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DjPtpn11是涡虫(日本三角涡虫)再生的关键调节因子。

DjPtpn11 is an essential modulator of planarian (Dugesia japonica) regeneration.

作者信息

Wu Weiwei, Liu Shuo, Wu Hao, Chen Meishan, Gao Lili, Zhao Bosheng, Liu Baohua, Pang Qiuxiang

机构信息

Anti-aging & Regenerative Medicine Research Institution, School of Life Sciences and Medicine, Shandong University of Technology, Zibo 255049, China.

Laboratory of Developmental and Evolutionary Biology, School of Life Sciences and Medicine, Shandong University of Technology, Zibo 255049, China.

出版信息

Int J Biol Macromol. 2022 Jun 1;209(Pt A):1054-1064. doi: 10.1016/j.ijbiomac.2022.04.095. Epub 2022 Apr 19.

Abstract

Freshwater planarian Dugesia japonica is an excellent model organism for investigating stem cell behavior during regeneration. Despite studies showing that numerous genetic factors are involved in regeneration, much more research is required to fully understand the molecular mechanisms that orchestrate regeneration. In this study, we identified an evolutionarily conserved gene DjPtpn11(DjShp2). DjPtpn11 transcripts are expressed in neoblasts and some differentiated cells, with a high expression at the newly formed blastema. Its silencing by RNA interference (RNAi) affected anterior regeneration and inhibited the regeneration of posterior regions, including cholinergic and serotonergic neuron regeneration. In adult planarians, DjPtpn11 knockdown did not affect neoblast survival and proliferation but might prevent the stem cell migration and differentiation through ERK signaling. DjPtpn11 was demonstrated to be necessary for the anterior blastema cell differentiation partially via regulating ERK-DjMkpA activity. DjPtpn11 also influenced posterior specification via DjIslet, suggesting that DjPtpn11 may be involved in regulating the Wnt signaling pathway during the development of posterior blastema. Together, these data identified that DjPtpn11 is an essential modulator for the regeneration of planarians, and it may influence the appropriate differentiation of blastema cells.

摘要

淡水涡虫日本三角涡虫是研究再生过程中干细胞行为的优秀模式生物。尽管有研究表明众多遗传因素参与再生,但要全面理解协调再生的分子机制还需要更多研究。在本研究中,我们鉴定出一个进化上保守的基因DjPtpn11(DjShp2)。DjPtpn11转录本在新生细胞和一些分化细胞中表达,在新形成的芽基中高表达。通过RNA干扰(RNAi)使其沉默会影响前部再生并抑制后部区域的再生,包括胆碱能和血清素能神经元的再生。在成年涡虫中,DjPtpn11基因敲低不影响新生细胞的存活和增殖,但可能通过ERK信号通路阻止干细胞迁移和分化。DjPtpn11被证明部分通过调节ERK-DjMkpA活性对前部芽基细胞分化是必需的。DjPtpn11还通过DjIslet影响后部特化,表明DjPtpn11可能在后部芽基发育过程中参与调节Wnt信号通路。总之,这些数据表明DjPtpn11是涡虫再生的关键调节因子,并且它可能影响芽基细胞的适当分化。

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