首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >HES1-mediated inhibition of Notchl signaling by a Gemini vitamin D analog leads to decreased CD44(+)/CD24(-/low) tumor-initiating subpopulation in basal-like breast cancer
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HES1-mediated inhibition of Notchl signaling by a Gemini vitamin D analog leads to decreased CD44(+)/CD24(-/low) tumor-initiating subpopulation in basal-like breast cancer

机译:HES1介导的双子座维生素D类似物对Notchl信号的抑制导致基底样乳腺癌中CD44(+)/ CD24(-/ low)肿瘤起始亚群的减少

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摘要

Tumor-initiating cells (also known as cancer stem cells) are the subpopulation of cells shown to be responsible for tumor initiation, maintenance and recurrence. In breast cancer, CD44(+)/CD24(-/low) cells were identified as tumor-initiating cells. We previously reported that a Gemini vitamin D analog, 1,25-dihydroxy-20R-21(3-hydroxy-3-deuteromethyl-4,4,4-trideuterobutyl)-23-yne-26,27-hexafluoro-cholecalciferol (BXL0124), reduced CD44(+)/CD24(-/low) cells in MCF10DCIS basal-like breast cancer cells. Since Notch has been identified as one of the key signaling pathways involved in breast cancer stem cells, the effect of BXL0124 on the Notch signaling pathway was investigated in breast cancer. The CD44(+)/CD24(-/low) subpopulation of MCF10DCIS cells showed elevated Notch1 signaling and increased cell proliferation compared to the CD44(+)/CD24(high) subpopulation. Treatment with the Gemini vitamin D analog BXL0124 decreased the level of activated Notch1 receptor. In addition, mRNA and protein levels of the Notch ligands, Jagged-1, Jagged-2 and DLL1, were significantly reduced by treatment with BXL0124, which was followed by repression of c-Myc, a key downstream target of Notch signaling. Interestingly, HES1, a known downstream target of Notch signaling, was rapidly induced by treatment with BXL0124. The inhibitory effect of BXL0124 on Notch signaling was reversed by knockdown of HES1. Overexpression of HES1 inhibited Notch1 signaling and reduced the CD44(+)/CD24(-/low) subpopulation, confirming a role of HES1 in Notch1 signaling. In conclusion, the Gemini vitamin D analog, BXL0124, represses the tumor-initiating subpopulation by HES1-mediated inhibition of Notch1 signaling. The present study demonstrates BXL0124 as a potent inhibitor of Notch signaling to target tumor-initiating cells in basal-like breast cancer.
机译:肿瘤起始细胞(也称为癌干细胞)是显示出负责肿瘤起始,维持和复发的细胞的亚群。在乳腺癌中,CD44(+)/ CD24(-/ low)细胞被鉴定为肿瘤起始细胞。我们之前曾报道过双子座维生素D类似物1,25-二羟基-20R-21(3-羟基-3-氘甲基-4,4,4-三氟叔丁基)-23-炔-26,27-六氟胆钙化醇(BXL0124 ),减少了MCF10DCIS基底样乳腺癌细胞中的CD44(+)/ CD24(-/ low)细胞。由于Notch已被确定为涉及乳腺癌干细胞的关键信号通路之一,因此在乳腺癌中研究了BXL0124对Notch信号通路的影响。与CD44(+)/ CD24(高)亚群相比,MCF10DCIS细胞的CD44(+)/ CD24(-/低)亚群显示出升高的Notch1信号传导和增加的细胞增殖。双子座维生素D类似物BXL0124的治疗降低了活化的Notch1受体的水平。此外,通过用BXL0124处理,Notch配体Jagged-1,Jagged-2和DLL1的mRNA和蛋白质水平显着降低,随后抑制了Notch信号的关键下游靶点c-Myc。有趣的是,HES1是Notch信号传导的已知下游靶标,可通过BXL0124处理快速诱导。敲低HES1逆转了BXL0124对Notch信号的抑制作用。 HES1的过表达抑制Notch1信号传导并减少CD44(+)/ CD24(-/ low)亚群,从而确认HES1在Notch1信号传导中的作用。总之,双子座维生素D类似物BXL0124通过HES1介导的Notch1信号传导抑制来抑制肿瘤起始亚群。本研究表明,BXL0124作为Notch信号的有效抑制剂,可靶向基底样乳腺癌中的肿瘤起始细胞。

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