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27-羟基胆固醇损害质膜脂筏信号传导,前列腺癌细胞中IL6-JAK-STAT3信号传导的抑制证明了这一点。

27-Hydroxycholesterol Impairs Plasma Membrane Lipid Raft Signaling as Evidenced by Inhibition of IL6-JAK-STAT3 Signaling in Prostate Cancer Cells.

作者信息

Dambal Shweta, Alfaqih Mahmoud, Sanders Sergio, Maravilla Erick, Ramirez-Torres Adela, Galvan Gloria C, Reis-Sobreiro Mariana, Rotinen Mirja, Driver Lucy M, Behrove Matthew S, Talisman Tijana Jovanovic, Yoon Junhee, You Sungyong, Turkson James, Chi Jen-Tsan, Freeman Michael R, Macias Everardo, Freedland Stephen J

机构信息

Department of Pathology, Duke University School of Medicine, Durham, North Carolina.

Jordan University of Science and Technology, Irbid, Jordan.

出版信息

Mol Cancer Res. 2020 May;18(5):671-684. doi: 10.1158/1541-7786.MCR-19-0974. Epub 2020 Feb 4.

Abstract

We recently reported that restoring the CYP27A1-27hydroxycholesterol axis had antitumor properties. Thus, we sought to determine the mechanism by which 27HC exerts its anti-prostate cancer effects. As cholesterol is a major component of membrane microdomains known as lipid rafts, which localize receptors and facilitate cellular signaling, we hypothesized 27HC would impair lipid rafts, using the IL6-JAK-STAT3 axis as a model given its prominent role in prostate cancer. As revealed by single molecule imaging of DU145 prostate cancer cells, 27HC treatment significantly reduced detected cholesterol density on the plasma membranes. Further, 27HC treatment of constitutively active STAT3 DU145 prostate cancer cells reduced STAT3 activation and slowed tumor growth and . 27HC also blocked IL6-mediated STAT3 phosphorylation in nonconstitutively active STAT3 cells. Mechanistically, 27HC reduced STAT3 homodimerization, nuclear translocation, and decreased STAT3 DNA occupancy at target gene promoters. Combined treatment with 27HC and STAT3 targeting molecules had additive and synergistic effects on proliferation and migration, respectively. Hallmark IL6-JAK-STAT gene signatures positively correlated with CYP27A1 gene expression in a large set of human metastatic castrate-resistant prostate cancers and in an aggressive prostate cancer subtype. This suggests STAT3 activation may be a resistance mechanism for aggressive prostate cancers that retain CYP27A1 expression. In summary, our study establishes a key mechanism by which 27HC inhibits prostate cancer by disrupting lipid rafts and blocking STAT3 activation. IMPLICATIONS: Collectively, these data show that modulation of intracellular cholesterol by 27HC can inhibit IL6-JAK-STAT signaling and may synergize with STAT3-targeted compounds.

摘要

我们最近报道,恢复CYP27A1-27羟胆固醇轴具有抗肿瘤特性。因此,我们试图确定27HC发挥其抗前列腺癌作用的机制。由于胆固醇是称为脂筏的膜微区的主要成分,脂筏可定位受体并促进细胞信号传导,我们假设27HC会损害脂筏,以IL6-JAK-STAT3轴为模型,因为其在前列腺癌中起重要作用。如DU145前列腺癌细胞的单分子成像所示,27HC处理显著降低了质膜上检测到的胆固醇密度。此外,用27HC处理组成型活性STAT3的DU145前列腺癌细胞可降低STAT3激活并减缓肿瘤生长。27HC还可阻断非组成型活性STAT3细胞中IL6介导的STAT3磷酸化。从机制上讲,27HC减少了STAT3同二聚体化、核转位,并降低了STAT3在靶基因启动子处的DNA占有率。27HC与靶向STAT3的分子联合处理分别对增殖和迁移具有相加和协同作用。在一大组人类转移性去势抵抗性前列腺癌和侵袭性前列腺癌亚型中,标志性的IL6-JAK-STAT基因特征与CYP27A1基因表达呈正相关。这表明STAT3激活可能是保留CYP27A1表达的侵袭性前列腺癌的一种耐药机制。总之,我们的研究确立了27HC通过破坏脂筏和阻断STAT3激活来抑制前列腺癌的关键机制。意义:总体而言,这些数据表明通过27HC调节细胞内胆固醇可抑制IL6-JAK-STAT信号传导,并可能与靶向STAT3的化合物协同作用。

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