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The ancestral retinoic acid receptor was a low-affinity sensor triggering neuronal differentiation

机译:祖先维甲酸受体是一种低亲和力传感器,可触发神经元分化

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Retinoic acid (RA) is an important intercellular signaling molecule in vertebrate development, with a well-established role in the regulation of hox genes during hindbrain patterning and in neurogenesis. However, the evolutionary origin of the RA signaling pathway remains elusive. To elucidate the evolution of the RA signaling system, we characterized RA metabolism and signaling in the marine annelid Platynereis dumerilii , a powerful model for evolution, development, and neurobiology. Binding assays and crystal structure analyses show that the annelid retinoic acid receptor (RAR) binds RA and activates transcription just as vertebrate RARs, yet with a different ligand-binding pocket and lower binding affinity, suggesting a permissive rather than instructive role of RA signaling. RAR knockdown and RA treatment of swimming annelid larvae further reveal that the RA signal is locally received in the medial neuroectoderm, where it controls neurogenesis and axon outgrowth, whereas the spatial colinear hox gene expression in the neuroectoderm remains unaffected. These findings suggest that one early role of the new RAR in bilaterian evolution was to control the spatially restricted onset of motor and interneuron differentiation in the developing ventral nerve cord and to indicate that the regulation of hox -controlled anterior-posterior patterning arose only at the base of the chordates, concomitant with a high-affinity RAR needed for the interpretation of a complex RA gradient.
机译:维甲酸(RA)是脊椎动物发育中的重要细胞间信号分子,在后脑模式形成和神经发生过程中对hox基因的调控中具有公认的作用。但是,RA信号通路的进化起源仍然难以捉摸。为了阐明RA信号系统的进化,我们在海洋无脊椎动物Platynereis dumerilii(一种进化,发育和神经生物学的强大模型)中表征了RA代谢和信号。结合测定和晶体结构分析表明,像脊椎动物RAR一样,环烷视黄酸受体(RAR)结合RA并激活转录,但具有不同的配体结合口袋和较低的结合亲和力,表明RA信号具有许可作用而非指导作用。 RAR基因敲除和游泳幼体幼虫的RA治疗进一步揭示,RA信号在内侧神经外胚层中局部接收,在那里它控制神经发生和轴突生长,而在神经外胚层中的空间共线hox基因表达仍然不受影响。这些发现表明,新的RAR在双侧进化中的早期作用是控制发育中的腹神经索中空间受限的运动和中神经元分化的发作,并表明对hox控制的前后模式的调节仅在弦的基部,以及解释复杂RA梯度所需的高亲和力RAR。

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