor-binding activity and low in vivo biological potency. These results, together with previous reports showed that when the three conserved Val residues were replaced by residues containing a beta-branched side-chain, such as Thr or Ile, the insulin mutants retained higher biological activities than those mutants replaced by other residues. Here we propose that Val, Thr, and Ile are "isosteric residues' because they all contain a beta-branched side-chain. This proposal may have perhaps general significance in protein design and protein engineering.
为了进一步了解胰岛素中三个保守的缬氨酸残基(B12位缬氨酸、B18位缬氨酸和A3位缬氨酸)的作用,通过定点诱变获得了五个胰岛素突变体——[A3丝氨酸]胰岛素、[B12苏氨酸]胰岛素、(去B30)[B12丝氨酸]胰岛素、[B18苏氨酸]胰岛素和[B18亮氨酸]胰岛素,并测定了它们的受体结合活性以及体内生物学效价。两个B18突变体,[B18苏氨酸]胰岛素和[B18亮氨酸]胰岛素,都保留了相对较高的受体结合活性(分别为天然猪胰岛素的70%和30%)以及相对较高的体内生物学效价。[B12苏氨酸]胰岛素和(去B30)[B12丝氨酸]胰岛素的受体结合活性分别为5.1%和0.2%。然而,[B12苏氨酸]胰岛素的体内生物学效价仍约为天然胰岛素的50%,而(去B30)[B12丝氨酸]胰岛素的体内生物学效价则急剧下降。[A3丝氨酸]胰岛素保留了1.4%的受体结合活性且体内生物学效价较低。这些结果与先前的报道一起表明,当这三个保守的缬氨酸残基被含有β-支链侧链的残基(如苏氨酸或异亮氨酸)取代时,胰岛素突变体保留的生物学活性高于被其他残基取代的突变体。在此我们提出缬氨酸、苏氨酸和异亮氨酸是“等排残基”,因为它们都含有β-支链侧链。这一观点可能在蛋白质设计和蛋白质工程中具有普遍意义。