Varandani P T, Shroyer L A
Mol Cell Endocrinol. 1987 Apr;50(3):171-5. doi: 10.1016/0303-7207(87)90014-1.
Previous studies have shown that neutral thiopeptidase (E.C.3.4.22.11, insulinase) degrades (processes) insulin with a high affinity (Km = 30 X 10(-9) M). In the current studies, insulin was subjected to digestion with a highly purified rat liver neutral thiopeptidase and the peptides generated were separated by HPLC using a C8 column. With the use of structural analysis (which included the determination of amino terminal residues and amino acid composition), the major product was identified as a peptide containing portions of both chains of insulin, A1 to A13 and B1 to B9 having two disulfide bonds, an interchain disulfide bond and presumably the intra-A chain disulfide bond as well. Examination of insulin-like biological activity using a primary cultured hepatocyte test system showed that the fragment promoted neither short-term (alpha-aminoisobutyric acid uptake) nor long-term (glycogen synthesis) bioactivities of insulin.
先前的研究表明,中性硫肽酶(E.C.3.4.22.11,胰岛素酶)能以高亲和力(Km = 30×10⁻⁹ M)降解(处理)胰岛素。在当前研究中,用高度纯化的大鼠肝脏中性硫肽酶对胰岛素进行消化,并用C8柱通过高效液相色谱法分离产生的肽。通过结构分析(包括氨基末端残基的测定和氨基酸组成),主要产物被鉴定为一种包含胰岛素两条链部分的肽,即A1至A13和B1至B9,具有两个二硫键,一个链间二硫键以及可能还有A链内二硫键。使用原代培养肝细胞测试系统检测胰岛素样生物活性表明,该片段既不促进胰岛素的短期(α-氨基异丁酸摄取)生物活性,也不促进其长期(糖原合成)生物活性。