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首页> 外文期刊>Cell cycle >Expression of the 49 human ATP binding cassette (ABC) genes in pluripotent embryonic stem cells and in early- and late-stage multipotent mesenchymal stem cells: Possible role of ABC plasma membrane transporters in maintaining human stem cell pluripotency
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Expression of the 49 human ATP binding cassette (ABC) genes in pluripotent embryonic stem cells and in early- and late-stage multipotent mesenchymal stem cells: Possible role of ABC plasma membrane transporters in maintaining human stem cell pluripotency

机译:多能胚胎干细胞以及早期和晚期多能间充质干细胞中49种人ATP结合盒(ABC)基因的表达:ABC质膜转运蛋白在维持人干细胞多能性中的可能作用

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摘要

The 49-member human ATP binding cassette (ABC) gene family encodes 44 membrane transporters for lipids, ions, peptides or xenobiotics, four translation factors without transport activity, as they lack transmembrane domains, and one pseudogene. To understand the roles of ABC genes in pluripotency and multipotency, we performed a sensitive qRT-PCR analysis of their expression in embryonic stem cells (hESCs), bone marrow-derived mesenchymal stem cells (hMSCs) and hESC-derived hMSCs (hES-MSCs). We confirm that hES-MSCs represent an intermediate developmental stage between hESCs and hMSCs. We observed that 44 ABCs were significantly expressed in hESCs, 37 in hES-MSCs and 35 in hMSCs. These variations are mainly due to plasma membrane transporters with low but significant gene expression: 18 are expressed in hESCs compared with 16 in hES-MSCs and 8 in hMSCs, suggesting important roles in pluripotency. Several of these ABCs shared similar substrates but differ regarding gene regulation. ABCA13 and ABCB4, similarly to ABCB1, could be new markers to select primitive hMSCs with specific plasma membrane transporter low phenotypes. ABC proteins performing basal intracellular functions, including translation factors and mitochondrial heme transporters, showed the highest constant gene expression among the three populations. Peptide transporters in the endoplasmic reticulum, Golgi and lysosome were well expressed in hESCs and slightly upregulated in hMSCs, which play important roles during the development of stem cell niches in bone marrow or meningeal tissue. These results will be useful to study specific cell cycle regulation of pluripotent stem cells or ABC dysregulation in complex pathologies, such as cancers or neurological disorders.
机译:具有49个成员的人类ATP结合盒(ABC)基因家族编码44种膜转运​​蛋白,用于脂质,离子,肽或异生物素,四种没有转运活性的翻译因子,因为它们缺乏跨膜结构域和一种假基因。为了了解ABC基因在多能性和多能性中的作用,我们对其在胚胎干细胞(hESCs),骨髓间充质干细胞(hMSCs)和hESC衍生hMSCs(hES-MSCs)中的表达进行了敏感的qRT-PCR分析)。我们确认,hES-MSCs代表了hESC和hMSC之间的中间发育阶段。我们观察到,在hESC中明显表达了44种ABC,在hES-MSC中表达了37种,在hMSC中表达了35种。这些差异主要是由于质膜转运蛋白的表达水平较低但很重要:在hESC中表达18种,而在hES-MSC中表达16种,在hMSC中表达8种,表明在多能性中起重要作用。这些ABC中有几个共享相似的底物,但在基因调控方面有所不同。与ABCB1类似,ABCA13和ABCB4可能是选择具有特定质膜转运蛋白低表型的原始hMSC的新标记。执行基础细胞内功能的ABC蛋白,包括翻译因子和线粒体血红素转运蛋白,在三个种群中显示出最高的恒定基因表达。内质网,高尔基体和溶酶体中的肽转运蛋白在hESCs中表达良好,在hMSCs中略有上调,这在骨髓或脑膜组织中干细胞壁ches的发展中起重要作用。这些结果将有助于研究多能干细胞的特定细胞周期调控或复杂病理学(例如癌症或神经系统疾病)中的ABC失调。

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