Kaiser N, Bailyes E M, Schneider B S, Cerasi E, Steiner D F, Hutton J C, Gross D J
Department of Endocrinology and Metabolism, Hebrew University-Hadassah Medical Center, Jerusalem, Israel.
Diabetes. 1997 Jun;46(6):953-7. doi: 10.2337/diab.46.6.953.
Psammomys obesus fed a high-calorie diet develops a NIDDM-like syndrome. The use of reverse-phase high-performance liquid chromatography (HPLC) to study Psammomys insulin biosynthesis and release revealed a very delayed elution time for the Psammomys insulin peak appearing near the position of human proinsulin. This unusual peak was initially thought to represent partially processed insulin on the basis of its molecular size and susceptibility to trimming by carboxypeptidase B (CpB). However, the findings of an active carboxypeptidase E (CpE) enzyme and the normal amidated forms of gastrin and cholecystokinin octapeptide (CCK-8) in Psammomys tissues were inconsistent with CpE-related aberrant processing of insulin. Moreover, amino acid sequencing of the delayed peak of Psammomys insulin revealed fully processed insulin with amino acid sequence as predicted by the cDNA. The unique presence of a B-30 phenylalanine residue, resulting in an increased hydrophobicity of the insulin molecule, probably underlies the marked delay in elution time on HPLC. The unusual structure of Psammomys insulin does not appear to contribute to the proinsulinemia observed in diabetic Psammomys since the HPLC-purified molecule did not inhibit PC1 and PC2 convertase activities in an in vitro assay.
喂食高热量饮食的肥胖沙鼠会发展出类似非胰岛素依赖型糖尿病(NIDDM)的综合征。使用反相高效液相色谱法(HPLC)研究沙鼠胰岛素的生物合成和释放发现,沙鼠胰岛素峰的洗脱时间非常延迟,出现在人胰岛素原位置附近。基于其分子大小和对羧肽酶B(CpB)修剪的敏感性,这个不寻常的峰最初被认为代表部分加工的胰岛素。然而,在沙鼠组织中发现了有活性的羧肽酶E(CpE)以及胃泌素和八肽胆囊收缩素(CCK - 8)的正常酰胺化形式,这与CpE相关的胰岛素异常加工不一致。此外,沙鼠胰岛素延迟峰的氨基酸测序显示其为完全加工的胰岛素,氨基酸序列与cDNA预测的一致。B - 30苯丙氨酸残基的独特存在导致胰岛素分子疏水性增加,这可能是HPLC上洗脱时间显著延迟的原因。沙鼠胰岛素的异常结构似乎与糖尿病沙鼠中观察到的胰岛素原血症无关,因为HPLC纯化的分子在体外试验中不抑制PC1和PC2转化酶活性。