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A C-elegans Myc-like network cooperates with semaphorin and Wnt signaling pathways to control cell migration

机译:C线虫Myc样网络与信号量和Wnt信号通路协同控制细胞迁移

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Myc and Mondo proteins are key regulators of cell growth, proliferation, and energy metabolism, yet often overlooked is their vital role in cell migration. Complex networks of protein-protein and protein-DNA interactions control the transcriptional activity of Myc and MondoA confounding their functional analysis in higher eukaryotes. Here we report the identification of the transcriptional activation arm of a simplified Myc-like network in Caenorhabditis elegans. This network comprises an Mlx ortholog, named MXL-2 for Max-like 2, and a protein that has sequence features of both Mye and Mondo proteins, named MML-1 for Myc and Mondo-like 1. MML-1/MXL-2 complexes have a primary function in regulating migration of the ray I precursor cells in the male tail. MML-1/MXL-2 complexes control expression of ECM components in the non-migratory epidermis, which we propose contributes to the substratum required for migration of the neighboring ray 1 precursor cells. Furthermore, we show that pro-migratory Wnt/beta-catenin and semaphorin signaling pathways interact genetically with MML-1/MXL-2 to determine ray I position. This first functional analysis of the Myc superfamily in C elegans suggests that MondoA and Myc may have more predominant roles in cell migration than previously appreciated, and their cooperation with other pro-migratory pathways provides a more integrated view of their role in cell migration. (C) 2007 Elsevier Inc. All rights reserved.
机译:Myc和Mondo蛋白是细胞生长,增殖和能量代谢的关键调节剂,但经常被忽视的是它们在细胞迁移中的重要作用。蛋白质-蛋白质和蛋白质-DNA相互作用的复杂网络控制Myc和MondoA的转录活性,混淆了它们在高级真核生物中的功能分析。在这里,我们报告的秀丽隐杆线虫的简化的Myc样网络的转录激活臂的鉴定。该网络包含一个Mlx直系同源物,称为Max-like 2的MXL-2,以及具有Mye和Mondo蛋白的序列特征的蛋白质,称为Myc和Mondo-like 1的MML-1。MML-1 / MXL-2配合物在调节雄性尾巴中射线I前体细胞的迁移中具有主要功能。 MML-1 / MXL-2复合物控制非迁移性表皮中ECM成分的表达,我们认为这有助于邻近射线1前体细胞迁移所需的基质。此外,我们表明亲移民Wnt /β-catenin和信号量信号通路与MML-1 / MXL-2遗传相互作用,以确定射线I的位置。秀丽隐杆线虫中Myc超家族的首次功能分析表明,MondoA和Myc在细胞迁移中的作用可能比以前认识的要重要,并且它们与其他促迁移途径的合作为它们在细胞迁移中的作用提供了更为完整的观点。 (C)2007 Elsevier Inc.保留所有权利。

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