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首页> 外文期刊>Development >Inhibition of retinoic acid receptor-mediated signalling alters positional identity in the developing hindbrain.
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Inhibition of retinoic acid receptor-mediated signalling alters positional identity in the developing hindbrain.

机译:视黄酸受体介导的信号转导的抑制改变了发育中的后脑中的位置同一性。

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摘要

Retinoids regulate gene expression via nuclear retinoic acid receptors, the RARs and RXRs. To investigate the functions of retinoid receptors during early neural development, we expressed a dominant negative RARbeta in early Xenopus embryos. We obtained evidence that dominant negative RARbeta specifically inhibits RAR/RXR heterodimer-mediated, but not RXR homodimer-mediated, transactivation. Both all-trans- and 9-cis-RA-induced teratogenesis were, however, efficiently opposed by ectopic expression of dominant negative RARbeta, indicating that only RAR/RXR transactivation is required for retinoid teratogenesis by each of these ligands. Experiments with two RXR-selective ligands confirmed that activation of RXR homodimers does not cause retinoid teratogenesis. Dominant negative RARbeta thus specifically interferes with the retinoid signalling pathway that is responsible for retinoid teratogenesis. Dominant negative RARbeta-expressing embryos had a specific developmental phenotype leading to disorganization of the hindbrain. Mauthner cell multiplications in the posterior hindbrain, and (both anteriorly and posteriorly) expanded Krox-20 expression domains indicated (partial) transformation of a large part of the hindbrain into (at least partial) rhombomere 3, 4 and/or 5 identity. In contrast, the fore- and midbrain and spinal cord appeared to be less affected. These data indicate that RARs play a role in patterning the hindbrain.
机译:类维生素A通过核视黄酸受体,RAR和RXR调节基因表达。为了调查早期神经发育过程中类维生素A受体的功能,我们在非洲爪蟾早期胚胎中表达了显性负性RARbeta。我们获得的证据表明,显性负性RARbeta特异性抑制RAR / RXR异二聚体介导的,而不是RXR同二聚体介导的反式激活。然而,全反式和9-顺式-RA诱导的致畸作用均被显性负性RARbeta的异位表达有效地对抗,这表明这些配体中的每一个类视黄醇致畸作用仅需要RAR / RXR反式激活。用两种RXR选择性配体进行的实验证实,RXR同型二聚体的激活不会引起类维生素A致畸。因此,主要的阴性RARbeta特异性干扰负责类维生素A致畸的类维生素A信号通路。显性阴性RARbeta表达胚胎具有导致后脑混乱的特定发育表型。后脑后部(和前后)Mauthner细胞的增殖和扩展的Krox-20表达域表明,大部分后脑(部分)转化为(至少部分)菱形3、4和/或5身份。相反,前脑和中脑以及脊髓似乎受到的影响较小。这些数据表明,RAR在后脑的构图中发挥作用。

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