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WNT-卷曲蛋白-LRP5/6信号通路在涡虫再生过程中介导后端命运和增殖。

WNT-FRIZZLED-LRP5/6 Signaling Mediates Posterior Fate and Proliferation during Planarian Regeneration.

作者信息

Pascual-Carreras Eudald, Sureda-Gómez Miquel, Barrull-Mascaró Ramon, Jordà Natàlia, Gelabert Maria, Coronel-Córdoba Pablo, Saló Emili, Adell Teresa

机构信息

Department of Genetics, Microbiology and Statistics and Institute of Biomedicine, Universitat de Barcelona, 08028 Barcelona, Catalunya, Spain.

Institut de Biomedicina de la Universitat de Barcelona (IBUB), Universitat de Barcelona, 08028 Barcelona, Catalunya, Spain.

出版信息

Genes (Basel). 2021 Jan 15;12(1):101. doi: 10.3390/genes12010101.

DOI:10.3390/genes12010101
PMID:33467529
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7830089/
Abstract

An organizer is defined as a group of cells that secrete extracellular proteins that specify the fate of surrounding cells according to their concentration. Their function during embryogenesis is key in patterning new growing tissues. Although organizers should also participate in adult development when new structures are regenerated, their presence in adults has only been identified in a few species with striking regenerative abilities, such as planarians. Planarians provide a unique model to understand the function of adult organizers, since the presence of adult pluripotent stem cells provides them with the ability to regenerate any body part. Previous studies have shown that the differential activation of the WNT/β-catenin signal in each wound is fundamental to establish an anterior or a posterior organizer in the corresponding wound. Here, we identify the receptors that mediate the WNT/β-catenin signal in posterior-facing wounds. We found that Wnt1-Fzd1-LRP5/6 signaling is evolutionarily conserved in executing a WNT/β-catenin signal to specify cell fate and to trigger a proliferative response. Our data allow a better understanding of the mechanism through which organizers signal to a "competent" field of cells and integrate the patterning and growth required during de novo formation of organs and tissues.

摘要

组织者被定义为一群分泌细胞外蛋白质的细胞,这些蛋白质根据其浓度决定周围细胞的命运。它们在胚胎发生过程中的功能对于构建新的生长组织至关重要。尽管组织者在新结构再生时也应参与成体发育,但仅在少数具有显著再生能力的物种(如涡虫)中发现了它们在成体中的存在。涡虫提供了一个独特的模型来理解成体组织者的功能,因为成体多能干细胞的存在使它们能够再生任何身体部位。先前的研究表明,每个伤口中WNT/β-连环蛋白信号的差异激活对于在相应伤口中建立前部或后部组织者至关重要。在这里,我们确定了介导向后伤口中WNT/β-连环蛋白信号的受体。我们发现,Wnt1-Fzd1-LRP5/6信号通路在执行WNT/β-连环蛋白信号以决定细胞命运并触发增殖反应方面具有进化保守性。我们的数据有助于更好地理解组织者向“有能力”的细胞区域发出信号并整合器官和组织从头形成过程中所需的模式形成和生长的机制。

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WNT-FRIZZLED-LRP5/6 Signaling Mediates Posterior Fate and Proliferation during Planarian Regeneration.WNT-卷曲蛋白-LRP5/6信号通路在涡虫再生过程中介导后端命运和增殖。
Genes (Basel). 2021 Jan 15;12(1):101. doi: 10.3390/genes12010101.
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teashirt is required for head-versus-tail regeneration polarity in planarians.茶蛋白对于涡虫头部与尾部再生极性是必需的。
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Planarian organizers.涡虫组织者。
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Planarian yorkie/YAP functions to integrate adult stem cell proliferation, organ homeostasis and maintenance of axial patterning.涡虫 yorkie/YAP 功能整合成年干细胞增殖、器官稳态和轴向模式维持。
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本文引用的文献

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A Regulatory Program for Initiation of Wnt Signaling during Posterior Regeneration.Wnt 信号起始的调控程序在后再生过程中。
Cell Rep. 2020 Sep 1;32(9):108098. doi: 10.1016/j.celrep.2020.108098.
2
Planarian cell number depends on , a novel gene family that balances cell proliferation and cell death.涡虫细胞数量取决于 ,这是一个新的基因家族,可以平衡细胞增殖和细胞死亡。
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CDD/SPARCLE: the conserved domain database in 2020.CDD/SPARCLE:2020 年的保守结构域数据库。
涡虫再生中细胞间通讯的已知、未知和未知的未知。
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Meis1 Controls the Differentiation of Eye Progenitor Cells and the Formation of Posterior Poles during Planarian Regeneration.Meis1在涡虫再生过程中控制眼祖细胞的分化和后极的形成。
Int J Mol Sci. 2023 Feb 9;24(4):3505. doi: 10.3390/ijms24043505.
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Heterotrimeric G proteins regulate planarian regeneration and behavior.三聚体 G 蛋白调控涡虫再生和行为。
Genetics. 2023 Apr 6;223(4). doi: 10.1093/genetics/iyad019.
6
Wnt/β-catenin signalling is required for pole-specific chromatin remodeling during planarian regeneration.Wnt/β-catenin 信号通路在涡虫再生过程中极性特异性染色质重塑中起作用。
Nat Commun. 2023 Jan 18;14(1):298. doi: 10.1038/s41467-023-35937-y.
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The Evolution of Invertebrate Animals.无脊椎动物的进化。
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Extensive loss of Wnt genes in Tardigrada.缓步动物中广泛丢失的 Wnt 基因。
BMC Ecol Evol. 2021 Dec 27;21(1):223. doi: 10.1186/s12862-021-01954-y.
Nucleic Acids Res. 2020 Jan 8;48(D1):D265-D268. doi: 10.1093/nar/gkz991.
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Bioinformatics. 2020 Mar 1;36(6):1889-1895. doi: 10.1093/bioinformatics/btz802.
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Nat Commun. 2019 Mar 5;10(1):1044. doi: 10.1038/s41467-019-09010-6.
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