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Notch 信号通路在小鼠囊胚发育和孵化中的作用。

Notch signaling in mouse blastocyst development and hatching.

机构信息

Reproduction and Development Laboratory, CIISA - Centro de Investigação Interdisciplinar em Sanidade Animal, Faculdade de Medicina Veterinária, Universidade de Lisboa, 1300-477, Lisbon, Portugal.

CBIOS - Research Centre for Biosciences and Health Technologies, Faculty of Veterinary Medicine, Lusófona University of Humanities and Technologies, Lisbon, Portugal.

出版信息

BMC Dev Biol. 2020 Jun 2;20(1):9. doi: 10.1186/s12861-020-00216-2.

Abstract

BACKGROUND

Mammalian early embryo development requires a well-orchestrated interplay of cell signaling pathways. Notch is a major regulatory pathway involved in cell-fate determination in embryonic and adult scenarios. However, the role of Notch in embryonic pre-implantation development is controversial. In particular, Notch role on blastocyst development and hatching remains elusive, and a complete picture of the transcription and expression patterns of Notch components during this time-period is not available.

RESULTS

This study provided a comprehensive view on the dynamics of individual embryo gene transcription and protein expression patterns of Notch components (receptors Notch1-4; ligands Dll1 and Dll4, Jagged1-2; and effectors Hes1-2), and their relationship with transcription of gene markers of pluripotency and differentiation (Sox2, Oct4, Klf4, Cdx2) during mouse blastocyst development and hatching. Transcription of Notch1-2, Jagged1-2 and Hes1 was highly prevalent and dynamic along stages of development, whereas transcription of Notch3-4, Dll4 and Hes2 had a low prevalence among embryos. Transcription levels of Notch1, Notch2, Jagged2 and Hes1 correlated with each other and with those of pluripotency and differentiation genes. Gene transcription was associated to protein expression, except for Jagged2, where high transcription levels in all embryos were not translated into protein. Presence of Notch signaling activity was confirmed through nuclear NICD and Hes1 detection, and downregulation of Hes1 transcription following canonical signaling blockade with DAPT. In vitro embryo culture supplementation with Jagged1 had no effect on embryo developmental kinetics. In contrast, supplementation with Jagged2 abolished Jagged1 transcription, downregulated Cdx2 transcription and inhibited blastocyst hatching. Notch signaling blockade by DAPT downregulated transcription of Sox2, and retarded embryo hatching.

CONCLUSION

Transcription of Notch genes showed a dynamic pattern along blastocyst development and hatching. Data confirmed Notch signaling activity, and lead to the suggestion that Notch canonical signaling may be operating through Notch1, Notch3, Jagged1 and Hes1. Embryo culture supplementation with Jagged1 and Jagged2 unveiled a possible regulatory effect between Jagged1, Cdx2 and blastocyst hatching. Overall, results indicate that a deregulation in Notch signaling, either by its over or under-activation, affects blastocyst development and hatching.

摘要

背景

哺乳动物早期胚胎发育需要细胞信号通路的协调相互作用。Notch 是参与胚胎和成人场景中细胞命运决定的主要调节途径。然而,Notch 在胚胎植入前发育中的作用存在争议。特别是,Notch 对囊胚发育和孵化的作用仍然难以捉摸,并且在此期间 Notch 成分的转录和表达模式的完整图片尚不可用。

结果

本研究提供了 Notch 成分(受体 Notch1-4;配体 Dll1 和 Dll4、Jagged1-2;和效应物 Hes1-2)的个体胚胎基因转录和蛋白表达模式以及它们与多能性和分化基因(Sox2、Oct4、Klf4、Cdx2)转录的关系的全面视图在小鼠囊胚发育和孵化过程中。Notch1-2、Jagged1-2 和 Hes1 的转录在发育阶段高度普遍且具有动态性,而 Notch3-4、Dll4 和 Hes2 的转录在胚胎中则很少见。Notch1、Notch2、Jagged2 和 Hes1 的转录水平彼此相关,与多能性和分化基因相关。基因转录与蛋白表达相关,除了 Jagged2,所有胚胎中高转录水平都没有转化为蛋白质。通过核 NICD 和 Hes1 的检测证实了 Notch 信号活性的存在,并通过 DAPT 对经典信号阻断进行了 Hes1 转录的下调。Jagged1 在体外胚胎培养中的补充对胚胎发育动力学没有影响。相反,Jagged2 的补充消除了 Jagged1 的转录,下调了 Cdx2 的转录并抑制了囊胚孵化。DAPT 的 Notch 信号阻断下调了 Sox2 的转录,并延迟了胚胎孵化。

结论

Notch 基因的转录在囊胚发育和孵化过程中呈现动态模式。数据证实了 Notch 信号活性,并提出 Notch 经典信号可能通过 Notch1、Notch3、Jagged1 和 Hes1 起作用。Jagged1 和 Jagged2 的胚胎培养补充揭示了 Jagged1、Cdx2 和囊胚孵化之间可能存在的调节作用。总的来说,结果表明 Notch 信号的失调,无论是过度激活还是激活不足,都会影响囊胚的发育和孵化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ae6/7265256/9499a8402075/12861_2020_216_Fig1_HTML.jpg

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