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信号抑制揭示JAK/STAT3通路对牛内细胞团发育至关重要。

Signal Inhibition Reveals JAK/STAT3 Pathway as Critical for Bovine Inner Cell Mass Development.

作者信息

Meng Fanli, Forrester-Gauntlett Blaise, Turner Pavla, Henderson Harold, Oback Björn

机构信息

AgResearch Ltd., Ruakura Research Centre, Reproductive Technologies, Hamilton, New Zealand.

AgResearch Ltd., Ruakura Research Centre, Reproductive Technologies, Hamilton, New Zealand

出版信息

Biol Reprod. 2015 Dec;93(6):132. doi: 10.1095/biolreprod.115.134254. Epub 2015 Oct 28.

Abstract

The inner cell mass (ICM) of mammalian blastocysts consists of pluripotent epiblast and hypoblast lineages, which develop into embryonic and extraembryonic tissues, respectively. We conducted a chemical screen for regulators of epiblast identity in bovine Day 8 blastocysts. From the morula stage onward, in vitro fertilized embryos were cultured in the presence of cell-permeable small molecules targeting nine principal signaling pathway components, including TGFbeta1, BMP, EGF, VEGF, PDGF, FGF, cAMP, PI3K, and JAK signals. Using 1) blastocyst quality (by morphological grading), 2) cell numbers (by differential stain), and 3) epiblast (FGF4, NANOG) and hypoblast (PDGFRa, SOX17) marker gene expression (by quantitative PCR), we identified positive and negative regulators of ICM development and pluripotency. TGFbeta1, BMP, and cAMP and combined VEGF/PDGF/FGF signals did not affect blastocyst development while PI3K was important for ICM growth but did not alter lineage-specific gene expression. Stimulating cAMP specifically increased NANOG expression, while combined VEGF/PDGF/FGF inhibition up-regulated epiblast and hypoblast markers. The strongest effects were observed by suppressing JAK1/2 signaling with AZD1480. This treatment interfered with ICM formation, but trophectoderm cell numbers and markers (CDX2, KTR8) were not altered. JAK inhibition repressed both epiblast and hypoblast transcripts as well as naive pluripotency-related genes (KLF4, TFCP2L1) and the JAK substrate STAT3. We found that tyrosine (Y) 705-phosphorylated STAT3 (pSTAT3(Y705)) was restricted to ICM nuclei, where it colocalized with SOX2 and NANOG. JAK inhibition abolished this ICM-exclusive pSTAT3(Y705) signal and strongly reduced the number of SOX2-positive nuclei. In conclusion, JAK/STAT3 activation is required for bovine ICM formation and acquisition of naive pluripotency markers.

摘要

哺乳动物囊胚的内细胞团(ICM)由多能的上胚层和下胚层谱系组成,它们分别发育成胚胎组织和胚外组织。我们对牛第8天囊胚中上胚层特性的调节因子进行了化学筛选。从桑椹胚阶段开始,将体外受精的胚胎在针对九种主要信号通路成分的细胞可渗透小分子存在下培养,这些成分包括转化生长因子β1(TGFbeta1)、骨形态发生蛋白(BMP)、表皮生长因子(EGF)、血管内皮生长因子(VEGF)、血小板衍生生长因子(PDGF)、成纤维细胞生长因子(FGF)、环磷酸腺苷(cAMP)、磷脂酰肌醇-3激酶(PI3K)和Janus激酶(JAK)信号。利用1)囊胚质量(通过形态学分级)、2)细胞数量(通过鉴别染色)以及3)上胚层(FGF4、NANOG)和下胚层(PDGFRa、SOX17)标记基因表达(通过定量PCR),我们鉴定出了ICM发育和多能性的正、负调节因子。TGFbeta1、BMP和cAMP以及VEGF/PDGF/FGF信号组合不影响囊胚发育,而PI3K对ICM生长很重要,但不改变谱系特异性基因表达。特异性刺激cAMP可增加NANOG表达,而抑制VEGF/PDGF/FGF组合则上调上胚层和下胚层标记物。用AZD1480抑制JAK1/2信号观察到最强的效果。这种处理干扰了ICM形成,但滋养外胚层细胞数量和标记物(CDX2、KTR8)未改变。JAK抑制抑制了上胚层和下胚层转录本以及幼稚多能性相关基因(KLF4、TFCP2L1)和JAK底物信号转导子和转录激活子3(STAT3)。我们发现酪氨酸(Y)705磷酸化的STAT3(pSTAT3(Y705))局限于ICM细胞核,在那里它与SOX2和NANOG共定位。JAK抑制消除了这种ICM特有的pSTAT3(Y705)信号,并强烈减少了SOX2阳性细胞核的数量。总之,JAK/STAT3激活是牛ICM形成和获得幼稚多能性标记物所必需的。

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