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首页> 外文期刊>The Journal of biological chemistry >Steroid Receptor Coactivator-3 Regulates Glucose Metabolism in Bladder Cancer Cells through Coactivation of Hypoxia Inducible Factor 1α
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Steroid Receptor Coactivator-3 Regulates Glucose Metabolism in Bladder Cancer Cells through Coactivation of Hypoxia Inducible Factor 1α

机译:类固醇受体共粘膜-3通过缺氧诱导因子1α的共同调节膀胱癌细胞中的葡萄糖代谢

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摘要

Cancer cell proliferation is a metabolically demanding process, requiring high glycolysis, which is known as “Warburg effect,” to support anabolic growth. Steroid receptor coactivator-3 (SRC-3), a steroid receptor coactivator, is overexpressed and/or amplified in multiple cancer types, including non-steroid targeted cancers, such as urinary bladder cancer (UBC). However, whether SRC-3 regulates the metabolic reprogramming for cancer cell growth is unknown. Here, we reported that overexpression of SRC-3 accelerated UBC cell growth, accompanied by the increased expression of genes involved in glycolysis. Knockdown of SRC-3 reduced the UBC cell glycolytic rate under hypoxia, decreased tumor growth in nude mice, with reduction of proliferating cell nuclear antigen and lactate dehydrogenase expression levels. We further revealed that SRC-3 could interact with hypoxia inducible factor 1α (HIF1α), which is a key transcription factor required for glycolysis, and coactivate its transcriptional activity. SRC-3 was recruited to the promoters of HIF1α-target genes, such as glut1 and pgk1. The positive correlation of expression levels between SRC-3 and Glut1 proteins was demonstrated in human UBC patient samples. Inhibition of glycolysis through targeting HK2 or LDHA decelerated SRC-3 overexpression-induced cell growth. In summary, overexpression of SRC-3 promoted glycolysis in bladder cancer cells through HIF1α to facilitate tumorigenesis, which may be an intriguing drug target for bladder cancer therapy.
机译:癌细胞增殖是一种代谢要求的过程,需要高糖酵解,称为“Warburg效应”,以支持合成代谢生长。类固醇受体共粘膜-3(SRC-3),一种类固醇受体共催胶剂,在多种癌症类型中过表达和/或扩增,包括非类固醇靶向癌症,如尿膀胱癌(UBC)。但是,SRC-3是否调节癌细胞生长的代谢重编程是未知的。在这里,我们报道了SRC-3加速UBC细胞生长的过度表达伴随着糖醇分解所涉及的基因的表达增加。 SRC-3敲低在缺氧下降低了UBC细胞甘露糖率,降低了裸鼠肿瘤生长,减少了增殖细胞核抗原和乳酸脱氢酶表达水平。我们进一步揭示了SRC-3可以与缺氧诱导因子1α(HIF1α)相互作用,这是糖酵解所需的关键转录因子,并共同共用其转录活性。将Src-3募集到HIF1α-靶基因的启动子,例如GLUT1和PGK1。在人UBC患者样品中证明了SRC-3和Glut1蛋白之间的表达水平的正相关性。通过靶向HK2或LDHA减速的SRC-3过表达诱导的细胞生长抑制糖酵解。总之,通过HIF1α通过HIF1α促进SRC-3在膀胱癌细胞中促进糖酵解,以促进肿瘤发生,这可能是膀胱癌治疗的有趣药物靶标。

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