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先天生长激素抵抗存在于细纹舌鳎的骨骼肌中,这种抵抗受营养状态调节,其特征为截断型 GHR 含量高、JAK2/STAT5 信号通路受损以及 IGF-I 表达水平低。

Inherent growth hormone resistance in the skeletal muscle of the fine flounder is modulated by nutritional status and is characterized by high contents of truncated GHR, impairment in the JAK2/STAT5 signaling pathway, and low IGF-I expression.

机构信息

Laboratorio de Biotecnologia Molecular, Departamento de Ciencias Biologicas, Facultad Ciencias Biologicas, Universidad Andrés Bello, Santiago, Chile.

出版信息

Endocrinology. 2012 Jan;153(1):283-94. doi: 10.1210/en.2011-1313. Epub 2011 Oct 25.

Abstract

A detailed understanding of how the GH and IGF-I regulate muscle growth, especially in early vertebrates, is still lacking. The fine flounder is a flatfish species exhibiting remarkably slow growth, representing an intriguing model for elucidating growth regulatory mechanisms. Key components of the GH system were examined in groups of fish during periods of feeding, fasting, and refeeding. Under feeding conditions, there is an inherent systemic and local (muscle) GH resistance, characterized by higher levels of plasma GH than of IGF-I, skeletal muscle with a greater content of the truncated GH receptor (GHRt) than of full-length GHR (GHRfl), an impaired activation of the Janus kinase 2 (JAK2)-signal transducers and activators of transcription 5 (STAT5) signaling pathway, and low IGF-I expression. Fasting leads to further elevation of plasma GH levels concomitant with suppressed IGF-I levels. The ratio of GHRfl to GHRt in muscle decreases during fasting, causing an inactivation of the JAK2/STAT5 signaling pathway and suppressed IGF-I expression, further impairing growth. When fish are returned to nutritionally favorable conditions, plasma GH levels decrease, and the ratio of GHRfl to GHRt in muscle increases, triggering JAK2/STAT5 reactivation and local IGF-I expression, concomitant with increased growth. The study suggests that systemic IGF-I is supporting basal slow growth in this species, without ruling out that local IGF-I is participating in muscle growth. These results reveal for the first time a unique model of inherent GH resistance in the skeletal muscle of a nonmammalian species and contribute to novel insights of the endocrine and molecular basis of growth regulation in earlier vertebrates.

摘要

对于 GH 和 IGF-I 如何调节肌肉生长,尤其是在早期脊椎动物中,我们仍缺乏深入的了解。细纹狮子鱼是一种生长非常缓慢的比目鱼,是阐明生长调控机制的有趣模型。在摄食、禁食和再摄食期间,我们研究了 GH 系统的关键组成部分在鱼群中的作用。在摄食条件下,存在固有系统和局部(肌肉)GH 抵抗,其特征是血浆 GH 水平高于 IGF-I,骨骼肌中截断的 GH 受体(GHRt)含量高于全长 GHR(GHRfl),Janus 激酶 2(JAK2)-信号转导和转录激活物 5(STAT5)信号通路的激活受损,以及 IGF-I 表达水平降低。禁食会导致血浆 GH 水平进一步升高,同时 IGF-I 水平降低。肌肉中 GHRfl 与 GHRt 的比值在禁食期间下降,导致 JAK2/STAT5 信号通路失活和 IGF-I 表达受抑制,进一步抑制生长。当鱼回到营养条件良好的环境中时,血浆 GH 水平下降,肌肉中 GHRfl 与 GHRt 的比值增加,触发 JAK2/STAT5 重新激活和局部 IGF-I 表达,同时生长增加。该研究表明,全身性 IGF-I 支持该物种的基础生长,尽管不能排除局部 IGF-I 参与肌肉生长。这些结果首次揭示了非哺乳动物骨骼肌中固有的 GH 抵抗的独特模型,并为早期脊椎动物的生长调控的内分泌和分子基础提供了新的见解。

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