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Dimer formation and conformational flexibility ensure cytoplasmic stability and nuclear accumulation of Elk-1

机译:二聚体形成和构象柔韧性确保Elk-1的细胞质稳定性和核积累

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摘要

The ETS (E26) protein Elk-1 serves as a paradigm for mitogen-responsive transcription factors. It is multiply phosphorylated by mitogen-activated protein kinases (MAPKs), which it recruits into pre-initiation complexes on target gene promoters. However, events preparatory to Elk-1 phosphorylation are less well understood. Here, we identify two novel, functional elements in Elk-1 that determine its stability and nuclear accumulation. One element corresponds to a dimerization interface in the ETS domain and the second is a cryptic degron adjacent to the serum response factor (SRF)-interaction domain that marks dimerization-defective Elk-1 for rapid degradation by the ubiquitin-proteasome system. Dimerization appears to be crucial for Elk-1 stability only in the cytoplasm, as latent Elk-1 accumulates in the nucleus and interacts dynamically with DNA as a monomer. These findings define a novel role for the ETS domain of Elk-1 and demonstrate that nuclear accumulation of Elk-1 involves conformational flexibility prior to its phosphorylation by MAPKs.
机译:ETS(E26)蛋白Elk-1作为有丝分裂原应答转录因子的范例。它被有丝分裂原激活的蛋白激酶(MAPK)磷酸化,并募集到目标基因启动子上的预启动复合物中。但是,对Elk-1磷酸化的准备事件了解得很少。在这里,我们确定了Elk-1中的两个新颖的功能元素,这些元素决定了它的稳定性和核积累。一个元素对应于ETS域中的二聚化界面,第二个元素是与血清反应因子(SRF)相互作用域相邻的神秘地狱,它标记了二聚化缺陷的Elk-1,可被泛素-蛋白酶体系统快速降解。二聚化似乎仅对Elk-1的稳定性至关重要,因为潜在的Elk-1积累在细胞核中,并与DNA作为单体动态相互作用。这些发现定义了Elk-1的ETS结构域的新作用,并证明Elk-1的核积累在其被MAPK磷酸化之前涉及构象柔性。

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