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促性腺激素释放激素 II:一种多用途神经肽。

Gonadotropin-releasing hormone II: a multi-purpose neuropeptide.

机构信息

Department of Biochemistry and Molecular Genetics and Center for Research in Reproduction, University of Virginia School of Medicine, Charlottesville, VA 22908, USA.

出版信息

Integr Comp Biol. 2008 Nov;48(5):588-95. doi: 10.1093/icb/icn018. Epub 2008 Apr 19.

Abstract

Close to 30 forms of gonadotropin releasing hormone (GnRH) and at least five GnRH receptors have been identified in a wide variety of vertebrates and some invertebrates. One form, now called GnRH II, has the broadest distribution and the most ancient and conserved phylogeny. The distribution of the neurons that produce this peptide are completely nonoverlapping with any other GnRH forms. Fibers that project from these neurons overlap with GnRH I cells and/or fibers in a few regions, but are primarily divergent. The musk shrew (Suncus murinus) continues to be the most tractable mammalian species to use for studies of the function of GnRH II. The brain of the musk shrew has two GnRH genes (I and II), two GnRH receptors (types-1 and -2), and two different behaviors can be influenced by central infusion of GnRH II, but not by GnRH I; receptivity and feeding. Here, we summarize research on the musk shrew relative to the behavioral functions of GnRH II. First, female musk shrews are continually sexually receptive by virtue of their lack of an ovarian and/or behavioral estrus cycle. This feature of their reproductive ecology may be related to their semi-tropical distribution and their breeding season is highly dependent on changes in the availability of food. When food is not abundant, females stop mating, but brief bouts of feeding reinstate reproductive behavior. Likewise, intake of food is related to GnRH II mRNA and peptide content in the brain; after mild food restriction both decline. When GnRH II is infused centrally, at times when its content is low, it can both enhance receptivity and inhibit food intake. Simultaneous administration of a type-1 antagonist does not change the effect of GnRH II and use of an analog (135-18) that is a specific GnRH II agonist as well as a type-1 antagonist has the same effect as the endogenous GnRH II peptide. We propose that GnRH II plays a critical role by orchestrating the coordination of reproduction with the availability of nutritional support for these activities. Humans are bombarded with copious nutritional opportunities and at present obesity is a larger threat to health in many parts of the world than is under nutrition. It is our hope that understanding neuropeptides such as GnRH II that regulate food intake can ultimately lead to products that may curb appetite and thus decrease obesity and related risks to health.

摘要

在多种脊椎动物和一些无脊椎动物中已经鉴定出近 30 种促性腺激素释放激素 (GnRH) 形式和至少 5 种 GnRH 受体。一种形式,现在称为 GnRH II,分布最广,具有最古老和最保守的系统发育。产生这种肽的神经元的分布与任何其他 GnRH 形式完全没有重叠。从这些神经元投射出来的纤维与 GnRH I 细胞和/或纤维在一些区域重叠,但主要是分歧的。麝鼠(Suncus murinus)仍然是最易于用于研究 GnRH II 功能的哺乳动物物种。麝鼠的大脑有两个 GnRH 基因(I 和 II)、两个 GnRH 受体(类型 1 和 -2),并且可以通过中枢输注 GnRH II 影响两种不同的行为,而不是 GnRH I;接受性和进食。在这里,我们总结了关于麝鼠的研究,以了解 GnRH II 的行为功能。首先,雌性麝鼠由于缺乏卵巢和/或行为发情周期而持续具有接受性。它们生殖生态的这一特征可能与其亚热带分布有关,它们的繁殖季节高度依赖于食物供应的变化。当食物不丰富时,雌性停止交配,但短暂的进食会恢复生殖行为。同样,食物的摄入与大脑中的 GnRH II mRNA 和肽含量有关;在轻度食物限制时,两者都会下降。当 GnRH II 被中枢输注时,在其含量低的时候,它既能增强接受性又能抑制食物摄入。同时给予 1 型拮抗剂不会改变 GnRH II 的作用,而使用一种类似物(135-18),它既是一种特定的 GnRH II 激动剂,也是 1 型拮抗剂,其作用与内源性 GnRH II 肽相同。我们提出, GnRH II 通过协调繁殖与这些活动的营养支持的可用性来发挥关键作用。人类受到大量营养机会的冲击,目前肥胖对世界许多地区的健康构成的威胁大于营养不足。我们希望了解调节食物摄入的神经肽,如 GnRH II,最终能开发出抑制食欲的产品,从而减少肥胖及其对健康的相关风险。

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