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首页> 外文期刊>Clinical and experimental metastasis >BRMS1 contributes to the negative regulation of uPA gene expression through recruitment of HDAC1 to the NF-kappaB binding site of the uPA promoter.
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BRMS1 contributes to the negative regulation of uPA gene expression through recruitment of HDAC1 to the NF-kappaB binding site of the uPA promoter.

机译:BRMS1通过将HDAC1募集到uPA启动子的NF-κB结合位点来促进uPA基因表达的负调控。

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摘要

The BRMS1 metastasis suppressor was recently shown to negatively regulate NF-kappaB signaling and down regulate NF-kappaB-dependent uPA expression. Here we confirm that BRMS1 expression correlates with reduced NF-kappaB DNA binding activity in independently derived human melanoma C8161.9 cells stably expressing BRMS1. We show that knockdown of BRMS1 expression in these cells using small interfering RNA (siRNA) leads to the reactivation of NF-kappaB DNA binding activity and re-expression of uPA. Further, we confirm that BRMS1 expression does not alter IKKbeta kinase activity suggesting that BRMS1-dependent uPA regulation does not occur through inhibition of the classical upstream activators of NF-kappaB. BRMS1 has been implicated as a corepressor of HDAC1 and consistent with this, we show that BRMS1 promotes HDAC1 recruitment to the NF-kappaB binding site of the uPA promoter and is associated with reduced H3 acetylation. We also confirm that BRMS1 expression stimulates disassociation of p65 from the NF-kappaB binding site of the uPA promoter consistent with its reduced DNA binding activity. These data suggest that BRMS1 recruits HDAC1 to the NF-kappaB binding site of the uPA promoter, modulates histone acetylation of p65 on the uPA promoter, leading to reduced NF-kappaB binding activity on its consensus sequence, and reduced transactivation of uPA expression.
机译:最近显示,BRMS1转移抑制因子可负调节NF-kappaB信号传导,并下调NF-kappaB依赖性uPA表达。在这里,我们证实BRMS1表达与稳定表达BRMS1的独立衍生人黑素瘤C8161.9细胞中的NF-κBDNA结合活性降低有关。我们显示,使用小的干扰RNA(siRNA)在这些细胞中敲低BRMS1表达可导致NF-κBDNA结合活性的重新激活和uPA的重新表达。此外,我们确认BRMS1表达不会改变IKKbeta激酶活性,表明BRMS1依赖性uPA调节不会通过抑制NF-κB的经典上游激活剂而发生。 BRMS1已被暗示为HDAC1的核心抑制剂,并且与此一致,我们显示BRMS1促进HDAC1募集到uPA启动子的NF-kappaB结合位点,并与减少的H3乙酰化有关。我们还证实,BRMS1表达刺激uPA启动子的NF-kappaB结合位点与p65的解离,这与其降低的DNA结合活性一致。这些数据表明BRMS1将HDAC1募集到uPA启动子的NF-kappaB结合位点,调节uPA启动子上p65的组蛋白乙酰化,导致其共有序列上的NF-kappaB结合活性降低,并降低uPA表达的反式激活。

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