Induction of stem cell gene expression in adult human fibroblasts without transgenes.

Raymond L Page, Sakthikumar Ambady, William F Holmes, Lucy Vilner, Denis Kole, Olga Kashpur, Victoria Huntress, Ina Vojtic, Holly Whitton, Tanja Dominko
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引用次数: 99

Abstract

Reprogramming of differentiated somatic cells into induced pluripotent stem (iPS) cells has potential for derivation of patient-specific cells for therapy as well as for development of models with which to study disease progression. Derivation of iPS cells from human somatic cells has been achieved by viral transduction of human fibroblasts with early developmental genes. Because forced expression of these genes by viral transduction results in transgene integration with unknown and unpredictable potential mutagenic effects, identification of cell culture conditions that can induce endogenous expression of these genes is desirable. Here we show that primary adult human fibroblasts have basal expression of mRNA for OCT4, SOX2, and NANOG. However, translation of these messages into detectable proteins and their subcellular localization depends on cell culture conditions. Manipulation of oxygen concentration and FGF2 supplementation can modulate expression of some pluripotency related genes at the transcriptional, translational, and cellular localization level. Changing cell culture condition parameters led to expression of REX1, potentiation of expression of LIN28, translation of OCT4, SOX2, and NANOG, and translocation of these transcription factors to the cell nucleus. We also show that culture conditions affect the in vitro lifespan of dermal fibroblasts, nearly doubling the number of population doublings before the cells reach replicative senescence. Our results suggest that it is possible to induce and manipulate endogenous expression of stem cell genes in somatic cells without genetic manipulation, but this short-term induction may not be sufficient for acquisition of true pluripotency. Further investigation of the factors involved in inducing this response could lead to discovery of defined culture conditions capable of altering cell fate in vitro. This would alleviate the need for forced expression by transgenesis, thus eliminating the risk of mutagenic effects due to genetic manipulation.

非转基因成人成纤维细胞干细胞基因表达的诱导。
将分化的体细胞重编程为诱导多能干细胞(iPS)有可能衍生出用于治疗的患者特异性细胞,也有可能开发用于研究疾病进展的模型。通过病毒转导具有早期发育基因的人成纤维细胞,从人体细胞中衍生出iPS细胞。由于通过病毒转导强制表达这些基因会导致转基因整合,具有未知和不可预测的潜在诱变效应,因此需要确定能够诱导这些基因内源性表达的细胞培养条件。本研究表明,成人原代成纤维细胞具有OCT4、SOX2和NANOG mRNA的基础表达。然而,将这些信息翻译成可检测的蛋白质及其亚细胞定位取决于细胞培养条件。操纵氧浓度和补充FGF2可以在转录、翻译和细胞定位水平上调节一些多能性相关基因的表达。改变细胞培养条件参数导致REX1的表达,LIN28的表达增强,OCT4、SOX2和NANOG的翻译,以及这些转录因子易位到细胞核。我们还发现,培养条件影响真皮成纤维细胞的体外寿命,在细胞达到复制性衰老之前,几乎翻了一番。我们的研究结果表明,在没有基因操作的情况下,可以在体细胞中诱导和操纵干细胞基因的内源性表达,但这种短期诱导可能不足以获得真正的多能性。对诱导这种反应的因素的进一步研究可能会导致发现能够在体外改变细胞命运的特定培养条件。这将减轻转基因强制表达的需要,从而消除由于基因操作造成的诱变效应的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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