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The heterodimeric structure of heterogeneous nuclear ribonucleoprotein C1/C2 dictates 1,25-dihydroxyvitamin D-directed transcriptional events in osteoblasts

机译:异质核糖核蛋白C1 / C2的异二聚体结构决定了成骨细胞中1,25-二羟基维生素D定向转录事件

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摘要

Heterogeneous nuclear ribonucleoprotein (hnRNP) C plays a key role in RNA processing but also exerts a dominant negative effect on responses to 1,25-dihydroxyvitamin D (1,25(OH)2D) by functioning as a vitamin D response element-binding protein (VDRE-BP). hnRNPC acts a tetramer of hnRNPC1 (huC1) and hnRNPC2 (huC2), and organization of these subunits is critical to in vivo nucleic acid-binding. Overexpression of either huC1 or huC2 in human osteoblasts is sufficient to confer VDRE-BP suppression of 1,25(OH)2D-mediated transcription. However, huC1 or huC2 alone did not suppress 1,25(OH)2D-induced transcription in mouse osteoblastic cells. By contrast, overexpression of huC1 and huC2 in combination or transfection with a bone-specific polycistronic vector using a‘‘self-cleaving’’ 2A peptide to co-express huC1/C2 suppressed 1,25D-mediated induction of osteoblast target gene expression. Structural diversity of hnRNPC between human/NWPs and mouse/rat/rabbit/dog was investigated by analysis of sequence variations within the hnRNP CLZ domain. The predicted loss of distal helical function in hnRNPC from lower species provides an explanation for the altered interaction between huC1/C2 and their mouse counterparts. These data provide new evidence of a role for hnRNPC1/C2 in 1,25(OH)2D-driven gene expression, and further suggest that species-specific tetramerization is a crucial determinant of its actions as a regulator of VDR-directed transactivation.
机译:异构核核糖核糖蛋白(HNRNP)C在RNA加工中起关键作用,但通过作为维生素D响应元件结合蛋白的作用,对1,25-二羟乙酰氨酸D(1,25(OH)2D)的反应产生显性负面影响(VDRE-BP)。 HNRNPC作用于HNRNPC1(HUC1)和HNRNPC2(HUC2)的四聚体,组织这些亚基对体内核酸结合至关重要。人成骨细胞中HUC1或HUC2的过度表达足以赋予1,25(OH)2D介导的转录的VDRE-BP抑制。然而,单独的HUC1或HUC2未抑制小鼠成骨细胞中的1,25(OH)2D诱导的转录。相比之下,HUC1和HUC2的含量表达或通过使用A'Self-Cleaping的2A肽转染与骨特异性的多际载体转染,以共同表达HUC1 / C2抑制了1,25D介导的成骨细胞靶基因表达的诱导。通过分析HNRNP CLZ结构域内的序列变化,研究了人/ NWPS和小鼠/大鼠/兔犬之间HNRNPC的结构多样性。从较低物质的HNRNPC中预测的远端螺旋功能的丧失提供了HUC1 / C2与其小鼠对应物之间改变的相互作用的解释。这些数据提供了对1,25(OH)2D驱动的基因表达中的HNRNPC1 / C2作用的新证据,并进一步表明物种特异性四聚化是其作为VDR定向转移的调节剂的关键决定因素。

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  • 来源
    《骨研究(英文版)》 |2014年第2期|110-120|共11页
  • 作者单位

    Department of 0rthopaedic Surgery and the 0rthopaedic Hospital Research Center, UCLA, Los Angeles, CA, USA;

    Department of 0rthopaedic Surgery and the 0rthopaedic Hospital Research Center, UCLA, Los Angeles, CA, USA;

    Department of 0rthopaedic Surgery and the 0rthopaedic Hospital Research Center, UCLA, Los Angeles, CA, USA;

    Department of 0rthopaedic Surgery and the 0rthopaedic Hospital Research Center, UCLA, Los Angeles, CA, USA;

    Department of 0rthopaedic Surgery and the 0rthopaedic Hospital Research Center, UCLA, Los Angeles, CA, USA;

    Department of 0rthopaedic Surgery and the 0rthopaedic Hospital Research Center, UCLA, Los Angeles, CA, USA;

    Department of 0rthopaedic Surgery and the 0rthopaedic Hospital Research Center, UCLA, Los Angeles, CA, USA;

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  • 入库时间 2022-08-19 03:40:31
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