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内质网应激抑制可改善小鼠胚胎发育。

Inhibition of endoplasmic reticulum stress improves mouse embryo development.

机构信息

Department of Animal Science & Biotechnology, Research Center for Transgenic Cloned Pigs, Chungnam National University, Daejeon, Korea.

出版信息

PLoS One. 2012;7(7):e40433. doi: 10.1371/journal.pone.0040433. Epub 2012 Jul 13.

Abstract

X-box binding protein-1 (XBP-1) is an important regulator of a subset of genes during endoplasmic reticulum (ER) stress. In the current study, we analyzed endogenous XBP-1 expression and localization, with a view to determining the effects of ER stress on the developmental competency of preimplantation embryos in mice. Fluorescence staining revealed that functional XBP-1 is localized on mature oocyte spindles and abundant in the nucleus at the germinal vesicle (GV) stage. However, in preimplantation embryos, XBP-1 was solely detected in the cytoplasm at the one-cell stage. The density of XBP-1 was higher in the nucleus than the cytoplasm at the two-cell, four-cell, eight-cell, morula, and blastocyst stages. Furthermore, RT-PCR analysis confirmed active XBP-1 mRNA splicing at all preimplantation embryo stages, except the one-cell stage. Tunicamycin (TM), an ER stress inducer used as a positive control, promoted an increase in the density of nuclear XBP-1 at the one-cell and two-cell stages. Similarly, culture medium supplemented with 25 mM sorbitol displayed a remarkable increase active XBP-1 expression in the nuclei of 1-cell and 2-cell embryos. Conversely, high concentrations of TM or sorbitol led to reduced nuclear XBP-1 density and significant ER stress-induced apoptosis. Tauroursodeoxycholic acid (TUDCA), a known inhibitor of ER stress, improved the rate of two-cell embryo development to blastocysts by attenuating the expression of active XBP-1 protein in the nucleus at the two-cell stage. Our data collectively suggest that endogenous XBP-1 plays a role in normal preimplantation embryonic development. Moreover, XBP-1 splicing is activated to generate a functional form in mouse preimplantation embryos during culture stress. TUDCA inhibits hyperosmolar-induced ER stress as well as ER stress-induced apoptosis during mouse preimplantation embryo development.

摘要

X 盒结合蛋白-1(XBP-1)是内质网(ER)应激过程中一组基因的重要调控因子。在本研究中,我们分析了内源性 XBP-1 的表达和定位,以确定 ER 应激对小鼠着床前胚胎发育能力的影响。荧光染色显示,功能性 XBP-1 定位于成熟卵母细胞纺锤体上,在生发泡(GV)期大量存在于核内。然而,在着床前胚胎中,XBP-1 仅在一细胞期存在于细胞质中。在二细胞期、四细胞期、八细胞期、桑椹胚和囊胚期,XBP-1 在核内的密度高于细胞质。此外,RT-PCR 分析证实,除一细胞期外,所有着床前胚胎阶段均存在活性 XBP-1 mRNA 剪接。作为阳性对照的 ER 应激诱导剂衣霉素(TM)促进一细胞期和二细胞期核内 XBP-1 密度增加。同样,添加 25mM 山梨醇的培养基也显著增加了 1 细胞和 2 细胞胚胎核内的活性 XBP-1 表达。相反,高浓度的 TM 或山梨醇导致核内 XBP-1 密度降低和明显的 ER 应激诱导凋亡。熊去氧胆酸(TUDCA)是一种已知的 ER 应激抑制剂,通过减弱二细胞期核内活性 XBP-1 蛋白的表达,提高了二细胞胚胎发育至囊胚的速度。我们的数据表明,内源性 XBP-1 在正常着床前胚胎发育中发挥作用。此外,XBP-1 剪接在小鼠着床前胚胎培养应激过程中被激活,生成功能性形式。TUDCA 可抑制高渗诱导的 ER 应激以及 ER 应激诱导的小鼠着床前胚胎发育中的凋亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5424/3396646/a987cad5a1f7/pone.0040433.g001.jpg

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