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PNAS Plus: Human ortholog of Drosophila Melted impedes SMAD2 release from TGF-β receptor I to inhibit TGF-β signaling

机译:PNAS Plus:果蝇融化的人类直系同源物阻碍SMAD2从TGF-β受体I释放以抑制TGF-β信号传导

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摘要

Drosophila melted encodes a pleckstrin homology (PH) domain-containing protein that enables normal tissue growth, metabolism, and photoreceptor differentiation by modulating Forkhead box O (FOXO), target of rapamycin, and Hippo signaling pathways. Ventricular zone expressed PH domain-containing 1 (VEPH1) is the mammalian ortholog of melted, and although it exhibits tissue-restricted expression during mouse development and is potentially amplified in several human cancers, little is known of its function. Here we explore the impact of VEPH1 expression in ovarian cancer cells by gene-expression profiling. In cells with elevated VEPH1 expression, transcriptional programs associated with metabolism and FOXO and Hippo signaling were affected, analogous to what has been reported for Melted. We also observed altered regulation of multiple transforming growth factor-β (TGF-β) target genes. Global profiling revealed that elevated VEPH1 expression suppressed TGF-β–induced transcriptional responses. This inhibitory effect was verified on selected TGF-β target genes and by reporter gene assays in multiple cell lines. We further demonstrated that VEPH1 interacts with TGF-β receptor I (TβRI) and inhibits nuclear accumulation of activated Sma- and Mad-related protein 2 (SMAD2). We identified two TβRI-interacting regions (TIRs) with opposing effects on TGF-β signaling. TIR1, located at the N terminus, inhibits canonical TGF-β signaling and promotes SMAD2 retention at TβRI, similar to full-length VEPH1. In contrast, TIR2, located at the C-terminal region encompassing the PH domain, decreases SMAD2 retention at TβRI and enhances TGF-β signaling. Our studies indicate that VEPH1 inhibits TGF-β signaling by impeding the release of activated SMAD2 from TβRI and may modulate TGF-β signaling during development and cancer initiation or progression.
机译:果蝇融化编码包含pleckstrin同源(PH)域的蛋白质,该蛋白质可通过调节叉头盒O(FOXO),雷帕霉素的靶标和Hippo信号通路来实现正常组织的生长,代谢和感光细胞的分化。心室区表达的含PH结构域的1(VEPH1)是融化的哺乳动物直系同源物,尽管它在小鼠发育过程中表现出组织受限的表达,并且可能在几种人类癌症中扩增,但对其功能的了解甚少。在这里,我们通过基因表达谱分析来研究VEPH1在卵巢癌细胞中的表达。在VEPH1表达升高的细胞中,与代谢,FOXO和Hippo信号传导相关的转录程序受到影响,类似于已报道的Melted。我们还观察到了多种转化生长因子-β(TGF-β)靶基因的调控改变。全球概况显示,VEPH1表达升高抑制了TGF-β诱导的转录反应。通过对多种细胞系中的报告基因测定,证实了对所选TGF-β靶基因的抑制作用。我们进一步证明,VEPH1与TGF-β受体I(TβRI)相互作用,并抑制活化的Sma和Mad相关蛋白2(SMAD2)的核积累。我们确定了两个TβRI相互作用区域(TIRs)对TGF-β信号相反的影响。与全长VEPH1类似,位于N末端的TIR1抑制规范的TGF-β信号传导并促进SMAD2在TβRI处的保留。相反,位于包围PH结构域的C端区域的TIR2减少了SMAD2在TβRI处的保留并增强了TGF-β信号传导。我们的研究表明,VEPH1通过阻止活化的SMAD2从TβRI释放来抑制TGF-β信号传导,并可能在发育,癌症起始或进展过程中调节TGF-β信号传导。

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