Dai Yujian, Sun Jialei, He Na, An Liyou, Hou Chunhui, Du Fuliang
Jiangsu Key Laboratory for Molecular and Medical Biotechnology, College of Life Sciences, Nanjing Normal University, 210046, Nanjing, China.
Harbin Institute of Technology, 150001, Harbin, Heilongjiang, China.
Cell Death Discov. 2022 Aug 1;8(1):344. doi: 10.1038/s41420-022-01131-0.
The pluripotency of naïve mouse embryonic stem cells (mES) is regulated by multiple signaling pathways, with inhibition of protein kinase C (PKCi) playing a particularly important role in maintaining naïve mES. However, the regulatory function of nucleosome remodeling and deacetylase (NuRD) complex in mES cultured in a PKCi system is unknown. We found that, compared with 2iL-derived mES, PKCi-derived mES showed low mRNA expression of NuRD complex subunits, including MBD3, HDAC1/HDAC2, MTA1, and RbAP46/RbAP48. Western blot showed that PKCi-derived mES expressed lower protein levels of MBD3 and HDAC2 at passage 3, as well as MBD3, HDAC2, and MTA1 at passage 10, indicating that PKCi suppressed NuRD complex expression. Knockdown of MBD3 increased PKCi-derived mES pluripotency by increasing NANOG and OCT4 expression and colony formation. By contrast, overexpression of MBD3 or removal of PKC inhibitor-induced differentiation of mES, results in reduced NANOG, OCT4, and REX1 expression and colony formation, increased differentiation-related gene expression, and differentiation into flat cells. Knockdown of MBD3 in mES upon PKC inhibitor removal partially reversed cell differentiation. Our results show that the regulatory NuRD complex and its MBD3 subunit influence the naïve pluripotency of mES cultured in a PKCi system.
原始态小鼠胚胎干细胞(mES)的多能性受多种信号通路调控,其中蛋白激酶C抑制(PKCi)在维持原始态mES中发挥着尤为重要的作用。然而,核小体重塑与去乙酰化酶(NuRD)复合物在PKCi体系中培养的mES中的调控功能尚不清楚。我们发现,与2iL衍生的mES相比,PKCi衍生的mES中NuRD复合物亚基的mRNA表达较低,包括MBD3、HDAC1/HDAC2、MTA1和RbAP46/RbAP48。蛋白质印迹法显示,PKCi衍生的mES在传代3时MBD3和HDAC2的蛋白水平较低,在传代10时MBD3、HDAC2和MTA1的蛋白水平也较低,表明PKCi抑制了NuRD复合物的表达。敲低MBD3可通过增加NANOG和OCT4表达以及集落形成来提高PKCi衍生的mES的多能性。相反,MBD3的过表达或PKC抑制剂的去除诱导mES分化,导致NANOG、OCT4和REX1表达降低以及集落形成减少,分化相关基因表达增加,并分化为扁平细胞。去除PKC抑制剂后敲低mES中的MBD3可部分逆转细胞分化。我们的结果表明,调控性NuRD复合物及其MBD3亚基影响在PKCi体系中培养的mES的原始多能性。