Center for Genomics, School of Medicine, Loma Linda University, Loma Linda, CA, USA.
Shanghai Institute of Microsystem and Information Technology Chinese Academy of Sciences, Shanghai, China.
Commun Biol. 2023 Apr 11;6(1):393. doi: 10.1038/s42003-023-04737-x.
Mesenchymal stromal cells (MSCs) have great value in cell therapies. The MSC therapies have many challenges due to its inconsistent potency and limited quantity. Here, we report a strategy to generate induced MSCs (iMSCs) by directly reprogramming human peripheral blood mononuclear cells (PBMCs) with OCT4, SOX9, MYC, KLF4, and BCL-XL using a nonintegrating episomal vector system. While OCT4 was not required to reprogram PBMCs into iMSCs, omission of OCT4 significantly impaired iMSC functionality. The omission of OCT4 resulted in significantly downregulating MSC lineage specific and mesoderm-regulating genes, including SRPX, COL5A1, SOX4, SALL4, TWIST1. When reprogramming PBMCs in the absence of OCT4, 67 genes were significantly hypermethylated with reduced transcriptional expression. These data indicate that transient expression of OCT4 may serve as a universal reprogramming factor by increasing chromatin accessibility and promoting demethylation. Our findings represent an approach to produce functional MSCs, and aid in identifying putative function associated MSC markers.
间充质基质细胞(MSCs)在细胞治疗中有很大的价值。由于其效力不一致和数量有限,MSC 治疗存在许多挑战。在这里,我们报告了一种使用非整合性附加体载体系统,通过 OCT4、SOX9、MYC、KLF4 和 BCL-XL 直接重编程人外周血单核细胞(PBMCs)生成诱导多能干细胞(iMSCs)的策略。虽然 OCT4 不是将 PBMC 重编程为 iMSCs 所必需的,但 OCT4 的缺失会显著损害 iMSC 的功能。OCT4 的缺失导致 MSC 谱系特异性和中胚层调节基因的显著下调,包括 SRPX、COL5A1、SOX4、SALL4、TWIST1。当在缺乏 OCT4 的情况下重编程 PBMC 时,67 个基因的甲基化显著上调,转录表达减少。这些数据表明,瞬时表达 OCT4 可能通过增加染色质可及性和促进去甲基化来作为一种通用的重编程因子。我们的发现代表了一种产生功能性 MSCs 的方法,并有助于确定与 MSC 标记物相关的潜在功能。