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首页> 外文期刊>Oncogene >Novel role of Engrailed 1 as a prosurvival transcription factor in basal-like breast cancer and engineering of interference peptides block its oncogenic function
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Novel role of Engrailed 1 as a prosurvival transcription factor in basal-like breast cancer and engineering of interference peptides block its oncogenic function

机译:Engrailed 1在基底样乳腺癌中作为生存转录因子的新作用以及干扰肽的工程化可阻断其致癌功能

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摘要

Basal-like breast tumors are aggressive cancers associated with high proliferation and metastasis. Chemotherapy is currently the only treatment option; however, resistance often occurs resulting in recurrence and patient death. Some extremely aggressive cancers are also associated with hypoxia, inflammation and high leukocyte infiltration. Herein, we discovered that the neural-specific transcription factor, Engrailed 1 (EN1), is exclusively overexpressed in these tumors. Short hairpin RNA (shRNA)-mediated knockdown of EN1 triggered potent and selective cell death. In contrast, ectopic overexpression of EN1 in normal cells activated survival pathways and conferred resistance to chemotherapeutic agents. Exogenous expression of EN1 cDNA reprogrammed the breast epithelial cells toward a long-lived, neural-like phenotype displaying dopaminergic markers. Gene expression microarrays demonstrated that the EN1 cDNA altered transcription of a high number of inflammatory molecules, notably chemokines and chemokine receptors, which could mediate prosurvival pathways. To block EN1 function, we engineered synthetic interference peptides (iPeps) comprising the EN1-specific sequences that mediate essential protein-protein interactions necessary for EN1 function and an N-terminal cell-penetrating peptideuclear localization sequence. These EN1-iPeps rapidly mediated a strong apoptotic response in tumor cells overexpressing EN1, with no toxicity to normal or non EN1-expressing cells. Delivery of EN1-iPeps into basal-like cancer cells significantly decreased the fifty percent inhibitory concentrations (IC50) of chemotherapeutic drugs routinely used to treat breast cancer. Lastly, matrix-assisted laser desorption/ionization-time of flight mass spectrometry and immunoprecipitation assays demonstrated that EN1-iPeps captured targets involved in transcriptional and post-transcriptional regulation. Importantly, the EN1-iPeps bound the glutamyl-prolyl tRNA synthetase (EPRS) target, which has been associated with the transcript-specific translational control of inflammatory proteins and activation of amino-acid stress pathways. This work unveils EN1 as an activator of intrinsic inflammatory pathways associated with prosurvival in basal-like breast cancer. We further build upon these results and describe the engineering of iPeps targeting EN1 (EN1-iPeps) as a novel and selective therapeutic strategy to combat these lethal forms of breast cancer.
机译:基底样乳腺肿瘤是与高增殖和转移相关的侵袭性癌症。目前,化学疗法是唯一的治疗选择。但是,抗药性经常发生,导致复发和患者死亡。一些极具侵略性的癌症也与缺氧,炎症和高白细胞浸润有关。在这里,我们发现神经特异性转录因子Engrailed 1(EN1)在这些肿瘤中完全过表达。短发夹RNA(shRNA)介导的EN1敲低触发了有效的和选择性的细胞死亡。相反,EN1在正常细胞中的异位表达激活了生存途径,并赋予了对化学治疗药物的抗性。 EN1 cDNA的外源表达将乳腺上皮细胞重编程为显示多巴胺能标记的长寿的神经样表型。基因表达微阵列表明,EN1 cDNA改变了许多炎症分子的转录,尤其是趋化因子和趋化因子受体,它们可以介导生存途径。为了阻断EN1的功能,我们设计了包含EN1特异性序列的合成干扰肽(iPeps),这些序列介导了EN1功能所需的必需蛋白质-蛋白质相互作用以及N端穿透细胞的肽/核定位序列。这些EN1-iPeps在过表达EN1的肿瘤细胞中迅速介导了强烈的凋亡反应,而对正常或不表达EN1的细胞没有毒性。将EN1-iPeps传递至基底样癌细胞中,可显着降低常规用于治疗乳腺癌的化学治疗药物的抑制浓度(IC50)的百分之五十。最后,基质辅助激光解吸/电离飞行时间质谱和免疫沉淀分析表明,EN1-iPeps捕获了参与转录和转录后调控的靶标。重要的是,EN1-iPeps结合了谷氨酰脯氨酰tRNA合成酶(EPRS)靶标,该靶标与炎症蛋白的转录本特异性翻译控制和氨基酸应激途径的激活有关。这项工作揭示了EN1作为与基底样乳腺癌的生存相关的内在炎症途径的激活剂。我们进一步基于这些结果,并描述针对EN1(EN1-iPeps)的iPeps的工程设计,作为对抗这些致命形式的乳腺癌的新型选择性治疗策略。

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