Orexin System and Avian Muscle Mitochondria

K. Lassiter, S. Dridi
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引用次数: 3

Abstract

In mammals, orexin A and B (also known as hypocretin 1 and 2) are two orexigenic peptides produced primarily by the lateral hypothalamus that signal through two G-protein-coupled receptors, orexin receptors 1/2, and have been implicated in the regulation of several physiological processes. However, the physiological roles of orexin are not well defined in avian (non-mammalian vertebrate) species. Recently, we made a breakthrough by identifying that orexin and its related receptors 1/2 (ORXR1/2) are expressed in avian muscle tissue and cell line, and appears to be a secretory protein. Functional in vitro studies showed that orexin A and B differentially regulated expression of the orexin system, suggesting that orexins might have autocrine, paracrine, and/or endocrine roles. Administration of recombinant orexin modulated mitochondrial biogenesis, dynamics, function, and bioenergetics. In this chapter, we include a brief overview of the (patho) physiological role of orexin, comparative findings between mammalian and avian orexin, and in-depth analysis of orexin’s action on avian muscle mitochondria.
食欲素系统与禽类肌肉线粒体
在哺乳动物中,食欲素A和B(也称为下丘脑分泌素1和下丘脑分泌素2)是两种主要由下丘脑外侧产生的促食肽,它们通过两个g蛋白偶联受体(食欲素受体1/2)发出信号,并参与了几个生理过程的调节。然而,在鸟类(非哺乳动物脊椎动物)物种中,食欲素的生理作用尚未得到很好的定义。最近,我们取得了突破性进展,发现了orexin及其相关受体1/2 (ORXR1/2)在禽类肌肉组织和细胞系中表达,似乎是一种分泌蛋白。体外功能研究表明,食欲素A和B对食欲素系统的表达有差异调节,提示食欲素可能具有自分泌、旁分泌和/或内分泌作用。重组食欲素调控线粒体生物发生、动力学、功能和生物能量学。在本章中,我们简要概述了食欲素的(病理)生理作用,比较了哺乳动物和鸟类食欲素的发现,并深入分析了食欲素对鸟类肌肉线粒体的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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