Hu S Q, Burke G T, Schwartz G P, Ferderigos N, Ross J B, Katsoyannis P G
Department of Biochemistry, Mount Sinai School of Medicine, City University of New York, New York 10029.
Biochemistry. 1993 Mar 16;32(10):2631-5. doi: 10.1021/bi00061a022.
The alpha-helix formed by the amino acid residues 9-19 of the B-chain of insulin is involved in the stabilization of its three-dimensional structure. We have shown that modification at positions B9, B10, B12, and B16 results in analogues possessing biological activities ranging from ca. 0.2% to ca. 500% relative to that of natural insulin. The lowest potency was displayed by [B12 Asn]insulin, in which the hydrophobic B12 Val residue was replaced by the hydrophilic Asn residue. We now report the synthesis of four insulin analogues in which hydrophobicity is retained, and only the spatial arrangement of atoms in the B12 region is altered. Substitution of B12 Val with alpha-aminoisobutyric acid (Aib), D-Ala, and Phe led to analogues possessing biological activities, in lipogenesis assays, of 8.5%, 2%, and 0.2%, respectively, relative to that of natural insulin. Inversion of the B11-B12 sequence, -Leu-Val-, led to an analogue displaying 3.3% activity. A synthetic B-chain in which the B11 Leu-B12 Val sequence was replaced by B11 Ala-B12 Ile was incapable of combining with the natural A-chain. We conclude that the Val residue in the B12 position in insulin fulfills special side-chain packing requirements involved in the stability of the structure of insulin. Even slight steric alteration at position B12 results in a distortion of the overall conformation of the B-chain which affects its ability to combine with the natural A-chain. This distortion is retained in the corresponding analogue, which is reflected in diminished biological potency.
胰岛素B链9 - 19位氨基酸残基形成的α - 螺旋参与其三维结构的稳定。我们已经表明,在B9、B10、B12和B16位进行修饰会产生生物活性范围约为天然胰岛素0.2%至约500%的类似物。活性最低的是[B12 Asn]胰岛素,其中疏水性的B12位缬氨酸残基被亲水性的天冬酰胺残基取代。我们现在报道四种胰岛素类似物的合成,这些类似物保留了疏水性,仅B12区域的原子空间排列发生了改变。用α - 氨基异丁酸(Aib)、D - 丙氨酸和苯丙氨酸取代B12位缬氨酸,在脂肪生成测定中,相对于天然胰岛素,分别产生了活性为8.5%、2%和0.2%的类似物。B11 - B12序列 - Leu - Val - 的反转产生了一种活性为3.3%的类似物。一种合成的B链,其中B11位亮氨酸 - B12位缬氨酸序列被B11位丙氨酸 - B12位异亮氨酸取代,无法与天然A链结合。我们得出结论,胰岛素B12位的缬氨酸残基满足了胰岛素结构稳定所涉及的特殊侧链堆积要求。即使B12位有轻微的空间改变也会导致B链整体构象扭曲,从而影响其与天然A链结合的能力。这种扭曲在相应的类似物中保留下来,这反映在生物活性降低上。