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小鼠胃中胃饥饿素酰基修饰模式及酰基化胃饥饿素水平的发育变化。

Developmental changes in the pattern of ghrelin's acyl modification and the levels of acyl-modified ghrelins in murine stomach.

作者信息

Nishi Yoshihiro, Hiejima Hiroshi, Mifune Hiroharu, Sato Takahiro, Kangawa Kenji, Kojima Masayasu

机构信息

Molecular Genetics, Institute of Life Science, Kurume University, Kurume, Fukuoka 839-0861, Japan.

出版信息

Endocrinology. 2005 Jun;146(6):2709-15. doi: 10.1210/en.2004-0645. Epub 2005 Mar 3.

Abstract

Ghrelin is an acylated peptide hormone secreted primarily from endocrine cells in the stomach. The major active form of ghrelin is a 28-amino acid peptide with an n-octanoyl modification at Ser(3) (n-octanoyl ghrelin), which is essential for its activity. In addition to n-octanoyl ghrelin, other forms of ghrelin peptide exist, including des-acyl ghrelin, which lacks an acyl modification, and other minor acylated ghrelin species, such as n-decanoyl ghrelin, whose Ser(3) residue is modified by n-decanoic acid. Multiple reports have identified various physiological functions of ghrelin. However, until now, there have been no reports that explore the process of ghrelin acyl modification, and only a few studies have compared the levels of des-acyl, n-octanoyl, and/or other minor populations of acylated ghrelin peptides. In this study we report that the amount of n-octanoyl ghrelin in murine stomachs increases gradually during the suckling period to a maximal level at 3 wk of age and falls sharply after the initiation of weaning. However, the concentration (picomoles per milligram of wet weight tissue) of total ghrelin, which includes des-acyl and all acylated forms of ghrelin peptides with intact C termini in murine stomach, remains unchanged across this suckling-weaning transition. Prematurely weaned mice exhibited a significant decrease in the amount of n-octanoyl or n-decanoyl ghrelin in the stomach. Orally ingested glyceryl trioctanoate, a medium-chain triacylglyceride rich in milk lipids, significantly increased the level of n-octanoyl-modified ghrelin in murine stomach. Fluctuations in the proportion of this biologically active, acyl-modified ghrelin could contribute to or be influenced by the change in energy metabolism during the suckling-weaning transition.

摘要

胃饥饿素是一种主要由胃内分泌细胞分泌的酰化肽激素。胃饥饿素的主要活性形式是一种28个氨基酸的肽,其丝氨酸(Ser)3位带有正辛酰修饰(正辛酰胃饥饿素),这对其活性至关重要。除了正辛酰胃饥饿素,还存在其他形式的胃饥饿素肽,包括缺乏酰基修饰的去酰基胃饥饿素,以及其他少量酰化胃饥饿素种类,如正癸酰胃饥饿素,其丝氨酸3位残基被正癸酸修饰。多项报告已确定胃饥饿素的各种生理功能。然而,直到现在,尚无关于胃饥饿素酰基修饰过程的报道,仅有少数研究比较了去酰基、正辛酰和/或其他少量酰化胃饥饿素肽的水平。在本研究中,我们报告小鼠胃中正辛酰胃饥饿素的含量在哺乳期逐渐增加,至3周龄时达到最高水平,断奶开始后急剧下降。然而,包括去酰基和所有C端完整的酰化胃饥饿素肽形式的总胃饥饿素浓度(每毫克湿重组织的皮摩尔数)在这个哺乳-断奶过渡期间保持不变。过早断奶的小鼠胃中正辛酰或正癸酰胃饥饿素的含量显著降低。口服摄入富含乳脂的中链甘油三酯三辛酸甘油酯,可显著提高小鼠胃中正辛酰修饰的胃饥饿素水平。这种具有生物活性的酰化胃饥饿素比例的波动可能促成哺乳-断奶过渡期间能量代谢的变化,或受其影响。

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