Richards Mark P, McMurtry John P
United States Department of Agriculture, Agricultural Research Service, Animal Biosciences and Biotechnology Laboratory, Beltsville Agricultural Research Center, Animal and Natural Resources Institute, Beltsville, MD 20705-2350, USA.
Int J Pept. 2010;2010. doi: 10.1155/2010/749401. Epub 2010 Feb 10.
To understand how the proghrelin system functions in regulating growth hormone release and food intake as well as defining its pleiotropic roles in such diverse physiological processes as energy homeostasis, gastrointestinal tract function and reproduction require detailed knowledge of the structure and function of the components that comprise this system. These include the preproghrelin gene that encodes the proghrelin precursor protein from which two peptide hormones, ghrelin and obestatin, are derived and the cognate receptors that bind proghrelin-derived peptides to mediate their physiological actions in different tissues. Also key to the functioning of this system is the posttranslational processing of the proghrelin precursor protein and the individual peptides derived from it. While this system has been intensively studied in a variety of animal species and humans over the last decade, there has been considerably less investigation of the avian proghrelin system which exhibits some unique differences compared to mammals. This review summarizes what is currently known about the proghrelin system in birds and offers new insights into the nature and function of this important endocrine system. Such information facilitates cross-species comparisons and contributes to our understanding of the evolution of the proghrelin system.
要了解胃饥饿素系统如何调节生长激素释放和食物摄入,以及确定其在能量平衡、胃肠道功能和生殖等多种生理过程中的多效性作用,需要详细了解构成该系统的各个组成部分的结构和功能。这些组成部分包括编码胃饥饿素前体蛋白的前胃饥饿素基因,胃饥饿素和肥胖抑制素这两种肽类激素由该前体蛋白衍生而来,以及与胃饥饿素衍生肽结合以介导其在不同组织中生理作用的同源受体。该系统功能的关键还包括胃饥饿素前体蛋白及其衍生的各个肽段的翻译后加工。在过去十年中,虽然该系统已在多种动物物种和人类中得到深入研究,但对禽类胃饥饿素系统的研究相对较少,与哺乳动物相比,禽类胃饥饿素系统表现出一些独特的差异。本综述总结了目前关于鸟类胃饥饿素系统的已知信息,并对这一重要内分泌系统的性质和功能提供了新的见解。这些信息有助于跨物种比较,并有助于我们理解胃饥饿素系统的进化。