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Mesendogen a novel inhibitor of TRPM6 promotes mesoderm and definitive endoderm differentiation of human embryonic stem cells through alteration of magnesium homeostasis

机译:Mesendogen是TRPM6的新型​​抑制剂可通过改变镁稳态来促进人胚胎干细胞的中胚层和定形内胚层分化。

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摘要

The homo- and hetero-tetrameric channel complexes formed by transient receptor potential cation channel, subfamily M, member 6 (TRPM6) and 7 (TRPM7) (collectively referred to as TRPM6/TRPM7 channels in this study) are the major regulators of cellular magnesium uptake, yet the exact roles of TRPM6/TRPM7 channels and cellular magnesium homeostasis during development are poorly understood. Here, we report a novel small molecule Mesendogen (MEG) which robustly induces nearly homogeneous (≥85%) mesoderm and definitive endoderm (DE) differentiations of human embryonic stem cells (hESCs) in combination with growth factors. A kinome screen followed by loss-of-function experiments identified TRPM6 as the biological target of MEG. We demonstrated that MEG functions by inhibiting TRPM6/TRPM7 magnesium channel activity, as MEG reduced intracellular magnesium level, while TRPM6/TRPM7 channel modulation and magnesium-withdrawal phenocopied MEG at enhancing mesoderm and DE differentiations. This study discovers a robust chemical enhancer of hESC directed differentiation, and uncovers a novel regulatory role of cellular magnesium homeostasis during early embryonic cell fate specification.
机译:由瞬时受体电位阳离子通道,亚家族M,成员6(TRPM6)和7(TRPM7)(在本研究中统称为TRPM6 / TRPM7通道)形成的同型和异型四聚体通道复合物是细胞镁的主要调节剂。摄取,但对TRPM6 / TRPM7通道和发育过程中细胞镁稳态的确切作用了解甚少。在这里,我们报道了一种新颖的小分子内生素(MEG),可与人的胚胎干细胞(hESCs)结合生长因子强烈诱导近乎均匀(≥85%)的中胚层和定形内胚层(DE)分化。进行动力学组筛选,然后进行功能丧失实验,确定TRPM6为MEG的生物学靶标。我们证明,MEG通过抑制TRPM6 / TRPM7镁通道活性而起作用,因为MEG降低了细胞内镁水平,而TRPM6 / TRPM7通道调节和镁提取表型复制了MEG在增强中胚层和DE分化方面。这项研究发现了hESC定向分化的强大化学增强剂,并揭示了早期胚胎细胞命运规范过程中细胞镁稳态的新型调节作用。

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