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在非洲爪蟾发育过程中,一条新的 Fgf/Erk 通路下游基因表达的调控。

Regulation of gene expression downstream of a novel Fgf/Erk pathway during Xenopus development.

机构信息

Department of Biology, University of York, Heslington, York, United Kingdom.

出版信息

PLoS One. 2023 Oct 19;18(10):e0286040. doi: 10.1371/journal.pone.0286040. eCollection 2023.

Abstract

Activation of Map kinase/Erk signalling downstream of fibroblast growth factor (Fgf) tyrosine kinase receptors regulates gene expression required for mesoderm induction and patterning of the anteroposterior axis during Xenopus development. We have proposed that a subset of Fgf target genes are activated in the embyo in response to inhibition of a transcriptional repressor. Here we investigate the hypothesis that Cic (Capicua), which was originally identified as a transcriptional repressor negatively regulated by receptor tyrosine kinase/Erk signalling in Drosophila, is involved in regulating Fgf target gene expression in Xenopus. We characterise Xenopus Cic and show that it is widely expressed in the embryo. Fgf overexpression or ectodermal wounding, both of which potently activate Erk, reduce Cic protein levels in embryonic cells. In keeping with our hypothesis, we show that Cic knockdown and Fgf overexpression have overlapping effects on embryo development and gene expression. Transcriptomic analysis identifies a cohort of genes that are up-regulated by Fgf overexpression and Cic knockdown. We investigate two of these genes as putative targets of the proposed Fgf/Erk/Cic axis: fos and rasl11b, which encode a leucine zipper transcription factor and a ras family GTPase, respectively. We identify Cic consensus binding sites in a highly conserved region of intron 1 in the fos gene and Cic sites in the upstream regions of several other Fgf/Cic co-regulated genes, including rasl11b. We show that expression of fos and rasl11b is blocked in the early mesoderm when Fgf and Erk signalling is inhibited. In addition, we show that fos and rasl11b expression is associated with the Fgf independent activation of Erk at the site of ectodermal wounding. Our data support a role for a Fgf/Erk/Cic axis in regulating a subset of Fgf target genes during gastrulation and is suggestive that Erk signalling is involved in regulating Cic target genes at the site of ectodermal wounding.

摘要

成纤维细胞生长因子 (Fgf) 酪氨酸激酶受体下游的 Map 激酶/Erk 信号转导的激活调节中胚层诱导和前后轴模式形成所需的基因表达,这是非洲爪蟾发育过程中的。我们提出,一组 Fgf 靶基因在胚胎中被激活,以响应转录抑制因子的抑制。在这里,我们研究了一个假设,即 Cic(Capicua)最初被鉴定为受果蝇受体酪氨酸激酶/Erk 信号负调控的转录抑制因子,它参与调节非洲爪蟾中 Fgf 靶基因的表达。我们对 Xenopus Cic 进行了特征描述,并表明它在胚胎中广泛表达。Fgf 过表达或外胚层损伤,这两种都能强烈激活 Erk,降低胚胎细胞中的 Cic 蛋白水平。与我们的假设一致,我们表明 Cic 敲低和 Fgf 过表达对胚胎发育和基因表达有重叠的影响。转录组分析确定了一组受 Fgf 过表达和 Cic 敲低上调的基因。我们研究了这两个基因作为提议的 Fgf/Erk/Cic 轴的潜在靶标:fos 和 rasl11b,它们分别编码一个亮氨酸拉链转录因子和一个 ras 家族 GTPase。我们在 fos 基因内含子 1 的高度保守区域中鉴定出 Cic 共识结合位点,并且在其他几个 Fgf/Cic 共同调节的基因的上游区域中鉴定出 Cic 位点,包括 rasl11b。我们表明,当 Fgf 和 Erk 信号被抑制时,fos 和 rasl11b 的表达被阻断在早期中胚层。此外,我们表明,fos 和 rasl11b 的表达与外胚层损伤部位 Fgf 独立激活的 Erk 相关。我们的数据支持 Fgf/Erk/Cic 轴在原肠胚形成过程中调节一组 Fgf 靶基因的作用,并表明 Erk 信号参与调节外胚层损伤部位的 Cic 靶基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b84/10586617/54bb87707b79/pone.0286040.g001.jpg

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