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主要尿蛋白 5,一种气味通讯蛋白,受饮食限制和随后的再喂养调节在小鼠中。

Major urinary protein 5, a scent communication protein, is regulated by dietary restriction and subsequent re-feeding in mice.

机构信息

Department of Food Science, Christian-Albrechts University, Kiel, Germany.

出版信息

Proc Biol Sci. 2013 Feb 27;280(1757):20130101. doi: 10.1098/rspb.2013.0101. Print 2013 Apr 22.

Abstract

Major urinary proteins (Mups) are important for rodent scent communication and sexual behaviour. Recent evidence suggests that Mup1 may be regulated by fasting and re-feeding (RF). However, other Mup isoforms are poorly investigated, and data on the impact of long-term dietary restriction (DR) and ad libitum RF on Mup expression are missing. We investigated the effects of long-term 25 per cent DR and subsequent RF on Mup expression in male C57BL6 mice. DR significantly decreased Mup gene expression, hepatic and urinary protein levels compared with ad libitum (AL) fed control mice, with the greatest downregulation found for Mup5 expression. The decline in Mup expression was inverted by six months of RF. Because of inhibitory glucocorticoid response elements in the genomic sequence of the Mup5 gene, the observed inverse correlation of nuclear glucocorticoid receptor levels with Mup expression in response to DR and subsequent RF is a possible regulatory mechanism. Additionally, gene-expression-inhibiting histone deacetylation (H3K9) occurred in the region of the Mup5 gene in response to DR. We assume that Mup may act as a molecular switch linking nutritional status to sexual behaviour of mice, and thereby regulating male fertility and reproduction in response to food supply.

摘要

主要尿蛋白 (Mup) 对于啮齿动物的气味通讯和性行为很重要。最近的证据表明,Mup1 可能受到禁食和再喂养 (RF) 的调节。然而,其他 Mup 同工型的研究较少,关于长期饮食限制 (DR) 和随意 RF 对 Mup 表达的影响的数据也很少。我们研究了长期 25%DR 和随后的 RF 对雄性 C57BL6 小鼠 Mup 表达的影响。与随意喂养 (AL) 的对照小鼠相比,DR 显著降低了 Mup 基因表达、肝和尿蛋白水平,其中 Mup5 表达的下调最大。六个月的 RF 逆转了 Mup 表达的下降。由于 Mup5 基因的基因组序列中存在抑制性糖皮质激素反应元件,因此观察到 DR 和随后的 RF 对 Mup 表达的核糖皮质激素受体水平的反比关系可能是一种调节机制。此外,DR 会导致 Mup5 基因区域的基因表达抑制性组蛋白去乙酰化 (H3K9)。我们假设 Mup 可能作为一种分子开关,将营养状况与小鼠的性行为联系起来,从而根据食物供应调节雄性的生育和繁殖能力。

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