甲状腺素和皮质酮维持冷驯化下垂体去骨大鼠肩胛间棕色脂肪组织生长。

M Fellenz, J Triandafillou, C Gwilliam, J Himms-Hagen
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引用次数: 29

摘要

已知大鼠的棕色脂肪组织(BAT)在适应寒冷的条件下生长。这种生长伴随着线粒体多肽组成的变化(分子量为32000的多肽的相对比例增加,已知与产热质子传导途径有关)。线粒体多肽组成变化的中介尚不清楚。这些实验的目的是找出是否有任何垂体激素可能是中介。用生长激素治疗大鼠不能改变BAT大小或线粒体多肽组成。在适应寒冷环境的去垂体大鼠中,BAT生长,BAT线粒体多肽组成发生变化,并依靠甲状腺素和皮质酮维持其在寒冷环境中的生存。综上所述,没有一种垂体激素是冷诱导BAT线粒体多肽组成变化的中介,也没有一种垂体激素需要对BAT产生直接影响才能发生冷诱导BAT生长。对于BAT的正常冷诱导生长,似乎不太可能需要超过维持量的糖皮质激素;因此,这些激素也不太可能介导BAT线粒体多肽组成的变化。BAT生长和BAT线粒体多肽组成在寒冷诱导下的变化所需要的不超过维持量的甲状腺素证实了先前对冷适应甲状腺切除大鼠的研究得出的结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Growth of interscapular brown adipose tissue in cold-acclimated hypophysectomized rats maintained on thyroxine and corticosterone.

Brown adipose tissue (BAT) of rats is known to grow in response to acclimation to cold. The growth is accompanied by changes in mitochondrial polypeptide composition (an increase in the relative proportion of a polypeptide of molecular weight 32,000, known to be associated with the thermogenic proton conductance pathway). The mediator of the change in mitochondrial polypeptide composition is unknown. The objective of these experiments was to find out whether any of the pituitary hormones might be the mediator. Treatment of rats with growth hormone failed to alter BAT size or mitochondrial polypeptide composition. BAT grew and the change in BAT mitochondrial polypeptide composition occurred in cold-acclimated hypophysectomized rats, maintained on thyroxine and corticosterone to ensure their survival in the cold. It is concluded that none of the pituitary hormones is the mediator for the cold-induced change in BAT mitochondrial polypeptide composition or is required to exert a direct effect on BAT for cold-induced BAT growth to occur. It also seems unlikely that more than a maintenance amount of glucocorticoids is required for normal cold-induced growth of BAT; these hormones are thus also unlikely to mediate the change in BAT mitochondrial polypeptide composition. The requirement for no more than a maintenance amount of thyroxine for BAT growth and for the cold-induced change in BAT mitochondrial polypeptide composition confirms previous conclusions drawn from studies on cold-acclimated thyroidectomized rats.

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