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Retinoic Acid Regulation of the Mesp-Ripply feedback loop during Vertebrate Segmental Patterning

机译:椎骨节段构图过程中Mesp波纹反馈回路的视黄酸调节

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摘要

The Mesp bHLH genes play a conserved role during segmental patterning of the mesoderm in the vertebrate embryo by specifying segmental boundaries and anteroposterior (A-P) segmental polarity. Here we use a xenotransgenic approach to compare the transcriptional enhancers that drive expression of the Mesp genes within segments of the presomitic mesoderm (PSM) of different vertebrate species. We find that the genomic sequences upstream of the mespb gene in the pufferfish Takifugu rubripes (Tr-mespb) are able to drive segmental expression in transgenic Xenopus embryos while those from the Xenopus laevis mespb (Xl-mespb) gene drive segmental expression in transgenic zebrafish. In both cases, the anterior segmental boundary of transgene expression closely matches the expression of the endogenous Mesp genes, indicating that many inputs into segmental gene expression are highly conserved. By contrast, we find that direct retinoic acid (RA) regulation of endogenous Mesp gene expression is variable amongst vertebrate species. Both Tr-mespb and Xl-mespb are directly upregulated by RA, through a complex, distal element. By contrast, RA represses the zebrafish Mesp genes. We show that this repression is mediated, in part, by RA-mediated activation of the Ripply genes, which together with Mesp genes form an RA-responsive negative feedback loop. These observations suggest that variations in a direct response to RA input may allow for changes in A-P patterning of the segments in different vertebrate species.
机译:通过指定节段边界和前后位(A-P)节段极性,Mesp bHLH基因在脊椎动物胚体中胚层节段模式中起着保守的作用。在这里,我们使用异种转基因的方法来比较转录增强子,该转录增强子驱动Mesp基因在不同脊椎动物物种的早熟中胚层(PSM)片段内的表达。我们发现在河豚鱼(Takifugu rubripes)(Tr-mespb)中mespb基因上游的基因组序列能够驱动转基因非洲爪蟾胚胎中的分段表达,而来自非洲爪蟾laspes mespb(Xl-mespb)基因的基因组驱动转基因斑马鱼中的分段表达。 。在这两种情况下,转基因表达的前节段边界与内源性Mesp基因的表达紧密匹配,表明节段基因表达的许多输入是高度保守的。相比之下,我们发现内源性Mesp基因表达的直接视黄酸(RA)调节在脊椎动物中是可变的。 Tr-mespb和X1-mespb均通过复杂的远端元件被RA直接上调。相反,RA抑制斑马鱼Mesp基因。我们表明,这种镇压部分是由RA介导的Ripply基因的激活介导的,Ripply基因与Mesp基因一起形成了RA反应性负反馈回路。这些观察结果表明,对RA输入的直接响应中的变异可能允许不同脊椎动物物种中各节段的A-P模式改变。

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