Guo Weiyun, Liu Xiao, Pang Lina, Kong Zhihong, Lin Ziyi, Ren Jing, Dong Zimei, Chen Guangwen, Liu Dezeng
College of Life Science, Henan Normal University, No. 46, Jianshe Road, Xinxiang 453007, Henan, China.
School of Life Sciences and Technology, Xinxiang Medical University, Xinxiang 453002, Henan, China.
Cell Tissue Res. 2025 Mar;399(3):337-350. doi: 10.1007/s00441-024-03939-x. Epub 2025 Jan 7.
Sox genes encode a family of transcription factors that regulate multiple biological processes during metazoan development, including embryogenesis, tissue homeostasis, nervous system specification, and stem cell maintenance. The planarian Dugesia japonica contains a reservoir of stem cells that grow and divide continuously to support cellular turnover. However, whether SOX proteins retain these conserved functions in planarians remains to be determined. In this study, three sox gene homologs, DjsoxP-1, DjsoxP-5, and Djsox5, were identified in the planarian transcriptome, and their roles were investigated. The results showed that the amino acids deduced from the three sox genes all contained high-mobility group (HMG) domain sequences, which are highly conserved in sox family members. Whole-mount in situ hybridization (WISH) and real-time quantitative PCR (RT-qPCR) results indicated that the three sox genes were mainly expressed in parenchymal tissues and regenerative blastema. Additionally, X-ray irradiation assay and dFISH suggested that the three Djsox genes were expressed in neoblasts and other cell types. Head regression in intact planarian and smaller blastemas in both head or tail fragments of regenerating planarians were exhibited with DjsoxP-1 and Djsox5 RNA interference (RNAi) compared to the control animals, suggesting that DjsoxP-1 and Djsox5 have essential roles during cellular turnover and regeneration in planarians; conversely, there was no obvious phenotypic abnormalities or regeneration defect in DjsoxP-5 RNAi animals. Knockdown of DjsoxP-1 or Djsox5 decreased neoblast proliferation and promoted cell apoptosis. In conclusion, our findings demonstrate that DjsoxP-1 and Djsox5 are involved in cellular turnover and regeneration in planarians by modulating coordination between cell proliferation and apoptosis.
Sox基因编码一类转录因子,这些转录因子在后生动物发育过程中调节多种生物学过程,包括胚胎发生、组织稳态、神经系统特化和干细胞维持。日本三角涡虫含有一个干细胞库,这些干细胞持续生长和分裂以支持细胞更新。然而,SOX蛋白在涡虫中是否保留这些保守功能仍有待确定。在本研究中,在涡虫转录组中鉴定出三个sox基因同源物,即DjsoxP-1、DjsoxP-5和Djsox5,并对它们的作用进行了研究。结果表明,从这三个sox基因推导的氨基酸均包含高迁移率族(HMG)结构域序列,这些序列在sox家族成员中高度保守。全组织原位杂交(WISH)和实时定量PCR(RT-qPCR)结果表明,这三个sox基因主要在实质组织和再生芽基中表达。此外,X射线照射试验和dFISH表明,这三个Djsox基因在新生细胞和其他细胞类型中表达。与对照动物相比,DjsoxP-1和Djsox5 RNA干扰(RNAi)使完整涡虫出现头部退化,再生涡虫头部或尾部片段中的芽基变小,这表明DjsoxP-1和Djsox5在涡虫的细胞更新和再生过程中起重要作用;相反,DjsoxP-5 RNAi动物没有明显的表型异常或再生缺陷。敲低DjsoxP-1或Djsox5会降低新生细胞增殖并促进细胞凋亡。总之,我们的研究结果表明,DjsoxP-1和Djsox5通过调节细胞增殖和凋亡之间的协调参与涡虫的细胞更新和再生。