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Small molecule-mediated TGF-β type II receptor degradation promotes cardiomyogenesis in embryonic stem cells

机译:小分子介导的TGF-βII型受体降解促进胚胎干细胞的心肌发生

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The cellular signals controlling the formation of cardiomyocytes, vascular smooth muscle, and endothelial cells from stem cell-derived mesoderm are poorly understood. To identify these signals, a mouse embryonic stem cell (ESC)-based differentiation assay was screened against a small molecule library resulting in a 1,4-dihydropyridine inducer of type II TGF-β receptor (TGFBR2) degradation-1 (ITD-1). ITD analogs enhanced proteasomal degradation of TGFBR2, effectively clearing the receptor from the cell surface and selectively inhibiting intracellular signaling (IC 50 ~0.4-0.8 μM). ITD-1 was used to evaluate TGF-β involvement in mesoderm formation and cardiopoietic differentiation, which occur sequentially during early development, revealing an essential role in both processes in ESC cultures. ITD-1 selectively enhanced the differentiation of uncommitted mesoderm to cardiomyocytes, but not to vascular smooth muscle and endothelial cells. ITD-1 is a highly selective TGF-β inhibitor and reveals an unexpected role for TGF-β signaling in controlling cardiomyocyte differentiation from multipotent cardiovascular precursors.
机译:从干细胞衍生的中胚层控制心肌细胞,血管平滑肌和内皮细胞形成的细胞信号知之甚少。为了识别这些信号,针对小分子文库筛选了基于小鼠胚胎干细胞(ESC)的分化测定法,导致II型TGF-β受体(TGFBR2)降解-1(ITD-1)的1,4-二氢吡啶诱导剂)。 ITD类似物增强了TGFBR2的蛋白酶体降解,有效清除了细胞表面的受体并选择性抑制了细胞内信号传导(IC 50〜0.4-0.8μM)。 ITD-1用于评估TGF-β参与中胚层形成和心脏分化的过程,这些过程在早期发育过程中相继发生,从而揭示了ESC培养中这两个过程的重要作用。 ITD-1有选择地增强了未分化的中胚层向心肌细胞的分化,而不是血管平滑肌和内皮细胞的分化。 ITD-1是一种高度选择性的TGF-β抑制剂,它揭示了TGF-β信号传导在控制心肌从多能心血管前体细胞分化中的意外作用。

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