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白血病抑制因子和成纤维细胞生长因子来源的猪诱导多能干细胞的系统体外和体内特性研究

Systematic in vitro and in vivo characterization of Leukemia-inhibiting factor- and Fibroblast growth factor-derived porcine induced pluripotent stem cells.

作者信息

Secher Jan O, Ceylan Ahmet, Mazzoni Gianluca, Mashayekhi Kaveh, Li Tong, Muenthaisong Suchitra, Nielsen Troels T, Li Dong, Li Shengting, Petkov Stoyan, Cirera Susanna, Luo Yonglun, Thombs Lori, Kadarmideen Haja N, Dinnyes Andras, Bolund Lars, Roelen Bernard A J, Schmidt Mette, Callesen Henrik, Hyttel Poul, Freude Kristine K

机构信息

Veterinary Reproduction and Obstetrics, Faculty of Health and Medical Sciences, Department of Large Animal Sciences, University of Copenhagen, Frederiksberg C, Denmark.

Faculty of Veterinary Medicine Ankara University, Department of Histology and Embryology, Diskapi, Ankara, Turkey.

出版信息

Mol Reprod Dev. 2017 Mar;84(3):229-245. doi: 10.1002/mrd.22771.

Abstract

Derivation and stable maintenance of porcine induced pluripotent stem cells (piPSCs) is challenging. We herein systematically analyzed two piPSC lines, derived by lentiviral transduction and cultured under either leukemia inhibitory factor (LIF) or fibroblast growth factor (FGF) conditions, to shed more light on the underlying biological mechanisms of porcine pluripotency. LIF-derived piPSCs were more successful than their FGF-derived counterparts in the generation of in vitro chimeras and in teratoma formation. When LIF piPSCs chimeras were transferred into surrogate sows and allowed to develop, only their prescence within the embryonic membranes could be detected. Whole-transcriptome analysis of the piPSCs and porcine neonatal fibroblasts showed that they clustered together, but apart from the two pluripotent cell populations of early porcine embryos, indicating incomplete reprogramming. Indeed, bioinformatic analysis of the pluripotency-related gene network of the LIF- versus FGF-derived piPSCs revealed that ZFP42 (REX1) expression was absent in both piPSC-like cells, whereas it was expressed in the porcine inner cell mass at Day 7/8. A second striking difference was the expression of ATOH1 in piPSC-like cells, which was absent in the inner cell mass. Moreover, our gene expression analyses plus correlation analyses of known pluripotency genes identified unique relationships between pluripotency genes in the inner cell mass, which are to some extent, in the piPSC-like cells. This deficiency in downstream gene activation and divergent gene expression may be underlie the inability to derive germ line-transmitting piPSCs, and provides unique insight into which genes are necessary to achieve fully reprogrammed piPSCs. 84: 229-245, 2017. © 2016 Wiley Periodicals, Inc.

摘要

猪诱导多能干细胞(piPSC)的诱导和稳定维持具有挑战性。我们在此系统分析了两条通过慢病毒转导获得并分别在白血病抑制因子(LIF)或成纤维细胞生长因子(FGF)条件下培养的piPSC系,以更深入了解猪多能性的潜在生物学机制。在体外嵌合体生成和畸胎瘤形成方面,LIF诱导的piPSC比FGF诱导的piPSC更成功。当将LIF piPSC嵌合体转移到代孕母猪体内并使其发育时,仅能在胎膜内检测到它们的存在。对piPSC和猪新生成纤维细胞进行的全转录组分析表明,它们聚集在一起,但与早期猪胚胎的两个多能细胞群体不同,这表明重编程不完全。实际上,对LIF诱导与FGF诱导的piPSC的多能性相关基因网络进行的生物信息学分析显示,两种类似piPSC的细胞中均不存在ZFP42(REX1)表达,而在第7/8天的猪内细胞团中表达。另一个显著差异是类似piPSC的细胞中ATOH1的表达,而内细胞团中不存在该表达。此外,我们的基因表达分析以及已知多能性基因的相关性分析确定了内细胞团中多能性基因之间独特的关系,在一定程度上,类似piPSC的细胞中也存在这种关系。下游基因激活的这种缺陷和不同的基因表达可能是无法获得能产生种系传递的piPSC的原因,并为实现完全重编程的piPSC所需的基因提供了独特的见解。84: 229 - 245, 2017。© 2016威利期刊公司。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0885/6221014/2aef3ca423da/MRD-84-229-g001.jpg

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