Development, Aging, and Regeneration Program, Sanford-Burnham Medical Research Institute, La Jolla, CA 92037, USA.
Development, Aging, and Regeneration Program, Sanford-Burnham Medical Research Institute, La Jolla, CA 92037, USA
Development. 2014 Aug;141(15):2972-7. doi: 10.1242/dev.112367.
Retinoic acid (RA) generated in the mesoderm of vertebrate embryos controls body axis extension by downregulating Fgf8 expression in cells exiting the caudal progenitor zone. RA activates transcription by binding to nuclear RA receptors (RARs) at RA response elements (RAREs), but it is unknown whether RA can directly repress transcription. Here, we analyzed a conserved RARE upstream of Fgf8 that binds RAR isoforms in mouse embryos. Transgenic embryos carrying Fgf8 fused to lacZ exhibited expression similar to caudal Fgf8, but deletion of the RARE resulted in ectopic trunk expression extending into somites and neuroectoderm. Epigenetic analysis using chromatin immunoprecipitation of trunk tissues from E8.25 wild-type and Raldh2(-/-) embryos lacking RA synthesis revealed RA-dependent recruitment of the repressive histone marker H3K27me3 and polycomb repressive complex 2 (PRC2) near the Fgf8 RARE. The co-regulator RERE, the loss of which results in ectopic Fgf8 expression and somite defects, was recruited near the RARb RARE by RA, but was released from the Fgf8 RARE by RA. Our findings demonstrate that RA directly represses Fgf8 through a RARE-mediated mechanism that promotes repressive chromatin, thus providing valuable insight into the mechanism of RA-FGF antagonism during progenitor cell differentiation.
视黄酸(RA)在脊椎动物胚胎的中胚层中产生,通过下调离开尾部祖细胞区的细胞中的 Fgf8 表达来控制体轴延伸。RA 通过与核 RA 受体(RAR)结合在 RA 反应元件(RARE)上激活转录,但尚不清楚 RA 是否可以直接抑制转录。在这里,我们分析了 Fgf8 上游的一个保守的 RARE,该 RARE 在小鼠胚胎中结合 RAR 同工型。携带 Fgf8 融合到 lacZ 的转基因胚胎表现出与尾部 Fgf8 相似的表达,但 RARE 的缺失导致异位躯干表达延伸到体节和神经外胚层。使用 E8.25 期野生型和缺乏 RA 合成的 Raldh2(-/-) 胚胎的尾部组织进行染色质免疫沉淀的表观遗传分析表明,RA 依赖性招募抑制性组蛋白标记 H3K27me3 和多梳抑制复合物 2(PRC2)靠近 Fgf8 RARE。共同调节剂 RERE 的缺失会导致异位 Fgf8 表达和体节缺陷,它被 RA 募集到 RARb RARE 附近,但被 RA 从 Fgf8 RARE 释放。我们的发现表明,RA 通过一种 RARE 介导的机制直接抑制 Fgf8,该机制促进抑制性染色质,从而为 RA-FGF 拮抗作用在祖细胞分化过程中的机制提供了有价值的见解。