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首页> 外文期刊>The Biochemical Journal >TGF-beta regulates the expression of transcription factor KLF6 and its splice variants and promotes co-operative transactivation of common target genes through a Smad3-Sp1-KLF6 interaction
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TGF-beta regulates the expression of transcription factor KLF6 and its splice variants and promotes co-operative transactivation of common target genes through a Smad3-Sp1-KLF6 interaction

机译:TGF-β调节转录因子KLF6及其剪接变体的表达,并通过Smad3-Sp1-KLF6相互作用促进共同靶基因的合作反式激活

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KLF6 (Kruppel-like factor 6) is a transcription factor and tumour suppressor with a growing range of biological activities and transcriptional targets. Among these, KLF6 suppresses growth through transactivation of TGF-beta1 (transforming growth factor-beta1). KLF6 can be alternatively spliced, generating lower-molecular-mass isoforms that antagonize the full-length WT (wild-type) protein and promote growth. A key target gene of full-length KLF6 is endoglin, which is induced in vascular injury. Endoglin, a homodimeric cell membrane glycoprotein and TGF-beta auxiliary receptor, has a pro-angiogenic role in endothelial cells and is also involved in malignant progression. The aim of the present work was to explore the effect of TGF-beta on KLF6 expression and splicing, and to define the contribution of TGF-beta on promoters regulated by co-operation between KLF6 and Sp1 (specificity protein 1). Using co-transfection, co-immunoprecipitation and fluorescence resonance energy transfer, our data demonstrate that KLF6 co-operates with Sp1 in transcriptionally regulating KLF6-responsive genes and that this co-operation is further enhanced by TGF-beta1 through at least two mechanisms. First, in specific cell types, TGF-beta1 may decrease KLF6 alternative splicing, resulting in a net increase in full-length, growth-suppressive KLF6 activity. Secondly, KLF6-Sp1 co-operation is further enhanced by the TGF-beta-Smad (similar to mothers against decapentaplegic) pathway via the likely formation of a tripartite KLF6-Sp1-Smad3 complex in which KLF6 interacts indirectly with Smad3 through Sp1, which may serve as a bridging molecule to co-ordinate this interaction. These findings unveil a finely tuned network of interactions between KLF6, Sp1 and TGF-beta to regulate target genes.
机译:KLF6(类似Kruppel的因子6)是一种转录因子和抑癌剂,具有越来越广泛的生物学活性和转录靶标。其中,KLF6通过TGF-β1(转化生长因子-β1)的反式激活抑制生长。可以将KLF6剪接,生成低分子质量的同工型,该同工型拮抗全长WT(野生型)蛋白并促进生长。全长KLF6的关键靶基因是内皮糖蛋白,它在血管损伤中被诱导。内皮糖蛋白是一种同型二聚体细胞膜糖蛋白和TGF-β辅助受体,在内皮细胞中具有促血管生成作用,并且还参与恶性进展。本工作的目的是探讨TGF-β对KLF6表达和剪接的作用,并确定TGF-β对KLF6和Sp1(特异性蛋白1)协同调节的启动子的贡献。使用共转染,免疫共沉淀和荧光共振能量转移,我们的数据表明KLF6与Sp1在转录调节KLF6反应基因中协同作用,并且TGF-beta1通过至少两种机制进一步增强了这种合作。首先,在特定的细胞类型中,TGF-beta1可能会减少KLF6选择性剪接,从而导致全长的,抑制生长的KLF6活性净增加。其次,通过可能形成三方KLF6-Sp1-Smad3复合体(其中KLF6通过Sp1间接与Smad3相互作用),TGF-β-Smad(类似于对抗去碳酸胆碱的母亲)途径进一步增强了KLF6-Sp1的合作。可以作为桥接分子来协调这种相互作用。这些发现揭示了KLF6,Sp1和TGF-beta之间相互作用的微调网络,以调节靶基因。

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