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Tbx16/spadetail 通过调控 Wnt 和视黄酸信号在斑马鱼中胚层分化过程中的时空表达。

Spatio-temporal regulation of Wnt and retinoic acid signaling by tbx16/spadetail during zebrafish mesoderm differentiation.

机构信息

Department of Organismal Biology and Anatomy, The University of Chicago, Chicago, IL 60637, USA.

出版信息

BMC Genomics. 2010 Sep 9;11:492. doi: 10.1186/1471-2164-11-492.

Abstract

BACKGROUND

A complex network of signaling pathways and transcription factors regulates vertebrate mesoderm development. Zebrafish mutants provide a powerful tool for examining the roles of individual genes in such a network. spadetail (spt) is a mutant with a lesion in tbx16, a T-box transcription factor involved in mesoderm development; the mutant phenotype includes disrupted primitive red blood cell formation as well as disrupted somitogenesis. Despite much recent progress, the downstream targets of tbx16 remain incompletely understood. The current study was carried out to test whether any of the five major signaling pathways are regulated by tbx16 during two specific stages of mesoderm development: primitive red blood cell formation in the intermediate mesoderm and somite formation in the tail paraxial mesoderm. This test was performed using Gene Set Enrichment Analysis, which identifies coordinated changes in expression among a priori sets of genes associated with biological features or processes.

RESULTS

Our Gene Set Enrichment Analysis results identify Wnt and retinoic acid signaling as likely downstream targets of tbx16 in the developing zebrafish intermediate mesoderm, the site of primitive red blood cell formation. In addition, such results identify retinoic acid signaling as a downstream target of tbx16 in the developing zebrafish posterior somites. Finally, using candidate gene identification and in situ hybridization, we provide expression domain information for 25 additional genes downstream of tbx16 that are outside of both pathways; 23 were previously unknown downstream targets of tbx16, and seven had previously uncharacterized expression in zebrafish.

CONCLUSIONS

Our results suggest that (1) tbx16 regulates Wnt signaling in the developing zebrafish intermediate mesoderm, the site of primitive red blood cell formation, and (2) tbx16 regulates retinoic acid signaling at two distinct embryonic locations and developmental stages, which may imply ongoing spatio-temporal regulation throughout mesoderm development.

摘要

背景

信号通路和转录因子的复杂网络调节脊椎动物中胚层的发育。斑马鱼突变体为研究单个基因在这种网络中的作用提供了有力的工具。spadetail(spt)是一种 tbx16 基因缺失的突变体,tbx16 是一种参与中胚层发育的 T 盒转录因子;突变体表型包括原始红细胞形成受损以及体节形成受损。尽管最近取得了很大进展,但 tbx16 的下游靶标仍不完全清楚。本研究旨在检验在中胚层发育的两个特定阶段,即中胚层原始红细胞形成和尾部轴旁中胚层体节形成过程中,tbx16 是否调节五个主要信号通路中的任何一个。该测试是通过基因集富集分析(Gene Set Enrichment Analysis)进行的,该分析识别与生物学特征或过程相关的先验基因集合中表达的协调变化。

结果

我们的基因集富集分析结果表明,Wnt 和视黄酸信号通路可能是 tbx16 在斑马鱼中胚层原始红细胞形成部位的下游靶点。此外,这些结果表明,视黄酸信号通路是 tbx16 在斑马鱼后体节发育中的下游靶点。最后,通过候选基因鉴定和原位杂交,我们提供了 tbx16 下游 25 个额外基因的表达域信息,这些基因不在这两个通路之外;其中 23 个是 tbx16 的先前未知下游靶点,7 个在斑马鱼中有以前未描述的表达。

结论

我们的结果表明,(1)tbx16 调节斑马鱼中胚层原始红细胞形成部位的 Wnt 信号通路,(2)tbx16 在两个不同的胚胎位置和发育阶段调节视黄酸信号通路,这可能意味着在整个中胚层发育过程中存在时空调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf9b/2996988/03e8b555219c/1471-2164-11-492-1.jpg

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