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E3 ubiquitin ligases promote progression of differentiation during C. elegans embryogenesis

机译:E3泛素连接酶促进秀丽隐杆线虫胚胎发生过程中的分化进程

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Regulated choice between cell fate maintenance and differentiation provides decision points in development to progress toward more restricted cell fates or to maintain the current one. Caenorhabditis elegans embryogenesis follows an invariant cell lineage where cell fate is generally more restricted upon each cell division. EMS is a progenitor cell in the four-cell embryo that gives rise to the endomesoderm. We recently found that when ubiquitin-mediated protein degradation is compromised, the anterior daughter of EMS, namely MS, reiterates the EMS fate. This observation demonstrates an essential function of ubiquitin-mediated protein degradation in driving the progression of EMS-to-MS differentiation. Here we report a genome-wide screen of the ubiquitin pathway and extensive lineage analyses. The results suggest a broad role of E3 ligases in driving differentiation progression. First, we identified three substrate-binding proteins for two Cullin RING ubiquitin ligase (CRL) E3 complexes that promote the progression from the EMS fate to MS, namely LIN-23/beta-TrCP and FBXB-3 for the CRL1/SCF complex and ZYG-11/ZYG-11B for the CRL2 complex. Genetic analyses suggest these E3 ligases function through a multifunctional protein OMA-1 and the endomesoderm lineage specifier SKN-1 to drive differentiation. Second, we found that depletion of components of the CRL1/SCF complex induces fate reiteration in all major founder cell lineages. These data suggest that regulated choice between self-renewal and differentiation is widespread during C. elegans embryogenesis as in organisms with regulative development, and ubiquitin-mediated protein degradation drives the choice towards differentiation. Finally, bioinformatic analysis of time series gene expression data showed that expression of E3 genes is transiently enriched during time windows of developmental stage transitions. Transcription factors show similar enrichment, but not other classes of regulatory genes. Based on these findings we propose that ubiquitin-mediated protein degradation, like many transcription factors, function broadly as regulators driving developmental progression during embryogenesis in C. elegans. (C) 2014 Elsevier Inc. All rights reserved.
机译:细胞命运维持与分化之间的调节选择为发育提供了决策点,以朝着更加严格的细胞命运发展或维持当前命运。秀丽隐杆线虫的胚胎发生遵循不变的细胞谱系,其中细胞命运通常更受每个细胞分裂的限制。 EMS是四细胞胚胎中的祖细胞,可引起内胚层。我们最近发现,当泛素介导的蛋白质降解受到损害时,EMS的前任女儿即MS重申了EMS的命运。该观察结果证明了遍在蛋白介导的蛋白质降解在驱动EMS到MS分化过程中的基本功能。在这里,我们报告了遍在蛋白途径的全基因组筛选和广泛的谱系分析。结果表明,E3连接酶在驱动分化进程中具有广泛的作用。首先,我们确定了两种Cullin RING泛素连接酶(CRL)E3复合物的三种底物结合蛋白,它们促进了EMS命运向MS的发展,即CRL1 / SCF复合物的LIN-23 / beta-TrCP和FBXB-3和ZYG-11 / ZYG-11B用于CRL2复合体。遗传分析表明,这些E3连接酶通过多功能蛋白OMA-1和内膜中谱系指定子SKN-1来驱动分化。其次,我们发现CRL1 / SCF复合体成分的耗竭会在所有主要创始人细胞谱系中引起命运的反复。这些数据表明,在秀丽隐杆线虫的胚胎发生过程中,自我更新和分化之间的调控选择十分普遍,就像在具有调控性发育的生物中一样,泛素介导的蛋白质降解驱动了分化的选择。最后,时间序列基因表达数据的生物信息学分析表明,E3基因的表达在发育阶段过渡的时间窗口内瞬时富集。转录因子显示出类似的富集,但没有其他类别的调节基因。基于这些发现,我们建议,泛素介导的蛋白质降解,像许多转录因子一样,在秀丽隐杆线虫胚胎发生过程中广泛用作驱动发育进程的调节剂。 (C)2014 Elsevier Inc.保留所有权利。

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