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Nfil3, a target of the NACA transcriptional coregulator, affects osteoblast and osteocyte gene expression differentially

机译:NFIL3,NACA转录核心试验器的靶标,影响成骨细胞和骨细胞基因表达差异

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摘要

Intermittent administration of PTH(1-34) has a profound osteoanabolic effect on the skeleton. At the cellular level, osteoblasts and osteocytes are two crucial cell types that respond to PTH stimulation in bone. The transcriptional cofactor Nascent polypeptide Associated Complex and coregulator alpha (NACA) is a downstream target of the PTH-G alpha s-PKA axis in osteoblasts. NACA functions as a transcriptional cofactor affecting bZIP factor-mediated transcription of target promoters in osteoblasts, such as Osteocalcin (Bglap2). Here, we used RNA-Seq and ChIP-Seq against NACA in PTH-treated MC3T3-E1 osteoblastic cells to identify novel targets of the PTHactivated NACA. Our approach identified Nuclear factor interleukin-3-regulated (Nfil3) as a target promoter of this pathway. Knockdown of Naca reduced the response of Nfil3 to PTH(1-34) stimulation. In silico analysis of the Nfil3 promoter revealed potential binding sites for NACA (located within the ChIP fragment) and CREB. We show that following PTH stimulation, phosphorylated-CREB binds the proximal promoter of Nfil3 in osteoblasts. The activity of the Nfil3 promoter (-818/+182 bp) is regulated by CREB and this activation relies on the presence of NACA. In addition, we show that knockdown of Nfil3 enhances the expression of osteoblastic differentiation markers in MC3T3-E1 cells while it represses osteocytic marker gene expression in IDG-SW3 cells. These results show that the PTH-induced NACA axis regulates Nfil3 expression and suggest that NFIL3 acts as a transcriptional repressor in osteoblasts while it exhibits differential activity as an activator in osteocytes.
机译:间歇施用Pth(1-34)对骨骼具有深远的骨代谢作用。在细胞水平,成骨细胞和骨细胞是两个关键的细胞类型,其应对骨中的PTH刺激。转录辅因子新生多肽相关的复合物和核心剂α(NaCA)是在成骨细胞中Pth-GαS-PKA轴的下游靶标。 NaCA用作影响骨盆细胞中的靶促进剂的Bzip因子介导的转录转录辅因子,例如骨癌(Bglap2)。这里,我们在PTH处理的MC3T3-E1骨细胞中使用RNA-SEQ和CHIP-SEQ对NACA,以识别术治疗的芽孢杆菌的新靶。我们的方法鉴定了核因子白细胞介素-3-调节(NFIL3)作为该途径的目标启动子。 NACA敲低减少了NFIL3至PTH(1-34)刺激的响应。在NFIL3启动子的硅分析中,揭示了NACA(位于芯片片段内)和CREB的潜在结合位点。我们表明,在Pth刺激之后,磷酸化-CREB在成骨细胞中结合NFIL3的近端启动子。 NFIL3启动子(-818 / + 182bp)的活性由CREB调节,并且该活化依赖于NaCl的存在。此外,我们表明NFIL3的敲低增强了MC3T3-E1细胞中骨细胞分化标志物的表达,同时抑制了IDG-SW3细胞中的骨细胞标志物基因表达。这些结果表明,Pth诱导的NaCa轴调节NFIL3表达,并表明NFIL3作为成骨细胞中的转录阻遏物,而在骨细胞中表现出差异活性。

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