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Acetylation of KLF5 Alters the Assembly of p15 Transcription Factors in Transforming Growth Factor-β-mediated Induction in Epithelial Cells*

机译:KLF5的乙酰化改变上皮细胞中转化生长因子-β介导的诱导中p15转录因子的组装*

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摘要

KLF5 plays important roles in a variety of cellular processes including proliferation and differentiation. Recently KLF5 was shown to reverse its function in proliferative and p15 regulation upon transforming growth factor-β (TGFβ)-mediated acetylation. To understand how KLF5 acetylation functions in TGFβ-induced p15 transcription, we characterized the interactions of KLF5 with other transcription factors and promoter DNA elements in the context of TGFβ. KLF5 interacted with Smad2–4 and Miz-1 in a TGFβ-independent manner, but interacted with Myc only when TGFβ was activated, and at least some of the interactions had an additive effect on TGFβ-induced p15 transcription. Oligo pulldown assays showed that binding of Myc to the Inr element was KLF5-dependent, and TGFβ could enhance the binding when more KLF5 was available. Furthermore, TGFβ induced an interaction between KLF5 and the p300 acetylase, and acetylation of KLF5 was necessary for Smad4 to associate with p300. Failure in KLF5 acetylation not only prevented p300-assembled Smad4-KLF5 complex formation on p15 promoter but also affected the binding of Smad4 and FOXO3 on the p15 promoter in vivo. These findings suggest that without TGFβ, some KLF5 associates with Smads in the nucleus and other KLF5 associates with Miz-1 on the p15 promoter to repress its transcription. Activation of TGFβ recruits p300 to the KLF5-Smad complex to acetylate KLF5, and the complex with acetylated KLF5 binds to the Smad binding element and alters the binding of other factors to p15 promoter to induce its transcription.
机译:KLF5在多种细胞过程(包括增殖和分化)中起重要作用。最近显示,在转化生长因子-β(TGFβ)介导的乙酰化作用后,KLF5可逆转其在增殖和p15调节中的功能。为了了解KLF5乙酰化如何在TGFβ诱导的p15转录中起作用,我们在TGFβ的背景下表征了KLF5与其他转录因子和启动子DNA元素的相互作用。 KLF5以非TGFβ的方式与Smad2-4和Miz-1相互作用,但仅在TGFβ激活时才与Myc相互作用,并且至少某些相互作用对TGFβ诱导的p15转录具有累加作用。寡核苷酸下拉试验表明Myc与Inr元素的结合是KLF5依赖性的,当有更多KLF5可用时,TGFβ可以增强结合。此外,TGFβ诱导了KLF5与p300乙酰酶之间的相互作用,并且SLF4与p300缔合需要KLF5的乙酰化。 KLF5乙酰化的失败不仅阻止了p300启动子上p300组装的Smad4-KLF5复合物的形成,而且还影响了Smad4和FOXO3在p15启动子上的结合。这些发现表明,在没有TGFβ的情况下,一些KLF5与核内的Smads缔合,而另一些KLF5与p15启动子上的Miz-1缔合,以抑制其转录。 TGFβ的激活将p300募集到KLF5-Smad复合物上,以使KLF5乙酰化,而具有乙酰化KLF5的复合物与Smad结合元件结合,并改变其他因子与p15启动子的结合,从而诱导其转录。

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