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The small molecule phenamil is a modulator of adipocyte differentiation and PPARγ expression

机译:小分子苯那米尔是调节脂肪细胞分化和PPARγ表达的调节剂

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摘要

We previously described the use of a cell-based screening approach to identify small molecules that regulate adipocyte differentiation. Here we identify the amiloride derivative phenamil as an adipogenic compound. Phenamil acutely induces expression of the key transcription factor of adipogenesis, peroxisome proliferator-activated receptor γ (PPARγ) and, consequently, promotes the differentiation of multiple preadipocyte cell lines, including 3T3-L1 and F442A. Interestingly, the adipogenic action of phenamil is distinct from and additive with both PPARγ ligands and the previously identified adipogenic small molecule harmine. To identify signaling pathways mediating phenamil's effects, we performed transcriptional profiling of 3T3-F442A preadipocytes. ETS variant 4 (ETV4) was identified as a gene rapidly induced by phenamil but not by other adipogenic small molecules or PPARγ agonists. Transient expression of ETV4 in preadipocytes enhances the expression of PPARγ. Stable overexpression of ETV4 promotes expression of PPARγ and its downstream target genes and enhances morphological differentiation. Finally, knockdown of PPARγ expression by shRNA blocks the effects of phenamil on adipocyte differentiation and gene expression, but it does not block phenamil induction of ETV4, which suggests that ETV4 acts upstream of PPARγ in differentiation processes. These results identify a phenamil as new small molecule tool for the probing of adipocyte differentiation that acts, at least in part, through induction of ETV4 expression.
机译:我们先前描述了使用基于细胞的筛选方法来鉴定调节脂肪细胞分化的小分子。在这里,我们确定阿米洛利衍生物芬尼为脂肪形成化合物。苯丙胺可急性诱导脂肪形成的关键转录因子,过氧化物酶体增殖物激活受体γ(PPARγ)的表达,并因此促进多种前脂肪细胞系的分化,包括3T3-L1和F442A。有趣的是,苯那非的成脂作用与PPARγ配体和先前鉴定的成脂小分子harmine截然不同。为了确定介导芬尼的作用的信号通路,我们进行了3T3-F442A前脂肪细胞的转录分析。 ETS变体4(ETV4)被确定为苯甲酰胺快速诱导的基因,但未被其他成脂小分子或PPARγ激动剂快速诱导。 ETV4在前脂肪细胞中的瞬时表达增强了PPARγ的表达。 ETV4的稳定过表达促进PPARγ及其下游靶基因的表达,并增强形态分化。最后,通过shRNA敲低PPARγ表达可阻断芬尼对脂肪细胞分化和基因表达的影响,但不能阻止芬尼对ETV4的诱导,这表明ETV4在分化过程中在PPARγ的上游起作用。这些结果确定了苯非那非是用于探测脂肪细胞分化的新的小分子工具,其至少部分通过诱导ETV4表达起作用。

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