Mugisha Samson, Di Xiaotang, Wen Doudou, Zhao Yuetao, Wu Xusheng, Zhang Shubing, Jiang Hao
Department of Cell Biology, School of Life Sciences, Central South University, Changsha 410013, China.
Department of Biochemistry and Molecular Biology, School of Life Sciences, Central South University, Changsha 410013, China.
Cancers (Basel). 2022 Jun 22;14(13):3057. doi: 10.3390/cancers14133057.
Triple-negative breast cancer (TNBC) accounts for approximately 20% of all breast carcinomas and has the worst prognosis of all breast cancer subtypes due to the lack of an effective target. Therefore, understanding the molecular mechanism underpinning TNBC progression could explore a new target for therapy. While the Notch pathway is critical in the development process, its dysregulation leads to TNBC initiation. Previously, we found that manic fringe (MFNG) activates the Notch signaling and induces breast cancer progression. However, the underlying molecular mechanism of MFNG upstream remains unknown. In this study, we explore the regulatory mechanisms of MFNG in TNBC. We show that the increased expression of MFNG in TNBC is associated with poor clinical prognosis and significantly promotes cell growth and migration, as well as Notch signaling activation. The mechanistic studies reveal that MFNG is a direct target of GATA3 and miR205-5p and demonstrate that GATA3 and miR205-5p overexpression attenuate MFNG oncogenic effects, while GATA3 knockdown mimics MFNG phenotype to promote TNBC progression. Moreover, we illustrate that GATA3 is required for miR205-5p activation to inhibit MFNG transcription by binding to the 3' UTR region of its mRNA, which forms the GATA3/miR205-5p/MFNG feed-forward loop. Additionally, our in vivo data show that the miR205-5p mimic combined with polyetherimide-black phosphorus (PEI-BP) nanoparticle remarkably inhibits the growth of TNBC-derived tumors which lack GATA3 expression. Collectively, our study uncovers a novel GATA3/miR205-5p/MFNG feed-forward loop as a pathway that could be a potential therapeutic target for TNBC.
三阴性乳腺癌(TNBC)约占所有乳腺癌的20%,由于缺乏有效的治疗靶点,其预后是所有乳腺癌亚型中最差的。因此,了解TNBC进展的分子机制有助于探索新的治疗靶点。虽然Notch信号通路在发育过程中至关重要,但其失调会导致TNBC的发生。此前,我们发现躁狂边缘蛋白(MFNG)激活Notch信号并促进乳腺癌进展。然而,MFNG上游的潜在分子机制尚不清楚。在本研究中,我们探索了MFNG在TNBC中的调控机制。我们发现TNBC中MFNG表达的增加与不良临床预后相关,并显著促进细胞生长和迁移以及Notch信号激活。机制研究表明,MFNG是GATA3和miR205-5p的直接靶点,并证明GATA3和miR205-5p的过表达减弱了MFNG的致癌作用,而GATA3的敲低模拟了MFNG的表型以促进TNBC进展。此外,我们还表明,GATA3是miR205-5p激活所必需的,它通过结合MFNG mRNA的3'UTR区域来抑制MFNG转录,从而形成GATA3/miR205-5p/MFNG前馈环。此外,我们的体内数据表明,miR205-5p模拟物与聚醚酰亚胺-黑磷(PEI-BP)纳米颗粒联合使用可显著抑制缺乏GATA3表达的TNBC衍生肿瘤的生长。总的来说,我们的研究揭示了一种新的GATA3/miR205-5p/MFNG前馈环,它可能是TNBC的潜在治疗靶点。