Hook V Y, Loh Y P
Proc Natl Acad Sci U S A. 1984 May;81(9):2776-80. doi: 10.1073/pnas.81.9.2776.
Recent amino acid sequence data suggest that trypsin-like and carboxypeptidase B-like activities are required for the processing of pituitary prohormones--e.g., pro-opiocortin (pro-adrenocorticotropin/lipotropin) and provasopressin in secretory granules. In this study the existence of a carboxypeptidase B activity in purified secretory granules from anterior, intermediate, and neural lobes of rat pituitary has been examined. A carboxypeptidase B activity that cleaved the COOH-terminal -Lys-Lys-Arg residues from the adrenocorticotropin fragment ACTH-(1-17) (a potential hormone product liberated from pro-opiocortin by a trypsin-like enzyme) was detected in anterior and intermediate lobe granules. A similar carboxypeptidase B activity was also present in purified secretory granules from rat pituitary neural lobes that cleaved the -Lys-Arg residues from [Arg8]vasopressin-Gly-Lys-Arg, a potential product cleaved from provasopressin. Secretory granule carboxypeptidase(s) from the three lobes of the pituitary was shown to cleave 125I-[Met]enkephalin-Arg6 to form 125I-[Met]enkephalin as well. 125I-[Met]Enkephalin was used as a model substrate for the quantitative assay of pituitary carboxypeptidase activity. The carboxypeptidase B in secretory granules from all three lobes was shown to be active at pH 5.5, but not at pH 7.4. Inhibition by the zinc metallocarboxypeptidase inhibitors guanidinopropylsuccinic acid, aminomercaptosuccinic acid, benzylsuccinic acid, 2-mercaptomethyl-3-guanidinoethylthiopropanoic acid, and the potato carboxypeptidase B inhibitor, and inhibition by the metal chelators EDTA and 1,10-phenanthroline demonstrate metal ion dependence of the pituitary granule carboxypeptidase activities. However, Co2+ stimulated the secretory granule carboxypeptidase B activities. Thiol protease inhibitors such as Cu2+ and p-chloromercuriphenylsulfonic acid also inhibited the activity. Thus, the secretory granule carboxypeptidase B-like activities in all three lobes of the pituitary appear to be similar thiol-metallopeptidases that differ from other carboxypeptidase activities previously described and may play an exclusive role in hormone biosynthesis in the pituitary.
近期的氨基酸序列数据表明,垂体前体激素(如促阿片-促皮质素原(促肾上腺皮质激素/促脂解素原)和抗利尿激素原)在分泌颗粒中的加工过程需要胰蛋白酶样和羧肽酶B样活性。在本研究中,已检测了来自大鼠垂体前叶、中间叶和神经叶的纯化分泌颗粒中羧肽酶B活性的存在情况。在垂体前叶和中间叶颗粒中检测到一种羧肽酶B活性,该活性可从促肾上腺皮质激素片段促肾上腺皮质激素-(1-17)(一种可能由胰蛋白酶样酶从促阿片-促皮质素原释放的激素产物)上切割COOH末端的-Lys-Lys-Arg残基。在大鼠垂体神经叶的纯化分泌颗粒中也存在类似的羧肽酶B活性,该活性可从抗利尿激素原切割产生的潜在产物[Arg8]抗利尿激素-Gly-Lys-Arg上切割-Lys-Arg残基。垂体三个叶的分泌颗粒羧肽酶还显示能将125I-[甲硫氨酸]脑啡肽-Arg6切割形成125I-[甲硫氨酸]脑啡肽。125I-[甲硫氨酸]脑啡肽用作垂体羧肽酶活性定量测定的模型底物。来自所有三个叶的分泌颗粒中的羧肽酶B在pH 5.5时具有活性,但在pH 7.4时无活性。金属羧肽酶抑制剂胍基丙基琥珀酸、氨基巯基琥珀酸、苄基琥珀酸、2-巯甲基-3-胍基乙基硫代丙酸以及马铃薯羧肽酶B抑制剂的抑制作用,以及金属螯合剂乙二胺四乙酸和1,10-菲咯啉的抑制作用,都证明了垂体颗粒羧肽酶活性对金属离子的依赖性。然而,Co2+刺激了分泌颗粒羧肽酶B的活性。巯基蛋白酶抑制剂如Cu2+和对氯汞苯磺酸也抑制该活性。因此,垂体所有三个叶中的分泌颗粒羧肽酶B样活性似乎是类似的巯基金属肽酶,与先前描述的其他羧肽酶活性不同,可能在垂体激素生物合成中发挥独特作用。