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ES-体细胞杂种在体外和体内的功能评估。

Functional evaluation of ES-somatic cell hybrids in vitro and in vivo.

作者信息

Sumer Huseyin, Kim Kitai, Liu Jun, Ng Kitwa, Daley George Q, Verma Paul J

机构信息

1 Monash Institute of Medical Research, Monash University , Clayton VIC, 3168, Australia .

出版信息

Cell Reprogram. 2014 Jun;16(3):167-74. doi: 10.1089/cell.2013.0079. Epub 2014 May 2.

Abstract

Embryonic stem cells (ESCs) have previously been reported to reprogram somatic cells following fusion. The resulting ES-somatic cell hybrids have been shown to adopt the transcriptional profile of ESCs, suggesting that the pluripotent program is dominant. ES-somatic cell hybrids have most characteristics of pluripotent cells in vitro; however, it remains unclear whether the somatic genome is an active partner in the hybrid cells or simply retained predominately as silent cargo. Furthermore, the functional properties of ES-somatic cell hybrids in vivo have been limited to studies on their contribution to teratomas and developing embryos/chimeras. The extent of their pluripotency remains largely unclear. Here we determined that the somatic genome is actively transcribed by generating ES-somatic cell hybrids using Rag2-deficient ESCs fused to autologous wild-type somatic cells. Rag2 expression was detected during in vitro differentiation, suggesting that the somatic genome follows the correct temporal cues during differentiation. Furthermore, ES-somatic cell hybrids maintain their tetraploid state following 4 weeks of differentiation in vivo and are immune tolerated when transferred into matched individuals. The ES-somatic cell hybrids can efficiently differentiate into hematopoietic precursors in both myeloid and lymphoid lineages in vitro, suggesting that the somatic genome is actively transcribed following cell fusion based reprogramming. However, the ES-somatic cell hybrids showed an altered hematopoietic potential following in vitro differentiation and were unable to show hematopoietic engraftment in a mouse model.

摘要

胚胎干细胞(ESCs)之前已有报道称在融合后可重编程体细胞。已证实由此产生的ES - 体细胞杂种呈现出ESCs的转录谱,这表明多能性程序占主导地位。ES - 体细胞杂种在体外具有多能细胞的大多数特征;然而,尚不清楚体细胞基因组在杂种细胞中是一个活跃的参与者,还是仅仅主要作为沉默的载体被保留。此外,ES - 体细胞杂种在体内的功能特性仅限于对其在畸胎瘤以及发育中的胚胎/嵌合体中贡献的研究。它们的多能性程度在很大程度上仍不清楚。在此,我们通过使用与自体野生型体细胞融合的Rag2缺陷型ESCs生成ES - 体细胞杂种,确定体细胞基因组是被积极转录的。在体外分化过程中检测到了Rag2的表达,这表明体细胞基因组在分化过程中遵循正确的时间线索。此外,ES - 体细胞杂种在体内分化4周后维持其四倍体状态,并且当转移到匹配个体中时具有免疫耐受性。ES - 体细胞杂种在体外可有效分化为髓系和淋巴系的造血前体细胞,这表明基于细胞融合的重编程后体细胞基因组被积极转录。然而,ES - 体细胞杂种在体外分化后显示出造血潜能改变,并且在小鼠模型中无法实现造血植入。

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Functional evaluation of ES-somatic cell hybrids in vitro and in vivo.ES-体细胞杂种在体外和体内的功能评估。
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Presumptive germ cells derived from mouse pluripotent somatic cell hybrids.源自小鼠多能体细胞杂种的推定生殖细胞。
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