Lindberg I, Lincoln B, Rhodes C J
Department of Biochemistry and Molecular Biology, Louisiana State University Medical Center, New Orleans 70112.
Biochem Biophys Res Commun. 1992 Feb 28;183(1):1-7. doi: 10.1016/0006-291x(92)91599-l.
A novel fluorogenic substrate Cbz-Arg-Ser-Lys-Arg-AMC (RSKR-AMC) was used to characterize Ca(++)-activated proteolytic activity present in purified insulinoma secretory granules. Secretory granules efficiently cleaved this substrate in a time- and protein-dependent manner; the hydrolysis rate was between 2 and 4 pmol/min/ug of protein, with an apparent Km of 55 microM. Greater than 90% of the activity against this substrate was dependent on the presence of Ca++, with half-maximal stimulation obtained at 100 microM Ca++. The pH optimum of enzymatic activity was 5.5-6, and the profile of inhibition by various proteinase inhibitors was similar to that previously described for the type I and II proinsulin processing enzymes. These biochemical characteristics and co-elution of the RSKR-AMC processing activity with the type II endopeptidase activity on anion-exchange chromatography suggest that the new assay selectively detects the Lys-Arg-directed, or type II, proinsulin processing endopeptidase. This fluorogenic assay is more quantitative, sensitive and rapid than methods previously used, and therefore presents a significant improvement for the study of similar Ca(++)-activated processing endopeptidases.
一种新型荧光底物Cbz-Arg-Ser-Lys-Arg-AMC(RSKR-AMC)被用于表征纯化的胰岛素瘤分泌颗粒中存在的Ca(++)激活的蛋白水解活性。分泌颗粒以时间和蛋白质依赖性方式有效切割该底物;水解速率在2至4 pmol/分钟/微克蛋白质之间,表观Km为55 microM。针对该底物的活性中超过90%依赖于Ca++的存在,在100 microM Ca++时获得半数最大刺激。酶活性的最适pH为5.5 - 6,各种蛋白酶抑制剂的抑制谱与先前描述的I型和II型胰岛素原加工酶相似。这些生化特性以及RSKR-AMC加工活性与II型内肽酶活性在阴离子交换色谱上的共洗脱表明,新测定法可选择性检测赖氨酸-精氨酸导向的或II型胰岛素原加工内肽酶。这种荧光测定法比以前使用的方法更具定量性、敏感性和快速性,因此为研究类似的Ca(++)激活的加工内肽酶带来了显著改进。