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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Increased expression of a set of genes enriched in oxygen binding function discloses a predisposition of breast cancer bone metastases to generate metastasis spread in multiple organs
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Increased expression of a set of genes enriched in oxygen binding function discloses a predisposition of breast cancer bone metastases to generate metastasis spread in multiple organs

机译:一组富含氧结合功能的基因的表达增加,揭示了乳腺癌骨转移的易感性,从而产生了转移到多个器官的转移

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Bone is the preferential site of distant metastasis in breast carcinoma (BrCa). Patients with metastasis restricted to bone (BO) usually show a longer overall survival compared to patients who rapidly develop multiple metastases also involving liver and lung. Hence, molecular predisposition to generate bone and visceral metastases (BV) represents a clear indication of poor clinical outcome. We performed microarray analysis with two different chip platforms, Affymetrix and Agilent, on bone metastasis samples from BO and BV patients. The unsupervised hierarchical clustering of the resulting transcriptomes correlated with the clinical progression, segregating the BO from the BV profiles. Matching the twofold significantly regulated genes from Affymetrix and Agilent chips resulted in a 15-gene signature with 13 upregulated and two downregulated genes in BV versus BO bone metastasis samples. In order to validate the resulting signature, we isolated different MDA-MB-231 clonal subpopulations that metastasize only in the bone (MDA-BO) or in bone and visceral tissues (MDA-BV). Six of the signature genes were also significantly upregulated in MDA-BV compared to MDA-BO clones. A group of upregulated genes, including Hemoglobin B (HBB), were involved in oxygen metabolism, and in vitro functional analysis of HBB revealed that its expression in the MDA subpopulations was associated with a reduced production of hydrogen peroxide. Expression of HBB was detected in primary BrCa tissue but not in normal breast epithelial cells. Metastatic lymph nodes were frequently more positive for HBB compared to the corresponding primary tumors, whereas BO metastases had a lower expression than BV metastases, suggesting a positive correlation between HBB and ability of bone metastasis to rapidly spread to other organs. We propose that HBB, along with other genes involved in oxygen metabolism, confers a more aggressive metastatic phenotype in BrCa cells disseminated to bone.
机译:骨是乳腺癌(BrCa)远处转移的优先部位。与快速发展发生多发性转移(也涉及肝和肺)的患者相比,转移至骨骼(BO)的患者通常显示出更长的总生存期。因此,产生骨骼和内脏转移(BV)的分子易感性表明临床预后不良。我们用两个不同的芯片平台Affymetrix和Agilent对来自BO和BV患者的骨转移样品进行了微阵列分析。所得转录组的无监督分层聚类与临床进展相关,从而将BO与BV谱分开。匹配来自Affymetrix和安捷伦芯片的两个显着调节的基因,可在BV与BO骨转移样品中产生15个基因标记,其中13个上调基因和2个下调基因。为了验证产生的签名,我们分离了仅在骨(MDA-BO)或骨和内脏组织(MDA-BV)中转移的不同MDA-MB-231克隆亚群。与MDA-BO克隆相比,MDA-BV中的六个签名基因也显着上调。包括血红蛋白B(HBB)在内的一组上调基因参与了氧代谢,对HBB的体外功能分析表明,其在MDA亚群中的表达与过氧化氢的生成减少有关。在原发性BrCa组织中检测到HBB的表达,但在正常乳腺上皮细胞中未检测到。与相应的原发肿瘤相比,转移性淋巴结对HBB的阳性率更高,而BO转移的表达低于BV转移,提示HBB与骨转移迅速扩散至其他器官的能力之间呈正相关。我们建议,HBB与其他参与氧代谢的基因一起,在散布到骨骼的BrCa细胞中赋予更具侵略性的转移表型。

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