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大鼠垂体前叶和中间叶中促肾上腺皮质激素(ACTH)和内啡肽共同前体的存在。

Existence of a common precursor to ACTH and endorphin in the anterior and intermediate lobes of the rat pituitary.

作者信息

Eipper B A, Mains R E

出版信息

J Supramol Struct. 1978;8(3):247-62. doi: 10.1002/jss.400080304.

Abstract

Extracts of rat anterior and intermediate-posterior pituitary were fractionated by sodium dodecyl sulfate polyacrylamide gel electrophoresis and assayed for immunoactive ACTH and endorphin. In both lobes the major forms of immunoactive ACTH have apparent molecular weights of 31,000 (31K), 20--21K, 14K, and 4.5K, and the major forms of immunoactive endorphin have apparent molecular weights of 31K (coincident with the peak of immunoactive ACTH), 13K (a betaLPH-like peptide), and 3.5K (a beta-endorphin-like peptide). However, the quantitative distribution of immunoactivity among the various forms differs greatly between the lobes. Assays using an extreme COOH-terminal ACTH antiserum indicate that the 31K ACTH/endorphin molecule in rat anterior and intermediate pituitary is similar to the pro-ACTH/endorphin molecule from mouse pituitary tumor cells. A radioimmunoassay that is specific for the NH2-terminal non-ACTH, nonendorphin segment (referred to as 16K fragment) of the mouse pro-ACTH/endorphin molecule was used to assay extracts of rat pituitary. In addition to detecting material at 31K and 20--21K, the 16K fragment radioimmunoassay detects significant amounts of cross-reactive material with an apparent molecular weight of 16K in extracts of both lobes. This result also suggests that the structure and processing of the rat 31K ACTH/endorphin molecule is similar to that of mouse tumor cell pro-ACTH/endorphin. Cell suspensions were prepared from the anterior and intermediate lobes of the rat pituitary and maintained in culture for a 24-h period. The isolated cells from both lobes incorporate [3H] phenylalanine into immunoprecipitable ACTH- and endorphin-containing molecules. By sequential immunoprecipitation with ACTH and endorphin antisera, it is possible to demonstrate directly that a single molecule (31K ACTH/endorphin) has antigenic determinants for both ACTH and endorphin. Significant amounts of 31K ACTH/endorphin are released into the culture medium by isolated anterior lobe and intermediate lobe cells. The isolated intermediate lobe cells synthesize and secrete relatively large amounts of a beta-endorphin-like molecule; the isolated anterior lobe cells secrete significant amounts of both a betaLPH-like molecule and a beta-endorphin-like molecule. These same quantitative differences between anterior and intermediate lobe tissue were observed in immunoassays of extracts of the separated lobes and probably reflect differences in the processing of the common precursor. The isolated anterior lobe cells can be stimulated to release increased amounts of immunoprecipitable ACTH and endorphin by incubation with a cyclic AMP analog and a phosphodiesterase inhibitor.

摘要

用十二烷基硫酸钠聚丙烯酰胺凝胶电泳对大鼠垂体前叶和垂体中间叶提取物进行分级分离,并检测其免疫活性促肾上腺皮质激素(ACTH)和内啡肽。在两个叶中,免疫活性ACTH的主要形式的表观分子量为31000(31K)、20 - 21K、14K和4.5K,免疫活性内啡肽的主要形式的表观分子量为31K(与免疫活性ACTH的峰值一致)、13K(一种β-促脂素样肽)和3.5K(一种β-内啡肽样肽)。然而,各叶中免疫活性在不同形式间的定量分布差异很大。使用极端COOH末端ACTH抗血清的检测表明,大鼠垂体前叶和中间叶中的31K ACTH/内啡肽分子与小鼠垂体肿瘤细胞中的前ACTH/内啡肽分子相似。使用对小鼠前ACTH/内啡肽分子的NH2末端非ACTH、非内啡肽片段(称为16K片段)特异的放射免疫分析法检测大鼠垂体提取物。除了检测到31K和20 - 21K的物质外,16K片段放射免疫分析法在两个叶的提取物中还检测到大量表观分子量为16K的交叉反应物质。这一结果也表明大鼠31K ACTH/内啡肽分子的结构和加工过程与小鼠肿瘤细胞前ACTH/内啡肽的相似。从大鼠垂体前叶和中间叶制备细胞悬液,并在培养中维持24小时。来自两个叶的分离细胞将[3H]苯丙氨酸掺入可免疫沉淀的含ACTH和内啡肽的分子中。通过用ACTH和内啡肽抗血清进行连续免疫沉淀,可以直接证明单个分子(31K ACTH/内啡肽)具有ACTH和内啡肽的抗原决定簇。大量的31K ACTH/内啡肽被分离的垂体前叶和中间叶细胞释放到培养基中。分离的中间叶细胞合成并分泌相对大量的一种β-内啡肽样分子;分离的垂体前叶细胞分泌大量的一种β-促脂素样分子和一种β-内啡肽样分子。在分离叶提取物的免疫分析中观察到垂体前叶和中间叶组织之间同样的定量差异,这可能反映了共同前体加工过程中的差异。通过与环磷酸腺苷类似物和磷酸二酯酶抑制剂孵育,可刺激分离的垂体前叶细胞释放更多可免疫沉淀的ACTH和内啡肽。

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