Key Laboratory for Animal Genetics and Molecular Breeding of Jiangsu Province, College of Animal Science and Technology, Yangzhou University, Yangzhou, China.
Anim Biotechnol. 2023 Jun;34(3):686-697. doi: 10.1080/10495398.2022.2145293. Epub 2023 Apr 4.
MAP3K1 is a significant member of the MAPK family, and its expressed MEKK1 protein has a wide range of biological activities and is an essential node in the MAPK signaling pathway. A significant number of studies have revealed that MAP3K1 plays a complicated function in the control of cell proliferation, apoptosis, invasion and movement, participates in the regulation of the immune system, and plays an important role in wound healing, tumorigenesis and other processes. In this study, we looked at the involvement of MAP3K1 in the control of hair follicle stem cells (HFSCs). Overexpression of MAP3K1 significantly promoted the proliferation of HFSCs by inhibiting apoptosis and promoting the transition from S phase to G2 phase. The transcriptome identified 189 (MAP3K1_OE) and 414 (MAP3K1_sh) differential genes. The two pathways with the most significant enrichment of differentially expressed genes were the IL-17 signaling pathway and TNF signaling pathway, and the significantly enriched terms in the GO enrichment analysis involved regulation of response of external stimulus, inflammatory and cytokine. Indicate that MAP3K1 can function as a promoting factor in HFSCs through the induction of cell cycle transition from S phase to G2 phase can inhibition apoptosis by mediating crosstalk among several pathways and cytokines.HIGHLIGHTSAbnormal MAP3K1 expression in hair follicle stem cells (HFSCs) can impair HFSC proliferation and apoptosis.MAP3K1 controls hair follicle stem cell proliferation via modulating cell apoptosis and the ratio of cells in S phase/G2 phase.The differential genes shared by MAP3K1_sh and MAP3K1_OE are enriched in GO terms such as inflammation, adipocyte differentiation, acute inflammation, and so on.
MAP3K1 是 MAPK 家族的重要成员,其表达的 MEKK1 蛋白具有广泛的生物学活性,是 MAPK 信号通路中的关键节点。大量研究表明,MAP3K1 在控制细胞增殖、凋亡、侵袭和运动方面发挥着复杂的功能,参与免疫系统的调节,并在伤口愈合、肿瘤发生等过程中发挥着重要作用。在本研究中,我们研究了 MAP3K1 参与毛囊干细胞(HFSCs)调控的作用。MAP3K1 的过表达通过抑制凋亡和促进 S 期到 G2 期的转变,显著促进了 HFSCs 的增殖。转录组鉴定出 189 个(MAP3K1_OE)和 414 个(MAP3K1_sh)差异基因。差异表达基因富集度最高的两个通路是 IL-17 信号通路和 TNF 信号通路,GO 富集分析中显著富集的术语涉及对外界刺激的反应、炎症和细胞因子的调节。表明 MAP3K1 可以作为 HFSCs 的促进因子,通过诱导细胞周期从 S 期向 G2 期转变来抑制凋亡,通过介导几条通路和细胞因子之间的串扰来发挥作用。