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NANOG and CDX2 pattern distinct subtypes of human mesoderm during exit from pluripotency.

机译:在多能性退出过程中,NANOG和CDX2会图案化人类中胚层的不同亚型。

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Mesoderm is induced at the primitive streak (PS) and patterns subsequently into mesodermal subtypes and organ precursors. It is unclear whether mesoderm induction generates a multipotent PS progenitor or several distinct ones with restricted subtype potentials. We induced mesoderm in human pluripotent stem cells with ACTIVIN and BMP or with GSK3-β inhibition. Both approaches induced BRACHYURY(+) mesoderm of distinct PS-like identities, which had differing patterning potential. ACTIVIN and BMP-induced mesoderm patterned into cardiac but not somitic subtypes. Conversely, PS precursors induced by GSK3-β inhibition did not generate lateral?plate and cardiac mesoderm and favored instead somitic differentiation. The mechanism of these?cell fate decisions involved mutual repression of?NANOG and CDX2. Although NANOG was required for cardiac specification but blocked somitic subtypes, CDX2 was required for somitic mesoderm but blocked cardiac differentiation. In sum, rather than forming a common PS progenitor, separate induction mechanisms distinguish human mesoderm subtypes.
机译:中胚层在原始条纹(PS)处被诱导,并随后被分化为中胚层亚型和器官前体。目前尚不清楚中胚层诱导产生多能PS祖细胞还是几个亚型电位受限的不同祖细胞。我们通过ACTIVIN和BMP或GSK3-β抑制作用诱导人多能干细胞的中胚层。两种方法都诱导了具有不同图案潜能的不同PS样身份的BRACHYURY(+)中胚层。 ACTIVIN和BMP诱导的中胚层模式化为心脏亚型,但不是体细胞亚型。相反,由GSK3-β抑制诱导的PS前体未产生侧板和心脏中胚层,而是促进了体细胞分化。这些细胞命运决定的机制涉及NANOG和CDX2的相互抑制。虽然心脏规范需要使用NANOG,但可以阻断体细胞亚型,而中胚层则需要CDX2,但可以阻止心脏分化。总之,不是形成共同的PS祖细胞,而是独立的诱导机制区分了人类中胚层亚型。

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