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Ghrelin, des-acyl ghrelin and obestatin: Three pieces of the same puzzle.

机译:Ghrelin,脱酰基Ghrelin和Obestatin:三个相同的谜题。

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摘要

The major active product of ghrelin gene is a 28-amino acid peptide acylated at the serine 3 position with an octanoyl group, called simply ghrelin. Ghrelin has a multiplicity of physiological functions, affecting GH release, food intake, energy and glucose homeostasis, gastrointestinal, cardiovascular, pulmonary and immune function, cell proliferation and differentiation and bone physiology. Nevertheless, recent developments have shown that ghrelin gene can generate various bioactive molecules besides ghrelin, mainly des-acyl ghrelin and obestatin, obtained from alternative splicing or from extensive post-translational modification. Although their receptors have not yet been identified, they have already proven to be active, having intriguingly subtle but opposite physiological actions to ghrelin. This suggests the existence of a novel endocrine system with multiple effector elements which not only may have opposite actions but may regulate the action of each other. In this review, we summarize the steps which lead to the production of the different ghrelin gene products and examine the most significant differences between them in terms of structure and actions.
机译:ghrelin基因的主要活性产物是在28个氨基酸的丝氨酸3位上被辛酰基酰化的28个氨基酸的肽,简称ghrelin。 Ghrelin具有多种生理功能,影响GH释放,食物摄入,能量和葡萄糖稳态,胃肠道,心血管,肺和免疫功能,细胞增殖和分化以及骨骼生理。然而,最近的发展表明,生长素释放肽基因除了生长素释放肽之外还可以产生各种生物活性分子,主要是脱酰基的生长素释放肽和肥胖抑制素,它们是通过选择性剪接或广泛的翻译后修饰获得的。尽管尚未鉴定出它们的受体,但它们已被证明具有活性,对生长素释放肽具有微妙但相反的生理作用。这表明存在具有多个效应子元件的新颖的内分泌系统,其不仅可以具有相反的作用,而且可以调节彼此的作用。在这篇综述中,我们总结了导致不同生长素释放肽基因产物产生的步骤,并研究了它们在结构和作用方面的最显着差异。

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