对MEK抑制的剂量依赖性反应决定了牛胚胎的次胚命运。

Q2 Biochemistry, Genetics and Molecular Biology
Jesica R Canizo, Amada E Ynsaurralde Rivolta, Camila Vazquez Echegaray, Mariana Suvá, Virgilia Alberio, Juan F Aller, Alejandra S Guberman, Daniel F Salamone, Ricardo H Alberio, Ramiro Alberio
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引用次数: 17

摘要

背景:下胚层的分离和多能外胚层的出现标志着哺乳动物胚胎囊胚形成的最后阶段。在牛胚胎中,下胚层的形成已被部分研究,证据表明MEK信号在这一谱系的分离中起有限的作用。本研究利用NANOG和SOX17分别作为外胚层和下胚层的免疫荧光分析,探讨了不同信号通路在牛胚胎谱系分离过程中的作用。结果:我们发现SOX17在16-32细胞阶段的胚胎中开始表达,而NANOG在8细胞阶段首次被检测到。SOX17首先与NANOG共表达,但这些标记在囊胚晚期变得相互排斥。通过评估NANOG/SOX17的表达动力学,我们发现抑制MEK信号可以消除牛囊胚中SOX17的表达,而不改变NANOG的表达。当与ERK抑制剂联合使用时,WNT、PKC和LIF的调节不影响外胚层中NANOG的表达。结论:本研究表明SOX17可以作为牛下胚层的早期标志物,根据其表达谱,我们发现下胚层在第7天的囊胚中分离。此外,1 μM的PD0325901可抑制SOX17的表达,但不影响外胚层中的NANOG群体。当与ERK抑制剂联合使用时,WNT、PKC和LIF的调节不足以支持外胚层中NANOG表达的增强,这表明需要研究其他信号通路以确定它们在外胚层扩张中的潜在作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A dose-dependent response to MEK inhibition determines hypoblast fate in bovine embryos.

A dose-dependent response to MEK inhibition determines hypoblast fate in bovine embryos.

A dose-dependent response to MEK inhibition determines hypoblast fate in bovine embryos.

A dose-dependent response to MEK inhibition determines hypoblast fate in bovine embryos.

Background: The segregation of the hypoblast and the emergence of the pluripotent epiblast mark the final stages of blastocyst formation in mammalian embryos. In bovine embryos the formation of the hypoblast has been partially studied, and evidence shows that MEK signalling plays a limited role in the segregation of this lineage. Here we explored the role of different signalling pathways during lineage segregation in the bovine embryo using immunofluorescence analysis of NANOG and SOX17 as readouts of epiblast and hypoblast, respectively.

Results: We show that SOX17 starts to be expressed in 16-32-cell stage embryos, whereas NANOG is first detected from 8-cell stage. SOX17 is first co-expressed with NANOG, but these markers become mutually exclusive by the late blastocyst stage. By assessing the expression kinetics of NANOG/SOX17 we show that inhibition of MEK signalling can eliminate SOX17 expression in bovine blastocysts, without altering NANOG expression. Modulation of WNT, PKC and LIF did not affect NANOG expression in the epiblast when used in combination with the ERK inhibitor.

Conclusions: This study shows that SOX17 can be used as a reliable early marker of hypoblast in the bovine, and based on its expression profile we show that the hypoblast segregates in day 7 blastocysts. Furthermore, SOX17 expression is abolished using 1 μM of PD0325901, without affecting the NANOG population in the epiblast. Modulation of WNT, PKC and LIF are not sufficient to support enhanced NANOG expression in the epiblast when combined with ERK inhibitor, indicating that additional signalling pathways should be examined to determine their potential roles in epiblast expansion.

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来源期刊
BMC Developmental Biology
BMC Developmental Biology 生物-发育生物学
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: BMC Developmental Biology is an open access, peer-reviewed journal that considers articles on the development, growth, differentiation and regeneration of multicellular organisms, including molecular, cellular, tissue, organ and whole organism research.
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