Wang S H, Hu S Q, Burke G T, Katsoyannis P G
Department of Biochemistry, Mount Sinai School of Medicine, City University of New York, New York 10029-6574.
J Protein Chem. 1991 Jun;10(3):313-24. doi: 10.1007/BF01025630.
The beta-turn formed by the amino acid residues 20-23 of the B-chain of insulin has been implicated as an important structural feature of the molecule. In other biologically active peptides, stabilization of beta-turns has resulted in increases in activity. We have synthesized three insulin analogues containing modifications which would be expected to increase the stability of the beta-turn. In two analogues, we have substituted alpha-aminoisobutyric acid (Aib) for the Glu residue normally present in position B21 or for the Arg residue normally present in position B22; in a third compound, we have replaced the Glu residue with its D-isomer. Biological evaluation of these compounds showed that [B21 Aib]insulin displays a potency ca. one-fourth that of natural insulin, while [B22 Aib]insulin is less than 10% as potent. In contrast, [B21 D-Glu]insulin is equipotent with natural insulin. We conclude that the beta-turn region of the insulin molecule normally possesses considerable flexibility, which may be necessary for it to assume a conformation commensurate with high biological activity. If this is the case, [B21 D-Glu]insulin may exhibit a stabilized geometry similar to that of natural insulin when bound to the insulin receptor.
胰岛素B链20 - 23位氨基酸残基形成的β-转角被认为是该分子的一个重要结构特征。在其他生物活性肽中,β-转角的稳定导致活性增加。我们合成了三种胰岛素类似物,其修饰有望增加β-转角的稳定性。在两种类似物中,我们用α-氨基异丁酸(Aib)取代了正常位于B21位的Glu残基或正常位于B22位的Arg残基;在第三种化合物中,我们用其D-异构体取代了Glu残基。对这些化合物的生物学评估表明,[B21 Aib]胰岛素的效力约为天然胰岛素的四分之一,而[B22 Aib]胰岛素的效力不到天然胰岛素的10%。相比之下,[B21 D-Glu]胰岛素与天然胰岛素效力相当。我们得出结论,胰岛素分子的β-转角区域通常具有相当大的灵活性,这可能是其呈现与高生物活性相称的构象所必需的。如果是这样,[B21 D-Glu]胰岛素在与胰岛素受体结合时可能表现出与天然胰岛素相似的稳定几何结构。