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Notch信号通过依赖IKKα的非经典途径调节三阴性乳腺癌细胞中的线粒体代谢和NF-κB活性。

Notch Signaling Regulates Mitochondrial Metabolism and NF-κB Activity in Triple-Negative Breast Cancer Cells via IKKα-Dependent Non-canonical Pathways.

作者信息

Hossain Fokhrul, Sorrentino Claudia, Ucar Deniz A, Peng Yin, Matossian Margarite, Wyczechowska Dorota, Crabtree Judy, Zabaleta Jovanny, Morello Silvana, Del Valle Luis, Burow Matthew, Collins-Burow Bridgette, Pannuti Antonio, Minter Lisa M, Golde Todd E, Osborne Barbara A, Miele Lucio

机构信息

Louisiana State University Health Sciences Center, Stanley S. Scott Cancer Center, New Orleans, LA, United States.

Department of Genetics, Louisiana State University Health Sciences Center, New Orleans, LA, United States.

出版信息

Front Oncol. 2018 Dec 4;8:575. doi: 10.3389/fonc.2018.00575. eCollection 2018.

Abstract

Triple negative breast cancer (TNBC) patients have high risk of recurrence and metastasis, and current treatment options remain limited. Cancer stem-like cells (CSCs) have been linked to cancer initiation, progression and chemotherapy resistance. Notch signaling is a key pathway regulating TNBC CSC survival. Treatment of TNBC with PI3K or mTORC1/2 inhibitors results in drug-resistant, Notch-dependent CSC. However, downstream mechanisms and potentially druggable Notch effectors in TNBC CSCs are largely unknown. We studied the role of the AKT pathway and mitochondrial metabolism downstream of Notch signaling in TNBC CSC from cell lines representative of different TNBC molecular subtypes as well as a novel patient-derived model. We demonstrate that exposure of TNBC cells to recombinant Notch ligand Jagged1 leads to rapid AKT phosphorylation in a Notch1-dependent but RBP-Jκ independent fashion. This requires mTOR and IKKα. Jagged1 also stimulates mitochondrial respiration and fermentation in an AKT- and IKK-dependent fashion. Notch1 co-localizes with mitochondria in TNBC cells. Pharmacological inhibition of Notch cleavage by gamma secretase inhibitor PF-03084014 in combination with AKT inhibitor MK-2206 or IKK-targeted NF-κB inhibitor Bay11-7082 blocks secondary mammosphere formation from sorted CD90 or CD44CD24 (CSCs) cells. A TNBC patient-derived model gave comparable results. Besides mitochondrial oxidative metabolism, Jagged1 also triggers nuclear, NF-κB-dependent transcription of anti-apoptotic gene cIAP-2. This requires recruitment of Notch1, IKKα and NF-κB to the cIAP-2 promoter. Our observations support a model where Jagged1 triggers IKKα-dependent, mitochondrial and nuclear Notch1 signals that stimulate AKT phosphorylation, oxidative metabolism and transcription of survival genes in PTEN wild-type TNBC cells. These data suggest that combination treatments targeting the intersection of the Notch, AKT and NF-κB pathways have potential therapeutic applications against CSCs in TNBC cases with Notch1 and wild-type PTEN expression.

摘要

三阴性乳腺癌(TNBC)患者复发和转移风险高,目前的治疗选择仍然有限。癌症干细胞样细胞(CSCs)与癌症的发生、发展及化疗耐药相关。Notch信号通路是调节TNBC CSC存活的关键途径。用PI3K或mTORC1/2抑制剂治疗TNBC会产生耐药的、Notch依赖性CSC。然而,TNBC CSCs中Notch信号下游的机制以及潜在的可药物靶向的Notch效应器在很大程度上尚不清楚。我们研究了Notch信号下游的AKT通路和线粒体代谢在代表不同TNBC分子亚型的细胞系以及一种新的患者来源模型的TNBC CSC中的作用。我们证明,将TNBC细胞暴露于重组Notch配体Jagged1会以Notch1依赖性但RBP-Jκ非依赖性方式导致AKT快速磷酸化。这需要mTOR和IKKα。Jagged1还以AKT和IKK依赖性方式刺激线粒体呼吸和发酵。Notch1在TNBC细胞中与线粒体共定位。γ-分泌酶抑制剂PF-03084014联合AKT抑制剂MK-2206或靶向IKK的NF-κB抑制剂Bay11-7082对Notch切割的药理学抑制可阻断分选的CD90或CD44CD24(CSCs)细胞形成次级乳腺球。一个TNBC患者来源模型给出了类似的结果。除了线粒体氧化代谢外,Jagged1还触发抗凋亡基因cIAP-2的核内、NF-κB依赖性转录。这需要将Notch1、IKKα和NF-κB募集到cIAP-2启动子。我们的观察结果支持这样一种模型:Jagged1触发IKKα依赖性的线粒体和核Notch1信号,刺激PTEN野生型TNBC细胞中的AKT磷酸化、氧化代谢和存活基因转录。这些数据表明,针对Notch、AKT和NF-κB通路交叉点的联合治疗在Notch1和野生型PTEN表达的TNBC病例中对CSCs具有潜在的治疗应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad3b/6289043/2280e17dc4aa/fonc-08-00575-g0001.jpg

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