Kurose T, Pashmforoush M, Yoshimasa Y, Carroll R, Schwartz G P, Burke G T, Katsoyannis P G, Steiner D F
Department of Biochemistry and Molecular Biology, University of Chicago, Illinois 60637.
J Biol Chem. 1994 Nov 18;269(46):29190-7.
To identify a site within the insulin receptor ectodomain which forms a binding pocket for B25 Phe and is responsible for initiating conformational changes required for high affinity binding of insulin we have used a novel photoreactive insulin, despentapeptide-(B26-B30) [B25 p-azidophenylalanine-alpha-carboxamide] insulin (APC insulin). This derivative has a highly photoreactive azido group incorporated into the aromatic ring of the B25 phenylalanine amide. APC insulin bound to human insulin receptors overexpressed on a transfected Chinese hamster ovary cell line (P3-A) with an apparent potency of 9-fold relative to that of native insulin and stimulated lipogenesis in rat adipocytes with an average potency equal to porcine insulin. Addition of biotin to the B1 Phe amino group to form despentapeptide-(B26-B30) [B1 (6-biotinylamidocaproyl)phenylalanine B25 p-azidophenylalanine-alpha-carboxamide] insulin derivative (Bio-APC insulin) did not adversely affect receptor-binding affinity and provided a convenient ligand for purification of cross-linked complexes. The efficiency of receptor cross-linking with these reagents was high (70%). To identify the site(s) of cross-linking, the insulin receptor in P3-A cells was first metabolically labeled with various individual 3H-labeled amino acids and then photoaffinity labeled with 125I-Bio-APC insulin, isolated, and digested with Lys-C endoproteinase. The resulting cross-linked peptide fragments were separated by streptavidin-affinity chromatography and sequenced. The smallest identified fragment comprised residues 704-718 of the COOH terminus of the alpha-subunit of the insulin receptor. This B25 Phe cross-linked region of the alpha-subunit lies just upstream of the Exon 11-encoded 12-amino acid COOH-terminal region. Aromatic residues in this predicted alpha-helical region may form a binding pocket for B25 Phe to initiate conformational changes required for stabilizing the high affinity binding state.
为了确定胰岛素受体胞外域中形成B25苯丙氨酸结合口袋并负责引发胰岛素高亲和力结合所需构象变化的位点,我们使用了一种新型光反应性胰岛素,去五肽 -(B26 - B30)[B25对叠氮基苯丙氨酸 - α - 羧酰胺]胰岛素(APC胰岛素)。该衍生物在B25苯丙氨酸酰胺的芳香环中引入了一个高光反应性的叠氮基。APC胰岛素与转染的中国仓鼠卵巢细胞系(P3 - A)上过表达的人胰岛素受体结合,其表观效力相对于天然胰岛素高9倍,并在大鼠脂肪细胞中刺激脂肪生成,平均效力与猪胰岛素相当。在B1苯丙氨酸氨基上添加生物素以形成去五肽 -(B26 - B30)[B1(6 - 生物素酰胺基己酰基)苯丙氨酸B25对叠氮基苯丙氨酸 - α - 羧酰胺]胰岛素衍生物(生物素 - APC胰岛素)不会对受体结合亲和力产生不利影响,并为纯化交联复合物提供了一种方便的配体。用这些试剂进行受体交联的效率很高(70%)。为了确定交联位点,首先用各种单独的3H标记氨基酸对P3 - A细胞中的胰岛素受体进行代谢标记,然后用125I - 生物素 - APC胰岛素进行光亲和标记,分离并用地衣芽孢杆菌蛋白酶Lys - C消化。通过链霉亲和素亲和色谱分离得到的交联肽片段并进行测序。鉴定出的最小片段包含胰岛素受体α亚基COOH末端的704 - 718位残基。α亚基的这个B25苯丙氨酸交联区域位于外显子11编码的12个氨基酸COOH末端区域的上游。这个预测的α螺旋区域中的芳香族残基可能形成B25苯丙氨酸的结合口袋,以引发稳定高亲和力结合状态所需的构象变化。