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LncRNA HOTAIR enhances breast cancer radioresistance through facilitating HSPA1A expression via sequestering miR ‐449b‐5p

机译:LNCRNA Hotair通过促进HSPA1A表达通过螯理MiR -449B-5P来增强乳腺癌辐射敏感度

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BACKGROUND:Breast cancer (BRCA) is the leading cause of cancer-related death in women worldwide. Pre- and postoperative radiotherapy play a pivotal role in BRCA treatment but its efficacy remains limited and plagued by the emergence of radiation resistance, which aggravates patient prognosis. The long noncoding RNA (lncRNA)-implicated mechanisms underlying radiation resistance are rarely reported. The aim of this study was to determine whether lncRNA HOX transcript antisense RNA (HOTAIR) modulated the radiosensitivity of breast cancer through HSPA1A.METHODS:A Gammacell 40 Exactor was used for irradiation treatment. Bioinformatic tools and luciferase reporter assay were adopted to explore gene expression profile and demonstrate the interactions between lncRNA, miRNA and target mRNA 3'-untranslated region (3'-UTR). The expression levels of certain genes were determined by real-time PCR and western-blot analyses. in vitro and in vivo functional assays were conducted by cell viability and tumorigenicity assays.RESULTS:The levels of oncogenic lncRNA HOTAIR were positively correlated with the malignancy of BRCA but reversely correlated with the radiosensitivity of breast cancer cells. Moreover, the expression levels of HOTAIR were positively associated with those of heat shock protein family A (Hsp70) member 1A (HSPA1A) in clinical BRCA tissues and HOTAIR upregulated HSPA1A at the mRNA and protein levels in irradiated BRCA cells. Mechanistically, miR-449b-5p restrained HSPA1A expression through targeting the 3'-UTR of HSPA1A mRNA, whereas HOTAIR acted as a competing sponge to sequester miR-449b-5p and thereby relieved the miR-449b-5p-mediated HSPA1A repression. Functionally, HOTAIR conferred decreased radiosensitivity on BRCA cells, while miR-449b-5p overexpression or HSPA1A knockdown abrogated the HOTAIR-enhanced BRCA growth under the irradiation exposure both in vitro and in vivo.CONCLUSIONS:LncRNA HOTAIR facilitates the expression of HSPA1A by sequestering miR-449b-5p post-transcriptionally and thereby endows BRCA with radiation resistance.KEY POINTS:Therapeutically, HOTAIR and HSPA1A may be employed as potential targets for BRCA radiotherapy. Our findings shed new light into the mechanism by which lncRNAs modulate the radiosensitivity of tumors.? 2020 The Authors. Thoracic Cancer published by China Lung Oncology Group and John Wiley & Sons Australia, Ltd.
机译:背景:乳腺癌(BRCA)是全世界癌症相关死亡的主要原因。术后放疗在BRCA治疗中起作用枢轴作用,但其疗效仍然受到限制和抑制抗辐射抗性,这加剧了患者预后。很少报道辐射抗性下面的长度非划分RNA(LNCRNA) - 可递增的机制。本研究的目的是确定LNCRNA HOX转录物反义RNA(HOTAIR)是否通过HSPA1A来调节乳腺癌的放射敏感性:γ20尖锐物用于照射处理。采用生物信息工具和荧光素酶报告分析来探索基因表达谱,并证明LNCRNA,miRNA和靶mRNA 3'-未转换区域(3'-UTR)之间的相互作用。通过实时PCR和Western-Blot分析测定某些基因的表达水平。体外和体内功能测定通过细胞活力和肿瘤致瘤性测定进行。结果:致癌物质的水平与BRCA的恶性肿瘤呈正相关,但与乳腺癌细胞的放射敏感相反相关。此外,HotaIr的表达水平与临床BRCA组织中的热休克蛋白家族A(HSP70)构件1A(HSPA1A)呈正相关,并且在辐照的BRCA细胞中的mRNA和蛋白质水平处的Hotaper上调的Hspa1a。机械地,MIR-449B-5P通过靶向HSPA1A mRNA的3'-UTR来抑制HSPA1a表达,而HotaP作为竞争海绵,以解除miR-449b-5p,从而减轻miR-449b-5p介导的hspa1a抑制。在功能上,Hotair赋予BRCA细胞对辐射敏感性降低,而MiR-449B-5P过表达或HSPA1A敲除,在体外和体内敲击辐照暴露下的热分批增强BRCA生长转录后-449B-5P,从而赋予BRCA,具有辐射抗性。接点:治疗性,HOTAIR和HSPA1A可用作BRCA放射疗法的潜在靶标。我们的研究结果将新的光线流入LNCRNA调节肿瘤放射敏感性的机制。 2020作者。中国肺部肿瘤集团和约翰瓦里和儿子澳大利亚发表的胸癌

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