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首页> 外文期刊>RNA & Disease >Novel role of Na+,K+-ATPase ligands in regulating cytokines mRNA stability by HuR signalosome and the underlying pathophysiologic relevance
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Novel role of Na+,K+-ATPase ligands in regulating cytokines mRNA stability by HuR signalosome and the underlying pathophysiologic relevance

机译:Na +,K + -ATPase配体在HuR信号小体调控细胞因子mRNA稳定性中的新作用及其潜在的病理生理相关性

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Increasing evidence demonstrated that Na + ,K + -ATPase ligands, also called as cardiotonic steroids, are hormone-like immunoregulators, because endogenous Na + ,K + -ATPase ligands are frequently detected in inflammatory-related diseases, moreover, Na + ,K + -ATPase ligands regulate multiple aspects of immune responses. One of prominent roles of Na + ,K + -ATPase ligands in regulating immunity is their abilities of modulating cytokines expression. Na + ,K + -ATPase ligands can either upregulate or downregulate IL-1β, TNF-α, IL6, or iNOS expressions in different model system, however, all of those studies pointed to transcriptional upregulation. In our recent studies, we proposed for the first time that Na + ,K + -ATPase ligands are capable of regulating cytokines mRNA stability by integrating multiple posttranscriptional mechanisms, including human antigen R (HuR) translocation, generation of miR181s, and formation of stress granules. These mechanisms did not function alone, but act in a synergistic or an antagonistic manner to fine-tune the cytokines expression, HuR nuclear export, however, forms signalosome and plays a core role among these processes. By taking advantage of these posttranscriptional mechanisms, Na + ,K + -ATPase ligands stabilized cyclooxygenase-2 mRNA stability in lung epithelial cells and induced acute lung injury. In monocytes, ouabain-induced HuR export competed with miR181s on the shared target of TNF-α, also triggered stress granules formation and recruited TNF-α mRNA into it for protection, thereby stabilizing TNF-α mRNA and reversing sepsis-induced immunoparalysis, both in vitro and in vivo. Besides in immune-related diseases, HuR also regulated a variety of pro-oncogenes and anti-oncogenes expressions in cancer cells, which determined the cancer cells sensitivity towards Na + ,K + -ATPase ligands or other chemotherapeutic drugs. In sum, HuR emerges as a very important signaling molecule in Na + ,K + -ATPase ligands-mediated effects, which opens new avenues for understanding of the pathophysiologic and pharmacological activities of Na + ,K + -ATPase ligands. Identification of the components of HuR signalosome will offer more novel targets and biomarkers for diseases therapy.
机译:越来越多的证据表明,Na +,K + -ATPase配体,也称为强心甾体,是激素样的免疫调节剂,因为内源性Na +,K + -ATPase配体经常在炎症相关疾病中被发现,此外,Na +,K + -ATPase配体可调节免疫反应的多个方面。 Na +,K + -ATPase配体在调节免疫力中的重要作用之一是它们调节细胞因子表达的能力。 Na +,K + -ATPase配体可以在不同模型系统中上调或下调IL-1β,TNF-α,IL6或iNOS的表达,但是,所有这些研究均指向转录上调。在我们最近的研究中,我们首次提出Na +,K + -ATPase配体能够通过整合多种转录后机制,包括人类抗原R(HuR)易位,miR181s的产生和应激的形成来调节细胞因子mRNA的稳定性。颗粒。这些机制并非单独起作用,而是以协同或拮抗的方式起作用以微调细胞因子的表达,然而,HuR核输出形成信号小体并在这些过程中起核心作用。通过利用这些转录后机制,Na +,K + -ATPase配体稳定了肺上皮细胞中环氧合酶2 mRNA的稳定性,并诱导了急性肺损伤。在单核细胞中,哇巴因诱导的HuR出口与TNF-α共同靶标上的miR181s竞争,还触发了应激颗粒的形成并将TNF-αmRNA募集入其中进行保护,从而稳定TNF-αmRNA并逆转败血症引起的免疫麻痹。体外和体内。除免疫相关疾病外,HuR还调节癌细胞中多种原癌基因和抗癌基因的表达,这决定了癌细胞对Na +,K + -ATPase配体或其他化疗药物的敏感性。总之,HuR在Na +,K + -ATPase配体介导的作用中作为非常重要的信号分子出现,为理解Na +,K + -ATPase配体的病理生理和药理活性开辟了新途径。 HuR信号体成分的鉴定将为疾病治疗提供更多新颖的靶标和生物标记。

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