首页> 美国卫生研究院文献>Nucleic Acids Research >Concerted effects of heterogeneous nuclear ribonucleoprotein C1/C2 to control vitamin D-directed gene transcription and RNA splicing in human bone cells
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Concerted effects of heterogeneous nuclear ribonucleoprotein C1/C2 to control vitamin D-directed gene transcription and RNA splicing in human bone cells

机译:异种核糖核蛋白C1 / C2协同作用控制人骨细胞中维生素D定向基因的转录和RNA剪接

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摘要

Traditionally recognized as an RNA splicing regulator, heterogeneous nuclear ribonucleoprotein C1/C2 (hnRNPC1/C2) can also bind to double-stranded DNA and function in trans as a vitamin D response element (VDRE)-binding protein. As such, hnRNPC1/C2 may couple transcription induced by the active form of vitamin D, 1,25-dihydroxyvitamin D (1,25(OH)2D) with subsequent RNA splicing. In MG63 osteoblastic cells, increased expression of the 1,25(OH)2D target gene CYP24A1 involved immunoprecipitation of hnRNPC1/C2 with CYP24A1 chromatin and RNA. Knockdown of hnRNPC1/C2 suppressed expression of CYP24A1, but also increased expression of an exon 10-skipped CYP24A1 splice variant; in a minigene model the latter was attenuated by a functional VDRE in the CYP24A1 promoter. In genome-wide analyses, knockdown of hnRNPC1/C2 resulted in 3500 differentially expressed genes and 2232 differentially spliced genes, with significant commonality between groups. 1,25(OH)2D induced 324 differentially expressed genes, with 187 also observed following hnRNPC1/C2 knockdown, and a further 168 unique to hnRNPC1/C2 knockdown. However, 1,25(OH)2D induced only 10 differentially spliced genes, with no overlap with differentially expressed genes. These data indicate that hnRNPC1/C2 binds to both DNA and RNA and influences both gene expression and RNA splicing, but these actions do not appear to be linked through 1,25(OH)2D-mediated induction of transcription.
机译:传统上公认的RNA剪接调节剂,异质核糖核蛋白C1 / C2(hnRNPC1 / C2)也可以与双链DNA结合并反式作为维生素D反应元件(VDRE)结合蛋白。这样,hnRNPC1 / C2可以将由维生素D 1,25-二羟基维生素D(1,25(OH)2D)的活性形式诱导的转录与随后的RNA剪接结合在一起。在MG63成骨细胞中,1,25(OH)2D靶基因CYP24A1的表达增加涉及hnRNPC1 / C2与CYP24A1染色质和RNA的免疫沉淀。敲低hnRNPC1 / C2抑制CYP24A1的表达,但也增加了外显子10跳过的CYP24A1剪接变体的表达;在小基因模型中,后者被CYP24A1启动子中的功能性VDRE减弱。在全基因组分析中,敲低hnRNPC1 / C2导致3500个差异表达基因和2232个差异剪接基因,各组之间具有明显的共性。 1,25(OH)2D诱导了324个差异表达基因,在hnRNPC1 / C2敲低后还观察到187个,另外168个是hnRNPC1 / C2敲除后唯一的。但是,1,25(OH)2D仅诱导10个差异剪接的基因,与差异表达的基因没有重叠。这些数据表明hnRNPC1 / C2与DNA和RNA结合,并影响基因表达和RNA剪接,但这些作用似乎与通过1,25(OH)2D介导的转录诱导无关。

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