首页> 外文期刊>Journal of cell biology >Lanthanum: inhibition of ACTH-stimulated cyclic AMP and corticosterone synthesis in isolated rat adrenocortical cells.
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Lanthanum: inhibition of ACTH-stimulated cyclic AMP and corticosterone synthesis in isolated rat adrenocortical cells.

机译:镧:抑制离体大鼠肾上腺皮质细胞中ACTH刺激的环AMP和皮质酮的合成。

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Lanthanum (La+++) is a well-known Ca++ antagonist in a number of biological systems. It was used in the present study to examine the role of Ca++ in the regulation of adenyl cyclase of the adrenal cortex by ACTH. In micromolar concentrations, .La+++ inhibited both cyclic AMP and corticosterone response of isolated adrenal cortex cells to ACTH. However, a number of intracellular processes were not affected by La+++. These include the stimulation of steroidogenesis by dibutyryl cyclic AMP, conversion of several steroid precursors into corticosterone, and stimulation of the latter by glucose. Thus, inhibition of steroidogenesis by La+++ appears to be solely due to an inhibition of ACTH-stimulated cyclic AMP formation. Electron microscope examination showed that La+++ was localized on plasma membrane of the cells and did not appear to penetrate beyond this region. Since La+++ is believed to replace Ca++ at superficial binding sites on the cell membrane, it is proposed that Ca++ at these sites plays an important role in the regulation of adenyl cyclase by ACTH. Similarities in the role of Ca++ in "excitation-contraction" coupling and in the ACTH-adenyl cyclase system raise the possibility that a contractile protein may be involved in the regulation of adenyl cyclase by those hormones which are known to require Ca++ in the process.
机译:镧(La +++)是许多生物系统中众所周知的Ca ++拮抗剂。在本研究中使用它来检查Ca ++在ACTH调节肾上腺皮质腺苷酸环化酶中的作用。在微摩尔浓度下,.La +++抑制离体肾上腺皮质细胞对ACTH的环状AMP和皮质酮的反应。但是,许多细胞内过程不受La +++的影响。这些措施包括通过二丁酰基环AMP刺激类固醇生成,将几种类固醇前体转化为皮质酮,以及通过葡萄糖刺激后者。因此,La +++对类固醇生成的抑制作用似乎完全是由于抑制了ACTH刺激的环AMP的形成。电子显微镜检查表明,La +++位于细胞质膜上,似乎没有渗透到该区域之外。由于La +++被认为可以在细胞膜表面结合位点取代Ca ++,因此建议这些位置的Ca ++在ACTH调节腺苷酸环化酶中起重要作用。 Ca ++在“激发-收缩”偶联中和ACTH-腺苷酸环化酶系统中的作用相似,这增加了一种可能,即收缩蛋白可能参与已知的过程中需要Ca ++的那些激素参与腺苷酸环化酶的调节。

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