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4E-BP1 降解和 eIF4E 截短在猪的子宫上皮中空间上明显发生,是猪非侵入性植入的特征。

4E-BP1 degradation and eIF4E truncation occur spatially distinctly in the porcine uterine epithelia and are features of noninvasive implantation in the pig.

机构信息

Leibniz Institute for Farm Animal Biology, Reproductive Biology, Dummerstorf, Germany.

出版信息

Mol Reprod Dev. 2011 Dec;78(12):895-905. doi: 10.1002/mrd.21376. Epub 2011 Sep 1.

Abstract

The implantation of the blastocyst into the endometrium is an indispensable premise for successful embryonic development. This process is regulated by maternal and embryonic signals that influence gene expression at the translational level, among other processes. Recently, we have shown that proteolytical cleavage of the prototypical 25-kDa, mRNA cap-binding protein eIF4E produces a stable variant with a molecular mass of approximately 23 kDa exclusively in the porcine endometrium during implantation. This is accompanied by dephosphorylation and reduction of the abundant repressor 4E-BP1. Here, we investigate the distribution of the truncated eIF4E and of 4E-BP1 in the porcine uterine tissue, their binding in native samples, and we analyzed eIF4E-, eIF4G-, and 4E-BP1-specific proteolytic activities. Our results show that in pigs, the truncated eIF4E is located in the endometrial luminal epithelium during implantation. Neither glandulary tissue nor stroma expressed any truncated eIF4E. The reduced abundance of 4E-BP1 during implantation is mainly the result of decay in the glandular epithelia. Moreover, steroid replacements, in vitro protease assays, and cell lysate fractionation showed that eIF4E cleavage and 4E-BP1 decay both depended on the ovarian steroid hormones estradiol and progestrone, but these effects are the result of different proteolytic activities. Although eIF4G cleavage also depends on calcium, stimulation by these steroids could not be established. We propose that the translation initiation process in the endometrium is differently regulated by the truncated eIF4E, utilizing different abundances of 4E-BP1 and binding dynamic of eIF4E/4E-BP1 in distinct forms of implantation.

摘要

胚胎囊植入子宫内膜是胚胎发育成功的必要前提。这一过程受母体和胚胎信号的调节,影响翻译水平的基因表达等过程。最近,我们已经表明,在猪的植入过程中,典型的 25kDa mRNA 帽结合蛋白 eIF4E 的蛋白水解切割产生了一种稳定的变体,分子量约为 23kDa,仅在猪的子宫内膜中存在。这伴随着丰富的抑制剂 4E-BP1 的去磷酸化和减少。在这里,我们研究了截断的 eIF4E 和 4E-BP1 在猪子宫组织中的分布,它们在天然样品中的结合,以及我们分析了 eIF4E、eIF4G 和 4E-BP1 的特异性蛋白水解活性。我们的结果表明,在猪中,截断的 eIF4E 在植入期间位于子宫内膜腔上皮中。腺组织和基质都没有表达任何截断的 eIF4E。植入期间 4E-BP1 的丰度降低主要是由于腺上皮的衰减。此外,类固醇替代物、体外蛋白酶测定和细胞裂解物分级分离表明,eIF4E 切割和 4E-BP1 衰减都依赖于卵巢类固醇激素雌二醇和孕酮,但这些作用是不同蛋白水解活性的结果。尽管 eIF4G 的切割也依赖于钙,但这些类固醇的刺激作用尚未确定。我们提出,子宫内膜中的翻译起始过程受到截断的 eIF4E 的不同调节,利用不同丰度的 4E-BP1 和 eIF4E/4E-BP1 在不同形式的植入中的结合动态。

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