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A RING to rule them all? Insights into the Map3k1 PHD motif provide a new mechanistic understanding into the diverse roles of Map3k1

机译:一个环来统治所有人?对Map3k1 PHD母题的见解为对Map3k1的各种角色提供了新的机制理解

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摘要

Despite the sizable number of components that comprise Mapk cascades, Map3k1 is the only element that contains both a kinase domain and a plant homeodomain (PHD) motif, allowing Map3k1 to regulate the protein phosphorylation and ubiquitin proteasome systems. As such, Map3k1 has complex roles in the regulation of cell death, survival, migration and differentiation. Numerous mouse and human genetic analyses have demonstrated that Map3k1 is of critical importance for the immune system, cardiac tissue, testis, wound healing, tumorigenesis and cancer. Recent gene knockin of Map3k1 to mutate the E2 binding site within the Map3k1 PHD motif and high throughput ubiquitin protein array screening for Map3k1 PHD motif substrates provide critical novel insights into Map3k1 PHD motif signal transduction and bring a brand-new understanding to Map3k1 signaling in mammalian biology.
机译:尽管组成Mapk级联的组件数量众多,但Map3k1是唯一既包含激酶结构域又包含植物同源结构域(PHD)基序的元素,从而使Map3k1可以调节蛋白质磷酸化和泛素蛋白酶体系统。因此,Map3k1在细胞死亡,存活,迁移和分化的调控中具有复杂的作用。大量的小鼠和人类基因分析表明,Map3k1对于免疫系统,心脏组织,睾丸,伤口愈合,肿瘤发生和癌症至关重要。 Map3k1的最新基因敲除突变使Map3k1 PHD主题内的E2结合位点发生突变,并且对Map3k1 PHD主题底物的高通量泛素蛋白阵列筛选为Map3k1 PHD主题信号转导提供了关键的新见解,并为哺乳动物中的Map3k1信号传导带来了全新的认识生物学。

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