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3D collagen architecture induces a conserved migratory and transcriptional response linked to vasculogenic mimicry

机译:3D胶原蛋白结构诱导与血管生成拟态有关的保守的迁移和转录反应

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摘要

The topographical organization of collagen within the tumor microenvironment has been implicated in modulating cancer cell migration and independently predicts progression to metastasis. Here, we show that collagen matrices with small pores and short fibers, but not Matrigel, trigger a conserved transcriptional response and subsequent motility switch in cancer cells resulting in the formation of multicellular network structures. The response is not mediated by hypoxia, matrix stiffness, or bulk matrix density, but rather by matrix architecture-induced β1-integrin upregulation. The transcriptional module associated with network formation is enriched for migration and vasculogenesis-associated genes that predict survival in patient data across nine distinct tumor types. Evidence of this gene module at the protein level is found in patient tumor slices displaying a vasculogenic mimicry (VM) phenotype. Our findings link a collagen-induced migration program to VM and suggest that this process may be broadly relevant to metastatic progression in solid human cancers.
机译:肿瘤微环境中胶原的地形组织与调节癌细胞迁移有关,并且独立地预测转移的进程。在这里,我们显示具有小孔和短纤维而不是Matrigel的胶原蛋白基质触发了保守的转录反应,随后在癌细胞中发生了动力转换,从而导致了多细胞网络结构的形成。该反应不是由缺氧,基质刚度或堆积基质密度介导的,而是由基质体系结构诱导的β1-整合素上调介导的。与网络形成相关的转录模块丰富了迁移和与血管生成相关的基因,这些基因可预测患者数据在九种不同肿瘤类型中的存活情况。在具有血管生成模拟(VM)表型的患者肿瘤切片中发现了该基因模块在蛋白质水平上的证据。我们的发现将胶原蛋白诱导的迁移程序与VM关联起来,表明该过程可能与实体人类癌症的转移进展广泛相关。

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