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牛垂体中间叶分散细胞中阿片促黑素细胞皮质素转化酶和一种类氨肽酶B的调节性分泌。

Regulated secretion of pro-opiomelanocortin converting enzyme and an aminopeptidase B-like enzyme from dispersed bovine intermediate lobe pituitary cells.

作者信息

Castro M G, Birch N P, Loh Y P

机构信息

Section on Cellular Neurobiology, National Institute of Child Health and Human Development, Bethesda, Maryland 20892.

出版信息

J Neurochem. 1989 May;52(5):1619-28. doi: 10.1111/j.1471-4159.1989.tb09217.x.

Abstract

Coordinate secretion of two prohormone/proneuropeptide processing enzymes [pro-opiomelanocortin converting enzyme (PCE) and an aminopeptidase B-like enzyme (APBE)] and alpha-melanotropin (alpha-MSH) from bovine intermediate lobe pituitary cells was studied. Stimulation of secretion with 8-bromo-cyclic AMP produced significant increases in levels of immunoreactive alpha-MSH, PCE, and APBE. Treatment of cells with the dopaminergic agonist 2-bromo-alpha-ergocryptine resulted in significant decreases in secretion of alpha-MSH, PCE, and APBE. In neither case were there significant changes in levels of cytosolic lactic dehydrogenase or lysosomal beta-glucuronidase in the medium. The secreted PCE activity was shown to process frog and mouse pro-opiomelanocortin primarily to 23,000-Mr corticotropin (ACTH), 13,000-Mr ACTH, beta-lipotropin, a beta-endorphin-like peptide, and beta-endorphin, products comparable to those synthesized by the mouse and frog intermediate lobe in situ. The secreted enzymatic activity had a pH optimum between 4.0 and 5.0, was strongly inhibited by pepstatin A, and had an inhibitor profile similar to the purified bovine intermediate lobe PCE. The secreted APBE activity cleaved Argo-[Met]-enkephalin to [Met]-enkephalin and had a pH optimum and inhibitor profile similar to that previously reported for an activity from purified secretory vesicle fractions of bovine intermediate and neural lobes. The coordinate regulated secretion of alpha-MSH and enzyme activities (PCE and APBE) strongly indicates their colocalization in the same secretory vesicle compartment within the cell. The characteristics of the two enzymes secreted in the medium paralleled those seen in the tissue and further support their role in pro-opiomelanocortin processing in vivo.

摘要

研究了牛垂体中间叶细胞中两种激素原/神经肽原加工酶[促肾上腺皮质激素原转化酶(PCE)和一种类氨肽酶B(APBE)]与α-促黑素(α-MSH)的协同分泌。用8-溴环磷酸腺苷刺激分泌,可使免疫反应性α-MSH、PCE和APBE水平显著升高。用多巴胺能激动剂2-溴-α-麦角隐亭处理细胞,可使α-MSH、PCE和APBE的分泌显著减少。在这两种情况下,培养基中胞质乳酸脱氢酶或溶酶体β-葡萄糖醛酸酶水平均无显著变化。分泌的PCE活性主要将青蛙和小鼠的促肾上腺皮质激素原加工成23000道尔顿的促肾上腺皮质激素(ACTH)、13000道尔顿的ACTH、β-促脂素、一种β-内啡肽样肽和β-内啡肽,这些产物与小鼠和青蛙中间叶原位合成的产物相当。分泌的酶活性在pH值4.0至5.0之间最适宜,被胃蛋白酶抑制剂A强烈抑制,其抑制谱与纯化的牛垂体中间叶PCE相似。分泌的APBE活性将精氨酸-[甲硫氨酸]-脑啡肽裂解为[甲硫氨酸]-脑啡肽,其最适pH值和抑制谱与先前报道的牛垂体中间叶和神经叶纯化分泌囊泡组分的活性相似。α-MSH与酶活性(PCE和APBE)的协同调节分泌强烈表明它们在细胞内同一分泌囊泡区室中共定位。培养基中分泌的两种酶的特性与组织中观察到的特性相似,进一步支持了它们在体内促肾上腺皮质激素原加工中的作用。

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