Chen Dong, Wang Ping, Lewis Rachel L, Daigh Christine A, Ho Coral, Chen Xin, Thomson James A, Kendziorski Christina
Department of Pathology and Laboratory Medicine, University of Wisconsin, Madison, Wisconsin, USA.
Exp Hematol. 2007 Sep;35(9):1344-57. doi: 10.1016/j.exphem.2007.06.004.
Human embryonic stem (ES) cells provide a unique model for studying the development and function of human tissues and have proven utility in a number of areas. However, results from ES cell-based studies have been limited by the paucity of information available about early human hematopoietic development.
To better understand early development of the hematopoietic lineage, we use microarray analysis to examine the temporal patterns of gene expression in embryoid bodies derived from human ES cells, focusing around the time of the emergence of definitive hematopoiesis. We use an empirical Bayes hierarchical modeling approach, called EBarrays, to classify genes into each of the possible temporal patterns of gene expression for five different time points, and correlate those patterns with the emergence of hematopoiesis.
We find a distinct group of genes previously identified as important in adult hematopoietic self-renewal (such as PIK3R1, ABCB1/MDR-1, RGS18, IRS1, SENP6/SUMO-1, and Wnt5A, etc.) temporally correlates with the emergence of the definitive hematopoiesis. Microarray-based results are further supported via flow cytometry and reverse transcription-polymerase chain reaction studies.
The novel genes demonstrating the same expression pattern as this group could further facilitate the understanding of the molecular mechanisms of embryonic hematopoiesis.
人类胚胎干细胞为研究人体组织的发育和功能提供了独特的模型,并且已在许多领域证明了其效用。然而,基于胚胎干细胞的研究结果受到早期人类造血发育相关信息匮乏的限制。
为了更好地理解造血谱系的早期发育,我们使用微阵列分析来检测源自人类胚胎干细胞的胚状体中基因表达的时间模式,重点关注确定造血出现的时间点。我们使用一种称为EBarrays的经验贝叶斯层次建模方法,将基因分类为五个不同时间点的每种可能的基因表达时间模式,并将这些模式与造血的出现相关联。
我们发现一组先前被确定在成人造血自我更新中起重要作用的基因(如PIK3R1、ABCB1/MDR-1、RGS18、IRS1、SENP6/SUMO-1和Wnt5A等)在时间上与确定造血的出现相关。基于微阵列的结果通过流式细胞术和逆转录-聚合酶链反应研究得到进一步支持。
显示与该组相同表达模式的新基因可能进一步促进对胚胎造血分子机制的理解。