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Putative “Stemness” Gene Jam-B Is Not Required for Maintenance of Stem Cell State in Embryonic, Neural, or Hematopoietic Stem Cells

机译:维持胚胎,神经或造血干细胞中干细胞状态不需要假定的“ Stemness”基因Jam-B

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摘要

Many genes have been identified that are specifically expressed in multiple types of stem cells in their undifferentiated state. It is generally assumed that at least some of these putative “stemness” genes are involved in maintaining properties that are common to all stem cells. We compared gene expression profiles between undifferentiated and differentiated embryonic stem cells (ESCs) using DNA microarrays. We identified several genes with much greater signal in undifferentiated ESCs than in their differentiated derivatives, among them the putative stemness gene encoding junctional adhesion molecule B (Jam-B gene). However, in spite of the specific expression in undifferentiated ESCs, Jam-B mutant ESCs had normal morphology and pluripotency. Furthermore, Jam-B homozygous mutant mice are fertile and have no overt developmental defects. Moreover, we found that neural and hematopoietic stem cells recovered from Jam-B mutant mice are not impaired in their ability to self-renew and differentiate. These results demonstrate that Jam-B is dispensable for normal mouse development and stem cell identity in embryonic, neural, and hematopoietic stem cells.
机译:已经鉴定出许多基因,它们以未分化状态在多种类型的干细胞中特异性表达。通常假定这些推定的“干性”基因中至少有一些参与维持所有干细胞共有的特性。我们使用DNA微阵列比较了未分化和分化的胚胎干细胞(ESC)之间的基因表达谱。我们确定了几个未分化的ESCs中比其分化的衍生物具有更大信号的基因,其中包括编码结缔黏附分子B(Jam-B基因)的推定干基因。然而,尽管在未分化的ESC中有特定的表达,但Jam-B突变ESC具有正常的形态和多能性。此外,Jam-B纯合突变小鼠是可育的,没有明显的发育缺陷。此外,我们发现从Jam-B突变小鼠中回收的神经干细胞和造血干细胞的自我更新和分化能力并未受到损害。这些结果表明,Jam-B对于正常的小鼠发育和胚胎,神经和造血干细胞中的干细胞特性是必不可少的。

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