Univ. of Melbourne, Victoria, Australia.
Am J Physiol Cell Physiol. 2010 May;298(5):C982-92. doi: 10.1152/ajpcell.00498.2009. Epub 2010 Feb 17.
The development of cell therapeutics from embryonic stem (ES) cells will require technologies that direct cell differentiation to specific somatic cell lineages in response to defined factors. The initial step in formation of the somatic lineages from ES cells, differentiation to an intermediate, pluripotent primitive ectoderm-like cell, can be achieved in vitro by formation of early primitive ectoderm-like (EPL) cells in response to a biological activity contained within the conditioned medium MEDII. Fractionation of MEDII has identified two activities required for EPL cell formation, an activity with a molecular mass of <3 kDa and a second, much larger species. Here, we have identified the low-molecular-weight activity as l-proline. An inhibitor of l-proline uptake, glycine, prevented the differentiation of ES cells in response to MEDII. Supplementation of the culture medium of ES cells with >100 M l-proline and some l-proline-containing peptides resulted in changes in colony morphology, cell proliferation, gene expression, and differentiation kinetics consistent with differentiation toward a primitive ectoderm-like cell. This activity appeared to be associated with l-proline since other amino acids and analogs of proline did not exhibit an equivalent activity. Activation of the mammalian target of rapamycin (mTOR) signaling pathway was found to be necessary but not sufficient for l-proline activity; addition of other activators of the mTOR signaling pathway failed to alter the ES cell phenotype. This is the first report describing a role for amino acids in the regulation of pluripotency and cell differentiation and identifies a novel role for the imino acid l-proline.
胚胎干细胞 (ES) 细胞的细胞治疗的发展将需要能够根据定义的因子将细胞分化为特定体细胞谱系的技术。ES 细胞向体细胞谱系分化的初始步骤,即分化为中间多能原始外胚层样细胞,可以通过在含有条件培养基 MEDII 的生物活性的作用下体外形成早期原始外胚层样 (EPL) 细胞来实现。MEDII 的分级分离已经确定了形成 EPL 细胞所必需的两种活性,一种活性的分子量<3 kDa,另一种活性的分子量要大得多。在这里,我们已经将低分子量活性鉴定为 l-脯氨酸。l-脯氨酸摄取的抑制剂甘氨酸可阻止 ES 细胞对 MEDII 的分化。在 ES 细胞的培养基中补充>100 M l-脯氨酸和一些含有 l-脯氨酸的肽,会导致集落形态、细胞增殖、基因表达和分化动力学发生变化,与向原始外胚层样细胞分化一致。这种活性似乎与 l-脯氨酸有关,因为其他氨基酸和脯氨酸类似物没有表现出等效的活性。发现哺乳动物雷帕霉素靶蛋白 (mTOR) 信号通路的激活对于 l-脯氨酸活性是必要的但不是充分的;添加其他 mTOR 信号通路的激活剂未能改变 ES 细胞表型。这是首次报道氨基酸在调节多能性和细胞分化中的作用,并确定了亚氨基酸 l-脯氨酸的新作用。