Shuyan Zhou, Yi Zhang, Julie Belmar, Chunyan Hou, Yaqin Zhang, Changmin Peng, Yunxiao Meng, Zhuqing Li, Muhammad Jameel Mughal, Yanjun Gao, Edward Seto, Min Shen, Matthew D Hall, Junfeng Ma, Cynthia X Ma, Shunqiang Li, Wenge Zhu
{"title":"o - glcn酰化诱导的RUNX1稳定促进pdgf - bb介导的乳腺癌对CDK4/6抑制剂的抗性","authors":"Shuyan Zhou, Yi Zhang, Julie Belmar, Chunyan Hou, Yaqin Zhang, Changmin Peng, Yunxiao Meng, Zhuqing Li, Muhammad Jameel Mughal, Yanjun Gao, Edward Seto, Min Shen, Matthew D Hall, Junfeng Ma, Cynthia X Ma, Shunqiang Li, Wenge Zhu","doi":"10.1158/0008-5472.CAN-24-2492","DOIUrl":null,"url":null,"abstract":"<p><p>Cyclin-dependent kinases 4 and 6 (CDK4/6) are crucial in regulating cell-cycle progression and cancer development. Targeting CDK4/6 has shown considerable promise in treating various cancers, including breast cancer. Despite significant therapeutic efficacy, resistance to CDK4/6 inhibitors (CDK4/6i), such as palbociclib, remains a substantial hurdle in clinical practice. Using a coculture system, cytokine array, and quantitative high-throughput combinatorial screening, we discovered a mechanism by which the Runt-related transcription factor (RUNX) 1-platelet-derived growth factor (PDGF)-BB axis regulates palbociclib resistance in breast cancer cells. Specifically, RUNX1 functioned as a transcription factor to drive expression of PDGFB, leading to resistance to palbociclib by enhancing the Akt pathway and suppressing senescence. Furthermore, in resistant cells, RUNX1 was O-GlcNAcylated at serine 252 by O-GlcNAc transferase, resulting in the stabilization of RUNX1 by preventing ubiquitin-mediated degradation. Inhibition of the RUNX1-PDGF-BB axis by specific inhibitors overcame palbociclib resistance both in vitro and in vivo. Notably, the RUNX1-PDGF-BB axis was upregulated in resistant patient-derived xenograft lines and in patients with breast cancer following treatment with CDK4/6i. These findings not only unveil O-GlcNAcylation-mediated activation of a RUNX1-PDGF-BB pathway as a driver of palbociclib resistance but also provide clinical evidence supporting the repurposing of FDA-approved PDGFR inhibitors as a therapeutic strategy to treat patients with CDK4/6i-resistant breast cancer. Significance: RUNX1-PDGF-BB signaling drives resistance to CDK4/6 inhibition in breast cancer, providing the foundation to develop approaches to target the RUNX1-PDGF-BB axis to overcome CDK4/6 inhibitor resistance in breast cancer patients.</p>","PeriodicalId":9441,"journal":{"name":"Cancer research","volume":" ","pages":"1708-1724"},"PeriodicalIF":12.5000,"publicationDate":"2025-05-02","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Stabilization of RUNX1 Induced by O-GlcNAcylation Promotes PDGF-BB-Mediated Resistance to CDK4/6 Inhibitors in Breast Cancer.\",\"authors\":\"Shuyan Zhou, Yi Zhang, Julie Belmar, Chunyan Hou, Yaqin Zhang, Changmin Peng, Yunxiao Meng, Zhuqing Li, Muhammad Jameel Mughal, Yanjun Gao, Edward Seto, Min Shen, Matthew D Hall, Junfeng Ma, Cynthia X Ma, Shunqiang Li, Wenge Zhu\",\"doi\":\"10.1158/0008-5472.CAN-24-2492\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Cyclin-dependent kinases 4 and 6 (CDK4/6) are crucial in regulating cell-cycle progression and cancer development. Targeting CDK4/6 has shown considerable promise in treating various cancers, including breast cancer. Despite significant therapeutic efficacy, resistance to CDK4/6 inhibitors (CDK4/6i), such as palbociclib, remains a substantial hurdle in clinical practice. Using a coculture system, cytokine array, and quantitative high-throughput combinatorial screening, we discovered a mechanism by which the Runt-related transcription factor (RUNX) 1-platelet-derived growth factor (PDGF)-BB axis regulates palbociclib resistance in breast cancer cells. Specifically, RUNX1 functioned as a transcription factor to drive expression of PDGFB, leading to resistance to palbociclib by enhancing the Akt pathway and suppressing senescence. Furthermore, in resistant cells, RUNX1 was O-GlcNAcylated at serine 252 by O-GlcNAc transferase, resulting in the stabilization of RUNX1 by preventing ubiquitin-mediated degradation. Inhibition of the RUNX1-PDGF-BB axis by specific inhibitors overcame palbociclib resistance both in vitro and in vivo. Notably, the RUNX1-PDGF-BB axis was upregulated in resistant patient-derived xenograft lines and in patients with breast cancer following treatment with CDK4/6i. These findings not only unveil O-GlcNAcylation-mediated activation of a RUNX1-PDGF-BB pathway as a driver of palbociclib resistance but also provide clinical evidence supporting the repurposing of FDA-approved PDGFR inhibitors as a therapeutic strategy to treat patients with CDK4/6i-resistant breast cancer. 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引用次数: 0
摘要
细胞周期蛋白依赖性激酶4和6 (CDK4/6)在调节细胞周期进程和癌症发展中起着至关重要的作用。靶向CDK4/6在治疗包括乳腺癌在内的各种癌症方面显示出相当大的希望。尽管有显著的治疗效果,但对CDK4/6抑制剂(CDK4/6i)(如帕博西尼)的耐药性仍然是临床实践中的一个重大障碍。通过共培养系统、细胞因子阵列和定量高通量组合筛选(qHTCS),我们发现了RUNX1-PDGF-BB轴调控乳腺癌细胞帕博西尼耐药的机制。具体来说,RUNX1作为转录因子驱动PDGF-BB的表达,通过增强Akt通路和抑制衰老,导致对palbociclib的耐药。此外,在耐药细胞中,RUNX1在丝氨酸252 (S252)处被OGT o - glcn酰化,从而通过阻止泛素介导的降解来稳定RUNX1。特异性抑制剂对RUNX1-PDGF-BB轴的抑制克服了帕博西尼在体外和体内的耐药性。值得注意的是,RUNX1-PDGF-BB轴在耐药患者来源的异种移植物(PDX)系和接受CDK4/6i治疗的乳腺癌患者中上调。这些发现不仅揭示了o - glcn酰化介导的RUNX1-PDGF-BB通路激活是帕博西尼耐药的驱动因素,而且还提供了临床证据,支持fda批准的PDGFR抑制剂作为治疗cdk4 /6i耐药乳腺癌患者的治疗策略。
Stabilization of RUNX1 Induced by O-GlcNAcylation Promotes PDGF-BB-Mediated Resistance to CDK4/6 Inhibitors in Breast Cancer.
Cyclin-dependent kinases 4 and 6 (CDK4/6) are crucial in regulating cell-cycle progression and cancer development. Targeting CDK4/6 has shown considerable promise in treating various cancers, including breast cancer. Despite significant therapeutic efficacy, resistance to CDK4/6 inhibitors (CDK4/6i), such as palbociclib, remains a substantial hurdle in clinical practice. Using a coculture system, cytokine array, and quantitative high-throughput combinatorial screening, we discovered a mechanism by which the Runt-related transcription factor (RUNX) 1-platelet-derived growth factor (PDGF)-BB axis regulates palbociclib resistance in breast cancer cells. Specifically, RUNX1 functioned as a transcription factor to drive expression of PDGFB, leading to resistance to palbociclib by enhancing the Akt pathway and suppressing senescence. Furthermore, in resistant cells, RUNX1 was O-GlcNAcylated at serine 252 by O-GlcNAc transferase, resulting in the stabilization of RUNX1 by preventing ubiquitin-mediated degradation. Inhibition of the RUNX1-PDGF-BB axis by specific inhibitors overcame palbociclib resistance both in vitro and in vivo. Notably, the RUNX1-PDGF-BB axis was upregulated in resistant patient-derived xenograft lines and in patients with breast cancer following treatment with CDK4/6i. These findings not only unveil O-GlcNAcylation-mediated activation of a RUNX1-PDGF-BB pathway as a driver of palbociclib resistance but also provide clinical evidence supporting the repurposing of FDA-approved PDGFR inhibitors as a therapeutic strategy to treat patients with CDK4/6i-resistant breast cancer. Significance: RUNX1-PDGF-BB signaling drives resistance to CDK4/6 inhibition in breast cancer, providing the foundation to develop approaches to target the RUNX1-PDGF-BB axis to overcome CDK4/6 inhibitor resistance in breast cancer patients.
期刊介绍:
Cancer Research, published by the American Association for Cancer Research (AACR), is a journal that focuses on impactful original studies, reviews, and opinion pieces relevant to the broad cancer research community. Manuscripts that present conceptual or technological advances leading to insights into cancer biology are particularly sought after. The journal also places emphasis on convergence science, which involves bridging multiple distinct areas of cancer research.
With primary subsections including Cancer Biology, Cancer Immunology, Cancer Metabolism and Molecular Mechanisms, Translational Cancer Biology, Cancer Landscapes, and Convergence Science, Cancer Research has a comprehensive scope. It is published twice a month and has one volume per year, with a print ISSN of 0008-5472 and an online ISSN of 1538-7445.
Cancer Research is abstracted and/or indexed in various databases and platforms, including BIOSIS Previews (R) Database, MEDLINE, Current Contents/Life Sciences, Current Contents/Clinical Medicine, Science Citation Index, Scopus, and Web of Science.