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首页> 外文期刊>Biochemical Pharmacology >Pharmacological inhibition of DEAD-Box RNA Helicase 3 attenuates stress granule assembly
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Pharmacological inhibition of DEAD-Box RNA Helicase 3 attenuates stress granule assembly

机译:死箱RNA螺旋酶3的药理抑制衰减应力颗粒组件

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摘要

Stress granules (SGs) are non-membranous cytosolic protein-RNA aggregates that process mRNAs through stalled translation initiation in response to cellular stressors and in disease. DEAD-Box RNA helicase 3 (DDX3) is an active target of drug development for the treatment of viral infections, cancers, and neurodegenerative diseases. DDX3 plays a critical role in RNA metabolism, including SGs, but the role of DDX3 enzymatic activity in SG dynamics is not well understood. Here, we address this question by determining the effects of DDX3 inhibition on the dynamics of SG assembly and disassembly. We use two small molecule inhibitors of DDX3, RK33 and 16D, with distinct inhibitory mechanisms that target DDX3 ' s ATPase activity and RNA helicase site, respectively. We find that both DDX3 inhibitors reduce the assembly of SGs, with a more pronounced reduction from RK-33. In contrast, both compounds only marginally affect the disassembly of SGs. RNA-mediated knockdown of DDX3 caused a similar reduction in SG assembly and minimal effect on SG disassembly. Collectively, these results reveal that the enzymatic activity of DDX3 is required for the assembly of SGs and pharmacological inhibition of DDX3 could be relevant for the treatment of SG-dependent pathologies.
机译:应激颗粒(SGS)是非膜状细胞溶蛋白-RNA聚集体,其通过响应于细胞压力源和疾病而通过被停滞的翻译引发来处理mRNA。死箱RNA直升机3(DDX3)是治疗病毒感染,癌症和神经变性疾病的药物开发的活性靶标。 DDX3在RNA代谢中起着关键作用,包括SGS,但DDX3酶活性在SG动态中的作用也不受欢迎。在这里,我们通过确定DDX3抑制对SG组装和拆卸的动态的影响来解决这个问题。我们使用DDX3,RK33和16D的两种小分子抑制剂,具有分别靶向DDX3的ATP酶活性和RNA直升机位点的不同抑制机制。我们发现两个DDX3抑制剂都减少了SGS的组装,从RK-33中更加明显减少。相比之下,两种化合物仅对SGS的拆卸产生了略微影响。 RNA介导的DDX3敲低导致SG组装的类似减少和对SG拆卸的最小效果。总的来说,这些结果表明,DDX3的酶活性是用于组装SGS的组装,DDX3的药理学抑制可能与治疗SG依赖性病理相关。

著录项

  • 来源
    《Biochemical Pharmacology》 |2020年第1期|共12页
  • 作者单位

    Univ South Carolina Coll Pharm Dept Drug Discovery &

    Biomed Sci 715 Sumter St Columbia SC;

    Univ South Carolina Coll Pharm Dept Drug Discovery &

    Biomed Sci 715 Sumter St Columbia SC;

    Univ South Carolina Coll Pharm Dept Drug Discovery &

    Biomed Sci 715 Sumter St Columbia SC;

    Univ South Carolina Coll Pharm Dept Drug Discovery &

    Biomed Sci 715 Sumter St Columbia SC;

    Univ South Carolina Coll Pharm Dept Drug Discovery &

    Biomed Sci 715 Sumter St Columbia SC;

    Univ South Carolina Coll Pharm Dept Drug Discovery &

    Biomed Sci 715 Sumter St Columbia SC;

    Univ South Carolina Coll Pharm Dept Drug Discovery &

    Biomed Sci 715 Sumter St Columbia SC;

    Univ South Carolina Coll Pharm Dept Drug Discovery &

    Biomed Sci 715 Sumter St Columbia SC;

    Univ South Carolina Coll Pharm Dept Drug Discovery &

    Biomed Sci 715 Sumter St Columbia SC;

    Univ South Carolina Coll Arts &

    Sci Dept Biol Sci Columbia SC 29208 USA;

    Univ South Carolina Coll Pharm Dept Drug Discovery &

    Biomed Sci 715 Sumter St Columbia SC;

    Univ South Carolina Coll Pharm Dept Drug Discovery &

    Biomed Sci 715 Sumter St Columbia SC;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;
  • 关键词

    DDX3; DDX3X; Stress granule; RK-33; DEAD-Box RNA helicase;

    机译:ddx3;ddx3x;应激颗粒;RK-33;死箱RNA螺旋酶;

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