The levels of reprogramming factors influence the induction and maintenance of pluripotency: the case of CD1 mouse strain cells.

IF 1 4区 生物学 Q4 DEVELOPMENTAL BIOLOGY
Luis Covarrubias, José-Ángel Martínez-Sarmiento, Concepción Valencia, Andras Nagy, David Hernández-García
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引用次数: 0

Abstract

The amount of proteins of the regulatory pluripotency network can be determinant for somatic cell reprogramming into induced pluripotent stem cells (iPSCs) as well as for the maintenance of pluripotent stem cells (PSCs). Here, we report a transposon-based reprogramming system (PB-Booster) that allowed high expression levels of a polycistronic transgene containing Myc, Klf4, Oct4 and Sox2 (MKOS) and showed increased reprogramming efficiency of fresh mouse embryonic fibroblasts (MEFs) into iPSCs under low, but not under high, MKOS expression levels. In contrast, MEFs after 2 passages derived into a similar number of iPSC colonies as fresh MEFs at a high MKOS dose, but this number was reduced at a low MKOS dose. Timing of reprogramming was not affected by MKOS expression levels but, importantly, exogenous MKOS expression in established PSCs caused a significant cell loss. At high but not at low MKOS expression levels, MEFs of the CD1 strain produced more initial cell clusters than iPSCs and, although reprogrammed at a similar efficiency as MEFs of the 129/Sv strain, iPSCs could not be maintained in the absence of exogenous MKOS. In CD1-iPSCs, Oct4, Nanog, Rex1 and Esrrb expression levels were reduced when compared with the levels in PSCs derived from the 129/Sv strain. Culture of CD1-iPSCs in medium with MEK and GSK3β inhibitors allowed their self-renewal in the absence of exogenous MKOS, but the expression levels of Oct4, Nanog, Rex1 and Esrrb were only partially increased. Despite the reduced levels of those pluripotency factors, CD1-iPSC kept high capacity for contribution to chimeric mouse embryos. Therefore, levels of regulatory pluripotency factors influence reprogramming initiation and PSC maintenance in vitro without affecting their differentiation potential in vivo.

重编程因子的水平影响多能性的诱导和维持:以CD1小鼠细胞株为例。
调节多能性网络的蛋白质数量可以决定体细胞重编程为诱导多能干细胞(iPSCs)以及维持多能干细胞(PSCs)。在这里,我们报道了一个基于转座子的重编程系统(PB-Booster),该系统允许高水平表达含有Myc、Klf4、Oct4和Sox2 (MKOS)的多顺反子转基因,并显示在低而非高MKOS表达水平下,新鲜小鼠胚胎成纤维细胞(mef)重编程成iPSCs的效率增加。相比之下,在高MKOS剂量下,2代mef与新鲜mef衍生出相似数量的iPSC菌落,但在低MKOS剂量下,这一数量减少。重编程的时间不受MKOS表达水平的影响,但重要的是,在已建立的PSCs中,外源MKOS表达会导致显著的细胞损失。在高而非低MKOS表达水平下,CD1菌株的mef比iPSCs产生更多的初始细胞簇,尽管其重编程效率与129/Sv菌株的mef相似,但iPSCs在缺乏外源MKOS的情况下无法维持。在CD1-iPSCs中,Oct4、Nanog、Rex1和Esrrb的表达水平与来自129/Sv的PSCs的表达水平相比降低。在含有MEK和GSK3β抑制剂的培养基中培养CD1-iPSCs,使其在缺乏外源MKOS的情况下自我更新,但Oct4、Nanog、Rex1和Esrrb的表达水平仅部分增加。尽管这些多能性因子水平降低,但CD1-iPSC仍保持了对嵌合小鼠胚胎的高贡献能力。因此,调控多能性因子的水平影响体外重编程启动和PSC维持,而不影响其体内分化潜能。
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来源期刊
CiteScore
1.90
自引率
0.00%
发文量
16
审稿时长
2 months
期刊介绍: The International Journal of Developmental Biology (ISSN: 0214- 6282) is an independent, not for profit scholarly journal, published by scientists, for scientists. The journal publishes papers which throw light on our understanding of animal and plant developmental mechanisms in health and disease and, in particular, research which elucidates the developmental principles underlying stem cell properties and cancer. Technical, historical or theoretical approaches also fall within the scope of the journal. Criteria for acceptance include scientific excellence, novelty and quality of presentation of data and illustrations. Advantages of publishing in the journal include: rapid publication; free unlimited color reproduction; no page charges; free publication of online supplementary material; free publication of audio files (MP3 type); one-to-one personalized attention at all stages during the editorial process. An easy online submission facility and an open online access option, by means of which papers can be published without any access restrictions. In keeping with its mission, the journal offers free online subscriptions to academic institutions in developing countries.
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