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在哺乳动物系统中可视化WNT信号传导。

Visualizing WNT signaling in mammalian systems.

作者信息

van der Wal Tanne, van Amerongen Renée

机构信息

Developmental, Stem Cell and Cancer Biology, Swammerdam Institute for Life Sciences, University of Amsterdam, Amsterdam, The Netherlands.

Developmental, Stem Cell and Cancer Biology, Swammerdam Institute for Life Sciences, University of Amsterdam, Amsterdam, The Netherlands.

出版信息

Curr Top Dev Biol. 2023;153:61-93. doi: 10.1016/bs.ctdb.2023.02.001. Epub 2023 Mar 16.

DOI:10.1016/bs.ctdb.2023.02.001
PMID:36967202
Abstract

WNT/CTNNB1 signaling plays a critical role in the development of all multicellular animals. Here, we include both the embryonic stages, during which tissue morphogenesis takes place, and the postnatal stages of development, during which tissue homeostasis occurs. Thus, embryonic development concerns lineage development and cell fate specification, while postnatal development involves tissue maintenance and regeneration. Multiple tools are available to researchers who want to investigate, and ideally visualize, the dynamic and pleiotropic involvement of WNT/CTNNB1 signaling in these processes. Here, we discuss and evaluate the decisions that researchers need to make in identifying the experimental system and appropriate tools for the specific question they want to address, covering different types of WNT/CTNNB1 reporters in cells and mice. At a molecular level, advanced quantitative imaging techniques can provide spatio-temporal information that cannot be provided by traditional biochemical assays. We therefore also highlight some recent studies to show their potential in deciphering the complex and dynamic mechanisms that drive WNT/CTNNB1 signaling.

摘要

WNT/CTNNB1信号通路在所有多细胞动物的发育过程中起着关键作用。在这里,我们涵盖了组织形态发生的胚胎阶段以及组织稳态发生的出生后发育阶段。因此,胚胎发育涉及谱系发育和细胞命运决定,而出生后发育则涉及组织维持和再生。对于想要研究并理想地可视化WNT/CTNNB1信号通路在这些过程中的动态和多效性参与的研究人员来说,有多种工具可供使用。在这里,我们讨论并评估研究人员在为他们想要解决的特定问题确定实验系统和合适工具时需要做出的决策,涵盖细胞和小鼠中不同类型的WNT/CTNNB1报告基因。在分子水平上,先进的定量成像技术可以提供传统生化分析无法提供的时空信息。因此,我们还重点介绍了一些近期研究,以展示它们在解读驱动WNT/CTNNB1信号通路的复杂动态机制方面的潜力。

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