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DDX5 S480A 多态性与肝星状细胞中成纤维基因转录的增加有关。

A DDX5 S480A polymorphism is associated with increased transcription of fibrogenic genes in hepatic stellate cells.

机构信息

Division of Liver Diseases, Mount Sinai School of Medicine, New York, New York 10029, USA.

出版信息

J Biol Chem. 2010 Feb 19;285(8):5428-37. doi: 10.1074/jbc.M109.035295. Epub 2009 Dec 17.

Abstract

We recently identified a missense single nucleotide polymorphism (SNP) in DDX5 (rs1140409, p.S480A) that enhances the risk of developing cirrhosis. DDX5 is an ATP-dependent RNA helicase and transcriptional modulator. We hypothesized that the activity of DDX5 in regulating fibrogenic gene transcription in hepatic stellate cells (HSCs) is altered by the S480A SNP. To test this, we employed two approaches: 1) transient overexpression of DDX5 cDNA or siRNA knockdown of endogenous DDX5, with replacement by either DDX5 wild type (WT) or SNP cDNA, or 2) stable expression of exogenous DDX5 WT and SNP in HSC lines. WT DDX5 mRNA in HSCs was inversely correlated with gene expression for alpha2(I) collagen, tissue inhibitor of metalloproteinase-1, and transforming growth factor-beta1. Stable DDX5 SNP-expressing cells had higher basal and transforming growth factor-beta1-stimulated expression and enhanced promoter activities of fibrogenic genes. DDX5 variant-expressing cells also had higher Smad3 and AP-1-responsive reporter activities. In a one-hybrid GAL4 system, co-expression of the DDX5 SNP variant with chimeras of GAL4 DNA binding domain linked to JunD or Sp1 displayed higher transactivation of a GAL4-responsive reporter than that of DDX5 WT. Increased fibrogenic gene expression in DDX5 SNP-expressing cells was associated with reduced recruitment of DDX5 homodimers to responsive promoters, but there was no difference in the recruitment of the co-repressor HDAC1 (histone deacetylase 1). These data suggest that DDX5 is a repressor of fibrogenic genes in HSCs through interaction with transcriptional complexes. The enhanced fibrogenic activity of the DDX5 risk variant is linked to a reduced repressive function toward these target genes.

摘要

我们最近在 DDX5 中发现了一个错义单核苷酸多态性(SNP)(rs1140409,p.S480A),它增加了发生肝硬化的风险。DDX5 是一种 ATP 依赖性 RNA 解旋酶和转录调节剂。我们假设 DDX5 在调节肝星状细胞(HSCs)中纤维生成基因转录的活性被 S480A SNP 改变。为了验证这一点,我们采用了两种方法:1)瞬时过表达 DDX5 cDNA 或内源性 DDX5 的 siRNA 敲低,并用 DDX5 野生型(WT)或 SNP cDNA 替代,或 2)在 HSC 系中外源稳定表达 DDX5 WT 和 SNP。HSCs 中 WT DDX5 mRNA 与α2(I)胶原、金属蛋白酶组织抑制剂 1 和转化生长因子-β1 的基因表达呈负相关。稳定表达 DDX5 SNP 的细胞具有更高的基础和转化生长因子-β1 刺激的纤维生成基因表达和增强的启动子活性。DDX5 变体表达细胞也具有更高的 Smad3 和 AP-1 反应性报告基因活性。在一个单杂交 GAL4 系统中,DDX5 SNP 变体与 GAL4 DNA 结合域与 JunD 或 Sp1 连接的嵌合体的共表达显示出比 DDX5 WT 更高的 GAL4 反应性报告基因的转录激活。DDX5 SNP 表达细胞中纤维生成基因表达的增加与响应启动子的 DDX5 同源二聚体募集减少有关,但与共抑制因子 HDAC1(组蛋白去乙酰化酶 1)的募集没有差异。这些数据表明,DDX5 通过与转录复合物相互作用,成为 HSCs 中纤维生成基因的抑制剂。DDX5 风险变体增强的纤维生成活性与对这些靶基因的抑制功能降低有关。

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