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Cytokine exposure mediates transcriptional activation of the orphan nuclear receptor Nur77 in hematopoietic cells

机译:细胞因子暴露介导孤儿核受体Nur77在造血细胞中的转录激活

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摘要

The orphan nuclear receptor Nur77 is an immediate-early response gene that based on tissue and cell context is implicated in a plethora of cellular processes, including proliferation, differentiation, apoptosis, metabolism, and inflammation. Nur77 has a ligand-binding pocket that is obstructed by hydrophobic side groups. Naturally occurring, cell-endogenous ligands have not been identified, and Nur77 transcriptional activity is thought to be regulated through posttranslational modification and modulation of protein levels. To determine whether Nur77 is transcriptionally active in hematopoietic cells in vivo, we used an upstream activating sequence (UAS)-GFP transgenic reporter. We found that Nur77 is transcriptionally inactive in vivo in hematopoietic cells under basal conditions, but that activation occurs following cytokine exposure by G-CSF or IL-3. We also identified a series of serine residues required for cytokine-dependent transactivation of Nur77. Moreover, a kinase inhibitor library screen and proximity labeling-based mass spectrometry identified overlapping kinase pathways that physically interacted with Nur77 and whose inhibition abrogated cytokine-induced activation of Nur77. We determined that transcriptional activation of Nur77 by G-CSF or IL-3 requires functional JAK and mTor signaling since their inhibition leads to Nur77 transcriptional inactivation. Thus, intracellular cytokine signaling networks appear to regulate Nur77 transcriptional activity in mouse hematopoietic cells.
机译:孤儿核受体NUR77是一种立即早期的反应基因,基于组织和细胞背景涉及一种细胞方法,包括增殖,分化,细胞凋亡,代谢和炎症。 NUR77具有配体结合口袋,其被疏水侧组阻塞。尚未确定天然存在的细胞 - 内源性配体,并认为NUR77转录活性通过蛋白质水平的后期改性和调节来调节。为了确定NUR77是否在体内造血细胞中转录活性,我们使用上游激活序列(UAS)-GFP转基因记者。我们发现NUR77在基础条件下在造血细胞中在体内转型无活性,但是通过G-CSF或IL-3进行细胞因子暴露后发生激活。我们还确定了Nur77的细胞因子依赖性转基因所需的一系列丝氨酸残留物。此外,基于激酶抑制剂文库筛网和基于邻近标记的质谱法鉴定了与Nur77物理相互作用的重叠激酶途径,其抑制废除细胞因子诱导的Nur77活化。我们确定Nur77的转录激活G-CSF或IL-3需要功能性Jak和MTOR信号传导,因为它们的抑制导致Nur77转录失活。因此,细胞内细胞因子信号传导网络似乎调节小鼠造血细胞中的Nur77转录活性。

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