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在血清与无血清BMP4培养条件下,胚胎干细胞向中胚层分化过程中的动态转录程序。

Dynamic transcription programs during ES cell differentiation towards mesoderm in serum versus serum-freeBMP4 culture.

作者信息

Bruce Stephen J, Gardiner Brooke B, Burke Les J, Gongora M Milena, Grimmond Sean M, Perkins Andrew C

机构信息

Institute for Molecular Bioscience, University of Queensland, Brisbane, Queensland, Australia.

出版信息

BMC Genomics. 2007 Oct 10;8:365. doi: 10.1186/1471-2164-8-365.

Abstract

BACKGROUND

Expression profiling of embryonic stem (ES) cell differentiation in the presence of serum has been performed previously. It remains unclear if transcriptional activation is dependent on complex growth factor mixtures in serum or whether this process is intrinsic to ES cells once the stem cell program has been inactivated. The aims of this study were to determine the transcriptional programs associated with the stem cell state and to characterize mesoderm differentiation between serum and serum-free culture.

RESULTS

ES cells were differentiated as embryoid bodies in 10% FBS or serum-free media containing BMP4 (2 ng/ml), and expression profiled using 47 K Illumina(R) Sentrix arrays. Statistical methods were employed to define gene sets characteristic of stem cell, epiblast and primitive streak programs. Although the initial differentiation profile was similar between the two culture conditions, cardiac gene expression was inhibited in serum whereas blood gene expression was enhanced. Also, expression of many members of the Kruppel-like factor (KLF) family of transcription factors changed dramatically during the first few days of differentiation. KLF2 and KLF4 co-localized with OCT4 in a sub-nuclear compartment of ES cells, dynamic changes in KLF-DNA binding activities occurred upon differentiation, and strong bio-informatic evidence for direct regulation of many stem cell genes by KLFs was found.

CONCLUSION

Down regulation of stem cell genes and activation of epiblast/primitive streak genes is similar in serum and defined media, but subsequent mesoderm differentiation is strongly influenced by the composition of the media. In addition, KLF family members are likely to be important regulators of many stem cell genes.

摘要

背景

先前已对存在血清时胚胎干细胞(ES细胞)分化的表达谱进行了研究。目前尚不清楚转录激活是否依赖于血清中复杂的生长因子混合物,或者一旦干细胞程序被灭活,这个过程对于ES细胞来说是否是内在的。本研究的目的是确定与干细胞状态相关的转录程序,并描述血清培养和无血清培养之间的中胚层分化特征。

结果

ES细胞在含有10%胎牛血清(FBS)或含有骨形态发生蛋白4(BMP4,2 ng/ml)的无血清培养基中分化为类胚体,并使用47 K Illumina® Sentrix芯片进行表达谱分析。采用统计方法来定义干细胞、上胚层和原条程序所特有的基因集。尽管两种培养条件下的初始分化谱相似,但血清中心脏基因的表达受到抑制,而血液基因的表达则增强。此外,在分化的最初几天,Kruppel样因子(KLF)转录因子家族的许多成员的表达发生了显著变化。KLF2和KLF4在ES细胞的一个亚核区室中与OCT4共定位,分化时KLF与DNA的结合活性发生动态变化,并且发现了强有力的生物信息学证据表明KLFs直接调控许多干细胞基因。

结论

在血清和特定培养基中,干细胞基因的下调和上胚层/原条基因的激活是相似的,但随后的中胚层分化受到培养基成分的强烈影响。此外,KLF家族成员可能是许多干细胞基因的重要调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e9d/2204012/f0b4b1b4024f/1471-2164-8-365-1.jpg

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