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纯化候选促性腺激素激增抑制/衰减因子 (GnSIF/AF),MAPK 可能是其作用靶点。

Purification of a candidate gonadotrophin surge-inhibiting/attenuating factor (GnSIF/AF) showing MAPK as a possible target.

机构信息

Division of Reproductive Medicine, Department of Obstetrics and Gynaecology, VU University Medical Center, Amsterdam, The Netherlands.

出版信息

Mol Reprod Dev. 2011 Apr;78(4):292-304. doi: 10.1002/mrd.21305. Epub 2011 Apr 12.

Abstract

Gonadotrophin surge-inhibiting/attenuating factor (GnSIF/AF) has been known for over two decades, but its molecular structure has not been completely characterized yet. In the last 20 years, five different putative GnSIF/AF sequences have been published. In this article, we describe a procedure to isolate and characterize GnSIF/AF from bovine follicular fluid, a GnSIF/AF-derived synthetic peptide (SP-GnSIF/AF) was produced, and the intracellular bioactivity of GnSIF/AF was tested for intracellular action with a MAPK-assay. Two different bioactive molecular weight forms of GnSIF/AF were isolated, a 160 kDa heteromeric and a monomeric 40 kDa protein. The 40 kDa form appeared to be a subunit of the 160 kDa protein. The synthetic peptide mimicked the actions of GnSIF/AF, such as inhibition of GnRH-induced LH secretion and attenuation of the MAPK phosphorylation. The two GnSIF/AF candidates do not show similarities with previously published GnSIF/AF sequences. These are the first data showing the influence of GnSIF/AF on intracellular processes involved in GnRH self-priming and that the biological action of GnSIF/AF was preserved in the produced synthetic peptide. The results provide strong evidence that the identified candidate proteins are the true GnSIF/AF.

摘要

促性腺激素释放抑制/衰减因子 (GnSIF/AF) 已经为人所知超过二十年,但它的分子结构尚未完全确定。在过去的 20 年中,已经发表了五个不同的假定 GnSIF/AF 序列。在本文中,我们描述了一种从牛卵泡液中分离和鉴定 GnSIF/AF 的方法,合成了一种 GnSIF/AF 衍生的肽 (SP-GnSIF/AF),并使用 MAPK 测定法测试了 GnSIF/AF 的细胞内生物活性。分离出两种不同的具有生物活性的 GnSIF/AF 分子量形式,一种是 160kDa 的异源二聚体和一种单体 40kDa 蛋白。40kDa 形式似乎是 160kDa 蛋白的亚基。合成肽模拟了 GnSIF/AF 的作用,例如抑制 GnRH 诱导的 LH 分泌和衰减 MAPK 磷酸化。这两种 GnSIF/AF 候选物与先前发表的 GnSIF/AF 序列没有相似之处。这些是首次显示 GnSIF/AF 对 GnRH 自我启动涉及的细胞内过程的影响的研究数据,并且在产生的合成肽中保留了 GnSIF/AF 的生物学作用。结果提供了强有力的证据,表明鉴定出的候选蛋白是真正的 GnSIF/AF。

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