Yan Hong-Jie, Zhou Shu-Yan, Li Yang, Zhang Hui, Deng Chun-Yan, Qi Hui, Li Fu-Rong
The Key Laboratory of Stem Cell and Cellular Therapy, The Second Clinical Medical College (Shenzhen People's Hospital), Jinan University, Shenzhen 518020, China; Shenzhen Cell Therapy Public Service Platform, Shenzhen 518020, China.
Nevada Cancer Institute, Las Vegas, NV 89135, USA.
Exp Cell Res. 2016 Jan 15;340(2):227-37. doi: 10.1016/j.yexcr.2015.12.015. Epub 2015 Dec 31.
Human induced pluripotent stem cells (hiPSCs) are capable of unlimited self-renewal and can generate nearly all cells in the body. Changes induced by different LSD1 activities on the regulation of hiPSC self-renewal and differentiation and the mechanism underlying such changes were determined. We used two different LSD1 inhibitors (phenelzine sulfate and tranylcypromine) and RNAi technique to inhibit LSD1 activity, and we obtained hiPSCs showing 71.3%, 53.28%, and 31.33% of the LSD1 activity in normal hiPSCs. The cells still maintained satisfactory self-renewal capacity when LSD1 activity was at 71.3%. The growth rate of hiPSCs decreased and cells differentiated when LSD1 activity was at approximately 53.28%. The hiPSCs were mainly arrested in the G0/G1 phase and simultaneously differentiated into endodermal tissue when LSD1 activity was at 31.33%. Teratoma experiments showed that the downregulation of LSD1 resulted in low teratoma volume. When LSD1 activity was below 50%, pluripotency of hiPSCs was impaired, and the teratomas mainly comprised endodermal and mesodermal tissues. This phenomenon was achieved by regulating the critical balance between histone methylation and demethylation at regulatory regions of several key pluripotent and developmental genes.
人诱导多能干细胞(hiPSC)能够无限自我更新,并能生成体内几乎所有类型的细胞。我们确定了不同LSD1活性对hiPSC自我更新和分化调控的影响以及这种变化背后的机制。我们使用两种不同的LSD1抑制剂(硫酸苯乙肼和反苯环丙胺)和RNAi技术来抑制LSD1活性,获得了LSD1活性分别为正常hiPSC的71.3%、53.28%和31.33%的hiPSC。当LSD1活性为71.3%时,细胞仍保持令人满意的自我更新能力。当LSD1活性约为53.28%时,hiPSC的生长速率下降且细胞发生分化。当LSD1活性为31.33%时,hiPSC主要停滞在G0/G1期并同时分化为内胚层组织。畸胎瘤实验表明,LSD1的下调导致畸胎瘤体积较小。当LSD1活性低于50%时,hiPSC的多能性受损,畸胎瘤主要由内胚层和中胚层组织组成。这种现象是通过调节几个关键多能性和发育基因调控区域的组蛋白甲基化和去甲基化之间的关键平衡来实现的。