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搁浅鲸鱼(小抹香鲸和欧洲中喙鲸)的肾上腺:形态、激素含量及皮质类固醇的生物合成

The adrenal gland of stranded whales (Kogia breviceps and Mesoplodon europaeus): morphology, hormonal contents, and biosynthesis of corticosteroids.

作者信息

Carballeira A, Brown J W, Fishman L M, Trujillo D, Odell D K

机构信息

Research Service, Veterans Administration Medical Center, Miami, Florida 33125.

出版信息

Gen Comp Endocrinol. 1987 Nov;68(2):293-303. doi: 10.1016/0016-6480(87)90041-4.

Abstract

Histochemical assays, hormonal quantitation, and steroid biosynthetic studies were carried out with adrenal glands obtained from four stranded whales of two different species (Kogia breviceps and Mesoplodon europaeus), and selected comparisons were made with the results of similar studies of adrenals from terrestrial mammals (man, beef, rat). Histochemical chemical assays of the whale glands for succinic dehydrogenase activity (SDA) showed an intense SDA-positive reaction in the peripheral cortex, and an SDA-negative central medulla, a pattern similar to that found in terrestrial mammals; the whale adrenals, however, demonstrated a markedly pseudolobulated appearance because of a festooned corticomedullary junction. On radioimmunoassay of preformed cortical steroid hormones, corticosterone (B) exceeded cortisol (F) levels by a factor of 3 in the whale adrenals and aldosterone (Aldo) concentrations were 20-100 times lower than in the terrestrial mammals studied. HPLC determinations of preformed medullary catecholamines showed that, contrary to the findings in the terrestrial mammals studied, norepinephrine predominated over epinephrine and the levels of dopamine were much higher in the whale adrenals. In vitro, surviving sections of whale adrenals elaborated B from endogenous substrates, but not F or Aldo. Incubations of subcellular fractions of the whale adrenals with 14C-labeled precursors resulted in the isolation of several steroid intermediates (pregnenolone, progesterone, deoxycorticosterone) as well as the glucocorticoid end-product B, but again without evidence of the formation of either F or Aldo. In keeping with studies in terrestrial mammals, the enzymatic reactions involved in the conversion of [14C]cholesterol to B occurred under aerobic conditions, required the presence of an exogenous NADPH-generating system, and had identical subcellular localization in the whale adrenals. The process of steroid biosynthesis thus appears generally similar in aquatic and terrestrial mammals. It is possible that some of the unusual findings in the whale adrenals studies here may be related to the profound stress of stranding experienced by these marine mammals.

摘要

对从两种不同物种(小抹香鲸和欧洲中喙鲸)的四头搁浅鲸鱼身上获取的肾上腺进行了组织化学分析、激素定量分析和类固醇生物合成研究,并与陆地哺乳动物(人类、牛、大鼠)肾上腺的类似研究结果进行了选定的比较。对鲸鱼腺体进行琥珀酸脱氢酶活性(SDA)的组织化学分析显示,外周皮质有强烈的SDA阳性反应,中央髓质为SDA阴性,这一模式与陆地哺乳动物相似;然而,由于皮质髓质交界处呈花彩状,鲸鱼肾上腺呈现出明显的假小叶外观。对预先形成的皮质类固醇激素进行放射免疫分析表明,鲸鱼肾上腺中皮质酮(B)的水平比皮质醇(F)高出3倍,醛固酮(Aldo)的浓度比所研究的陆地哺乳动物低20 - 100倍。对预先形成的髓质儿茶酚胺进行高效液相色谱测定表明,与所研究的陆地哺乳动物的结果相反,鲸鱼肾上腺中去甲肾上腺素的含量高于肾上腺素,多巴胺的水平也高得多。在体外,鲸鱼肾上腺的存活切片能从内源性底物合成B,但不能合成F或Aldo。用14C标记的前体对鲸鱼肾上腺的亚细胞组分进行孵育,结果分离出了几种类固醇中间体(孕烯醇酮、孕酮、脱氧皮质酮)以及糖皮质激素终产物B,但同样没有形成F或Aldo的证据。与陆地哺乳动物的研究一致,[14C]胆固醇转化为B所涉及的酶促反应在有氧条件下发生,需要存在外源性NADPH生成系统,并且在鲸鱼肾上腺中的亚细胞定位相同。因此,类固醇生物合成过程在水生和陆地哺乳动物中总体上似乎相似。这里对鲸鱼肾上腺研究中的一些异常发现可能与这些海洋哺乳动物搁浅时所经历的巨大压力有关。

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