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大鼠垂体前叶和中间叶组织培养的比较:促肾上腺皮质激素(ACTH)和β-内啡肽

Comparison of rat anterior and intermediate pituitary in tissue culture: corticotropin (ACTH) and beta-endorphin.

作者信息

Mains R E, Eipper B A

出版信息

Ciba Found Symp. 1981;81:32-54. doi: 10.1002/9780470720646.ch4.

Abstract

The forms of immunoreactive beta-endorphin-sized material in extracts of anterior and intermediate-posterior pituitary from the rat examined by the ion exchange chromatography method of Zakarian & Smyth. The anterior pituitary primarily contained material that co-migrated with synthetic camel beta-endorphin(1-31), whereas the intermediate-posterior pituitary contained relatively little such material. The majority of immunoactive beta-endorphin-sized peptides in the intermediate pituitary eluted at lower concentrations of NaCl than did camel beta-endorphin. Conditions were developed for the stable, long-term tissue culture of dissociated intermediate-posterior pituitary cells. Extracts of cells maintained in tissue culture for 18 h or nine days had the same content of immunoreactive beta-endorphin, 16k fragment, ACTH(18-39) (or CLIP) and ACTH(17-24). Throughout the nine days in culture, characteristic cells that could be immunostained with antibodies to various regions of pro-ACTH/endorphin were present; during the time in culture, non-reactive background cells multiplied rapidly. The major proteolytic processing of pro-ACTH/endorphin remained characteristic of intermediate pituitary tissue throughout the nine days in tissue culture, and did not become similar to the simpler pattern of proteolytic processing found in the anterior pituitary.

摘要

采用扎卡里安和史密斯的离子交换色谱法检测大鼠垂体前叶及垂体中间部 - 后叶提取物中免疫反应性β - 内啡肽大小物质的形式。垂体前叶主要含有与合成骆驼β - 内啡肽(1 - 31)共迁移的物质,而垂体中间部 - 后叶含有的此类物质相对较少。垂体中间部大多数免疫活性β - 内啡肽大小的肽在比骆驼β - 内啡肽更低的氯化钠浓度下洗脱。已建立了用于解离的垂体中间部 - 后叶细胞稳定、长期组织培养的条件。在组织培养中维持18小时或九天的细胞提取物中免疫反应性β - 内啡肽、16k片段、促肾上腺皮质激素(18 - 39)(或促肾上腺皮质激素样中间肽)和促肾上腺皮质激素(17 - 24)的含量相同。在整个九天的培养过程中,存在能用抗促肾上腺皮质激素/内啡肽不同区域的抗体进行免疫染色的特征性细胞;在培养期间,无反应的背景细胞迅速增殖。在整个九天的组织培养过程中,促肾上腺皮质激素/内啡肽原的主要蛋白水解加工仍保持垂体中间部组织的特征,并未变得类似于垂体前叶中发现的更简单的蛋白水解加工模式。

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