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果蝇 FUS 同源物 cabeza 通过 Xrp1 依赖性调节 FGF 信号促进成年创始肌母细胞的选择。

The Drosophila FUS ortholog cabeza promotes adult founder myoblast selection by Xrp1-dependent regulation of FGF signaling.

机构信息

Department of Molecular Neurobiology, Donders Institute for Brain, Cognition and Behaviour and Faculty of Science, Radboud University, Nijmegen, Netherlands.

Molecular Neurogenetics Laboratory, Max Planck Institute for Molecular Biomedicine, Muenster, Germany.

出版信息

PLoS Genet. 2020 Apr 17;16(4):e1008731. doi: 10.1371/journal.pgen.1008731. eCollection 2020 Apr.

Abstract

The number of adult myofibers in Drosophila is determined by the number of founder myoblasts selected from a myoblast pool, a process governed by fibroblast growth factor (FGF) signaling. Here, we show that loss of cabeza (caz) function results in a reduced number of adult founder myoblasts, leading to a reduced number and misorientation of adult dorsal abdominal muscles. Genetic experiments revealed that loss of caz function in both adult myoblasts and neurons contributes to caz mutant muscle phenotypes. Selective overexpression of the FGF receptor Htl or the FGF receptor-specific signaling molecule Stumps in adult myoblasts partially rescued caz mutant muscle phenotypes, and Stumps levels were reduced in caz mutant founder myoblasts, indicating FGF pathway deregulation. In both adult myoblasts and neurons, caz mutant muscle phenotypes were mediated by increased expression levels of Xrp1, a DNA-binding protein involved in gene expression regulation. Xrp1-induced phenotypes were dependent on the DNA-binding capacity of its AT-hook motif, and increased Xrp1 levels in founder myoblasts reduced Stumps expression. Thus, control of Xrp1 expression by Caz is required for regulation of Stumps expression in founder myoblasts, resulting in correct founder myoblast selection.

摘要

果蝇成体肌纤维的数量取决于从肌母细胞池中选择的成体创始肌母细胞的数量,这一过程受成纤维细胞生长因子 (FGF) 信号的调控。在这里,我们发现 cabea (caz) 功能的丧失导致成体创始肌母细胞数量减少,从而导致成体背腹肌数量减少和方向错误。遗传实验表明,成体肌母细胞和神经元中 caz 功能的丧失都导致了 caz 突变体肌肉表型。在成体肌母细胞中选择性过表达 FGF 受体 Htl 或 FGF 受体特异性信号分子 Stumps 部分挽救了 caz 突变体肌肉表型,并且 caz 突变体创始肌母细胞中的 Stumps 水平降低,表明 FGF 途径失调。在成体肌母细胞和神经元中,caz 突变体肌肉表型都是由参与基因表达调控的 DNA 结合蛋白 Xrp1 的表达水平升高介导的。Xrp1 诱导的表型依赖于其 AT 钩结构域的 DNA 结合能力,并且创始肌母细胞中 Xrp1 水平的增加降低了 Stumps 的表达。因此,Caz 对 Xrp1 表达的控制对于创始肌母细胞中 Stumps 表达的调节是必需的,从而导致正确的创始肌母细胞选择。

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