Perone M J, Chisari A N, Gómez Dumm C L, Spinedi E, Estivariz F E
Neuroendocrine Unit, Multidisciplinary Institute on cell Biology (CIC-CONICET), La Plata, Argentina.
J Endocrinol Invest. 1997 Apr;20(4):172-82. doi: 10.1007/BF03346899.
The aim of the present study was to elucidate the modulatory effect of transient changes in endogenous glucocorticoids, occurring after bilateral adrenal enucleation (ENUC), on anterior pituitary (AP) proopiomelanocortin (POMC)-derived peptides synthesis and output in rats. For this purpose, adult female rats were either bilaterally ENUC, adrenalectomized (ADX), or sham-operated (SHAM) and killed by decapitation 2, 7, 14, and 21 days after surgery. Trunk blood was collected for measurements of ACTH, beta-endorphin (beta-END) and corticosterone (B) concentrations; APs were quickly dissected for the determination of ACTH, beta-endorphin (beta-END)-like (beta-END-LI) and gamma 3-MSH contents and adrenal glands were removed and submitted to histological study. The results indicate that ENUC and ADX increased AP POMC-related peptides synthesis and release in association with changes in the AP processing of peptides belonging to the N-terminal (gamma 3-MSH), mid (ACTH) and C-terminal (beta-LPH/ENDs) portions of POMC. While ADX abolished plasma B levels, ENUC induced a transient (day 2) decrease in plasma B concentrations which returned to SHAM levels at 7 days after surgery. These data tallied with the histological observations carried out, indicating a time-dependent regenerative process of the adrenal which was completed by three weeks after ENUC. There was a different pattern in plasma ACTH and beta-END levels between ENUC and ADX; maximal plasma peptide levels were found 7-14 days after ENUC, then falling down to SHAM values at 21 days post ENUC. Conversely, there was a constant increment in plasma peptide levels up to 21 days after ADX. At 2 days after both ENUC and ADX all peptides measured in the AP were lower than SHAM values, thus reflecting a rapid corticotrope secretion. Thereafter, 7 or more days after surgery, AP peptide content in ADX rats increased, in a time-related fashion, up to 21 days after surgery. Only beta-END-LI showed a similar AP content to that of the SHAM group, thereafter indicating a preferential cleavage of POMC to beta-END long after ADX (21 days). ENUC rats showed increased AP POMC peptides content throughout the whole time, and it was significantly different from SHAM and ADX values 14 days post-surgery. Interestingly, we found an increment in AP gamma 3-MSH, a peptide which is preferentially synthesized in the intermediate lobe of the rat pituitary, in both ENUC and ADX situations. Our results further indicate that: 1) glucocorticoids, from regenerating adrenal origin, induce a fast negative feedback mechanism on AP secretion, and 2) there might be a delayed inhibitory action of newly synthesized corticosteroids on higher levels of the central nervous system. The lack of glucocorticoids (ADX) clearly corroborates a persistent enhancement of AP POMC-related peptides synthesis and secretion. The differences in AP processing of POMC between ENUC and ADX might be due to qualitative/quantitative changes in hypothalamic ACTH secretagogues output.
本研究的目的是阐明双侧肾上腺摘除术(ENUC)后内源性糖皮质激素的短暂变化对大鼠垂体前叶(AP)阿片促黑素皮质素原(POMC)衍生肽合成及分泌的调节作用。为此,将成年雌性大鼠分为双侧ENUC组、肾上腺切除组(ADX)或假手术组(SHAM),并在术后2、7、14和21天断头处死。采集躯干血以测定促肾上腺皮质激素(ACTH)、β-内啡肽(β-END)和皮质酮(B)浓度;迅速解剖AP以测定ACTH、β-内啡肽样(β-END-LI)和γ3-促黑素(γ3-MSH)含量,并摘除肾上腺进行组织学研究。结果表明,ENUC和ADX增加了AP中与POMC相关肽的合成和释放,这与POMC N端(γ3-MSH)、中间(ACTH)和C端(β-促脂解素/内啡肽)部分肽段在AP中的加工变化有关。ADX使血浆B水平消失,而ENUC导致血浆B浓度短暂(第2天)下降,术后7天恢复到SHAM组水平。这些数据与组织学观察结果一致,表明肾上腺的再生过程具有时间依赖性,在ENUC后三周完成。ENUC和ADX组血浆ACTH和β-END水平存在不同模式;ENUC后7 - 14天血浆肽水平达到最高,然后在ENUC后21天降至SHAM组值。相反,ADX后血浆肽水平持续增加直至21天。ENUC和ADX术后2天,AP中测得的所有肽均低于SHAM组值,从而反映促肾上腺皮质激素细胞的快速分泌。此后,术后7天或更长时间,ADX大鼠AP肽含量随时间增加,直至术后21天。只有β-END-LI在术后21天显示出与SHAM组相似的AP含量,这表明ADX后很长时间(21天)POMC优先裂解为β-END。ENUC大鼠在整个时间段内AP POMC肽含量均增加,术后14天与SHAM组和ADX组值有显著差异。有趣的是,我们发现在ENUC和ADX情况下,AP中γ3-MSH均增加,γ3-MSH是一种优先在大鼠垂体中间叶合成的肽。我们的结果进一步表明:1)来自再生肾上腺的糖皮质激素对AP分泌诱导快速负反馈机制,2)新合成的皮质类固醇可能对中枢神经系统较高水平有延迟抑制作用。缺乏糖皮质激素(ADX)明显证实了AP中与POMC相关肽的合成和分泌持续增强。ENUC和ADX组POMC在AP中的加工差异可能是由于下丘脑促肾上腺皮质激素分泌因子输出的质/量变化。