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In vivo hematopoietic Myc activation directs a transcriptional signature in endothelial cells within the bone marrow microenvironment

机译:体内造血Myc激活指导骨髓微环境内内皮细胞的转录签名

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摘要

Cancer pathogenesis involves tumor-intrinsic genomic aberrations and tumor-cell extrinsic mechanisms such as failure of immunosurveillance and structural and functional changes in the microenvironment. Using Myc as a model oncogene we established a conditional mouse bone marrow transduction/transplantation model where the conditional activation of the oncoprotein Myc expressed in the hematopoietic system could be assessed for influencing the host microenvironment. Constitutive ectopic expression of Myc resulted in rapid onset of a lethal myeloproliferative disorder with a median survival of 21 days. In contrast, brief 4-day Myc activation by means of the estrogen receptor (ER) agonist tamoxifen did not result in gross changes in the percentage/frequency of hematopoietic lineages or hematopoietic stem/progenitor cell (HSPC) subsets, nor did Myc activation significantly change the composition of the non-hematopoietic microenvironment defined by phenotyping for CD31, ALCAM, and Sca-1 expression. Transcriptome analysis of endothelial CD45- Ter119- cells from tamoxifen-treated MycER bone marrow graft recipients revealed a gene expression signature characterized by specific changes in the Rho subfamily pathway members, in the transcription-translation-machinery and in angiogenesis. In conclusion, intra-hematopoietic Myc activation results in significant transcriptome alterations that can be attributed to oncogene-induced signals from hematopoietic cells towards the microenvironment, e. g. endothelial cells, supporting the idea that even pre-leukemic HSPC highjack components of the niche which then could protect and support the cancer-initiating population.
机译:癌症发病机制涉及肿瘤内在的基因组畸变和肿瘤细胞外在机制,例如免疫监测的失败以及微环境中结构和功能的改变。使用Myc作为模型癌基因,我们建立了条件小鼠骨髓转导/移植模型,其中可以评估造血系统中表达的癌蛋白Myc的条件激活,以影响宿主微环境。 Myc的组成性异位表达导致致命性骨髓增生性疾病迅速发作,中位生存期为21天。相比之下,通过雌激素受体(ER)激动剂他莫昔芬短暂的4天Myc激活并未导致造血谱系或造血干/祖细胞(HSPC)子集的百分比/频率的总体变化,Myc激活也没有明显变化更改通过CD31,ALCAM和Sca-1表达的表型定义的非造血微环境的组成。来自他莫昔芬治疗的MycER骨髓移植受体的内皮CD45-Ter119-细胞的转录组分析显示,其基因表达特征在于Rho亚家族途径成员,转录-翻译机制和血管生成中的特定变化。总之,造血细胞内的Myc激活会导致显着的转录组改变,这可能归因于癌基因诱导的从造血细胞向微环境(例如微环境)诱导的信号。 G。内皮细胞,支持这样的想法,即利基市场的白血病前HSPC高杰克成分也可以保护和支持癌症起源人群。

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