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分泌型 Wnt 通路成分的表达揭示了扁形动物再生反应的出人意料的复杂性。

Expression of secreted Wnt pathway components reveals unexpected complexity of the planarian amputation response.

机构信息

Department of Neurobiology and Anatomy, Howard Hughes Medical Institute, University of Utah School of Medicine, 401 MREB, 20N 1900E, Salt Lake City, UT 84132, USA.

出版信息

Dev Biol. 2010 Nov 1;347(1):24-39. doi: 10.1016/j.ydbio.2010.08.007. Epub 2010 Aug 10.

DOI:10.1016/j.ydbio.2010.08.007
PMID:20707997
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2966944/
Abstract

Regeneration is widespread throughout the animal kingdom, but our molecular understanding of this process in adult animals remains poorly understood. Wnt/β-catenin signaling plays crucial roles throughout animal life from early development to adulthood. In intact and regenerating planarians, the regulation of Wnt/β-catenin signaling functions to maintain and specify anterior/posterior (A/P) identity. Here, we explore the expression kinetics and RNAi phenotypes for secreted members of the Wnt signaling pathway in the planarian Schmidtea mediterranea. Smed-wnt and sFRP expression during regeneration is surprisingly dynamic and reveals fundamental aspects of planarian biology that have been previously unappreciated. We show that after amputation, a wounding response precedes rapid re-organization of the A/P axis. Furthermore, cells throughout the body plan can mount this response and reassess their new A/P location in the complete absence of stem cells. While initial stages of the amputation response are stem cell independent, tissue remodeling and the integration of a new A/P address with anatomy are stem cell dependent. We also show that WNT5 functions in a reciprocal manner with SLIT to pattern the planarian mediolateral axis, while WNT11-2 patterns the posterior midline. Moreover, we perform an extensive phylogenetic analysis on the Smed-wnt genes using a method that combines and integrates both sequence and structural alignments, enabling us to place all nine genes into Wnt subfamilies for the first time.

摘要

再生现象在整个动物界中都很普遍,但我们对成年动物中这一过程的分子理解还很有限。Wnt/β-catenin 信号通路在动物的整个生命周期中都起着至关重要的作用,从早期发育到成年期。在完整的和再生的涡虫中,Wnt/β-catenin 信号通路的调节作用维持和特化前后(A/P)的身份。在这里,我们探索了扁形动物 Schmidtea mediterranea 中 Wnt 信号通路分泌成员的表达动力学和 RNAi 表型。在再生过程中,Smed-wnt 和 sFRP 的表达非常动态,揭示了以前未被重视的扁形动物生物学的基本方面。我们表明,在截肢后,创伤反应先于 A/P 轴的快速重新组织。此外,整个身体计划的细胞都可以做出这种反应,并在完全没有干细胞的情况下重新评估它们在新的 A/P 位置。虽然截肢反应的初始阶段不依赖于干细胞,但组织重塑和新的 A/P 地址与解剖结构的整合依赖于干细胞。我们还表明,WNT5 以与 SLIT 相反的方式作用于模式扁形动物的中侧轴,而 WNT11-2 则模式化后中线。此外,我们使用一种结合和整合序列和结构比对的方法对 Smed-wnt 基因进行了广泛的系统发育分析,使我们能够首次将所有九个基因归入 Wnt 亚家族。

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The TALE class homeobox gene Smed-prep defines the anterior compartment for head regeneration.TALE 类 homeobox 基因 Smed-prep 定义了头部再生的前区。
PLoS Genet. 2010 Apr 22;6(4):e1000915. doi: 10.1371/journal.pgen.1000915.
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[The migration of regenerative cells and the factors that cause it in planarians].[涡虫中再生细胞的迁移及其引发因素]
Curr Biol. 2025 Jun 9;35(11):2479-2494.e3. doi: 10.1016/j.cub.2025.03.065. Epub 2025 Apr 15.
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Anterior-posterior polarity signals differentially regulate regeneration-competence of the tapeworm .前后极性信号差异调节绦虫的再生能力。
bioRxiv. 2025 Mar 13:2025.03.11.642590. doi: 10.1101/2025.03.11.642590.
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Wnt/β-catenin signalling underpins juvenile Fasciola hepatica growth and development.Wnt/β-连环蛋白信号传导是肝片形吸虫幼虫生长和发育的基础。
PLoS Pathog. 2025 Feb 7;21(2):e1012562. doi: 10.1371/journal.ppat.1012562. eCollection 2025 Feb.
6
Stem cells (neoblasts) and positional information jointly dominate regeneration in planarians.干细胞(新生细胞)和位置信息共同主导涡虫的再生过程。
Heliyon. 2025 Jan 9;11(2):e41833. doi: 10.1016/j.heliyon.2025.e41833. eCollection 2025 Jan 30.
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Sci Rep. 2024 May 23;14(1):11833. doi: 10.1038/s41598-024-61973-9.
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A PAK family kinase and the Hippo/Yorkie pathway modulate WNT signaling to functionally integrate body axes during regeneration.PAK 家族激酶和 Hippo/Yorkie 通路调节 WNT 信号,在再生过程中功能性整合身体轴。
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