Department of Internal Medicine I, Ulm University, 89081 Ulm, Germany ; International Graduate School in Molecular Medicine, Ulm University, 89081 Ulm, Germany.
Stem Cell Reports. 2013 Aug 29;1(3):248-65. doi: 10.1016/j.stemcr.2013.08.002. eCollection 2013.
Cell-fate decisions and pluripotency are dependent on networks of key transcriptional regulators. Recent reports demonstrated additional functions of pluripotency-associated factors during early lineage commitment. The T-box transcription factor TBX3 has been implicated in regulating embryonic stem cell self-renewal and cardiogenesis. Here, we show that TBX3 is dynamically expressed during specification of the mesendoderm lineages in differentiating embryonic stem cells (ESCs) in vitro and in developing mouse and Xenopus embryos in vivo. Forced TBX3 expression in ESCs promotes mesendoderm specification by directly activating key lineage specification factors and indirectly by enhancing paracrine Nodal/Smad2 signaling. TBX3 loss-of-function analyses in the Xenopus underline its requirement for mesendoderm lineage commitment. Moreover, we uncovered a functional redundancy between TBX3 and Tbx2 during Xenopus gastrulation. Taken together, we define further facets of TBX3 actions and map TBX3 as an upstream regulator of the mesendoderm transcriptional program during gastrulation.
细胞命运决定和多能性依赖于关键转录调控因子的网络。最近的报告表明,多能相关因子在早期谱系分化过程中具有额外的功能。T 盒转录因子 TBX3 被认为在调节胚胎干细胞自我更新和心脏发生中起作用。在这里,我们表明 TBX3 在体外分化胚胎干细胞(ESCs)中中胚层谱系特化过程中和体内发育的小鼠和爪蟾胚胎中动态表达。在 ESCs 中强制表达 TBX3 通过直接激活关键谱系特化因子和间接增强旁分泌 Nodal/Smad2 信号来促进中胚层特化。在爪蟾中的 TBX3 功能丧失分析强调了其对中胚层谱系决定的要求。此外,我们在爪蟾原肠胚形成过程中发现 TBX3 和 Tbx2 之间存在功能冗余。总之,我们进一步定义了 TBX3 的作用,并将其映射为原肠胚形成过程中中胚层转录程序的上游调节剂。