Institute of Stem Cell Research, Helmholtz Zentrum München, D-85764 Neuherberg, Germany.
Development. 2014 Feb;141(3):514-25. doi: 10.1242/dev.104232.
Transcription factors (TFs) pattern developing tissues and determine cell fates; however, how spatio-temporal TF gradients are generated is ill defined. Here we show that miR-335 fine-tunes TF gradients in the endoderm and promotes mesendodermal lineage segregation. Initially, we identified miR-335 as a regulated intronic miRNA in differentiating embryonic stem cells (ESCs). miR-335 is encoded in the mesoderm-specific transcript (Mest) and targets the 3'-UTRs of the endoderm-determining TFs Foxa2 and Sox17. Mest and miR-335 are co-expressed and highly accumulate in the mesoderm, but are transiently expressed in endoderm progenitors. Overexpression of miR-335 does not affect initial mesendoderm induction, but blocks Foxa2- and Sox17-mediated endoderm differentiation in ESCs and ESC-derived embryos. Conversely, inhibition of miR-335 activity leads to increased Foxa2 and Sox17 protein accumulation and endoderm formation. Mathematical modeling predicts that transient miR-335 expression in endoderm progenitors shapes a TF gradient in the endoderm, which we confirm by functional studies in vivo. Taken together, our results suggest that miR-335 targets endoderm TFs for spatio-temporal gradient formation in the endoderm and to stabilize lineage decisions during mesendoderm formation.
转录因子 (TFs) 决定着组织的发育和细胞的命运;然而,时空 TF 梯度是如何产生的还不清楚。在这里,我们发现 miR-335 可以精细调控内胚层中的 TF 梯度,并促进中胚层和内胚层谱系的分离。最初,我们发现 miR-335 是分化中的胚胎干细胞 (ESCs) 中受调控的内含子 miRNA。miR-335 编码在中胚层特异性转录物 (Mest) 中,并靶向内胚层决定 TF Foxa2 和 Sox17 的 3'-UTR。Mest 和 miR-335 共同表达,并在内胚层中高度积累,但在中胚层祖细胞中短暂表达。miR-335 的过表达不会影响初始中胚层诱导,但会阻断 ESC 和 ESC 衍生胚胎中 Foxa2 和 Sox17 介导的内胚层分化。相反,抑制 miR-335 的活性会导致 Foxa2 和 Sox17 蛋白积累增加和内胚层形成。数学模型预测,内胚层祖细胞中短暂的 miR-335 表达可以在内胚层中形成 TF 梯度,我们通过体内功能研究证实了这一点。综上所述,我们的研究结果表明,miR-335 靶向内胚层 TF,用于在内胚层中形成时空梯度,并在中胚层和内胚层形成过程中稳定谱系决定。