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AQP1-Driven Migration Is Independent of Other Known Adverse Factors but Requires a Hypoxic Undifferentiated Cell Profile in Neuroblastoma

机译:AQP1驱动的迁移与其他已知的不良因素无关但需要在神经母细胞瘤中缺氧未分化的细胞谱

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摘要

Neuroblastoma is a biologically very heterogeneous tumor with its clinical manifestation ranging from spontaneous regression to highly aggressive metastatic disease. Several adverse factors have been linked to oncogenesis, tumor progression and metastases of neuroblastoma including NMYC amplification, the neural adhesion molecule NCAM, as well as CXCR4 as a promoter of metastases. In this study, we investigate to what extent the expression of AQP1 in neuroblastoma correlates with changing cellular factors such as the hypoxic status, differentiation, expression of known adverse factors such as NMYC and NCAM, and CXCR4-related metastatic spread. Our results show that while AQP1 expression leads to an increased migratory behavior of neuroblastoma cells under hypoxic conditions, we find that hypoxia is associated with a reduction of NMYC in the same cells. A similar effect can be observed when using the tetracycline driven mechanism of SH-EP/Tet cells. When NMYC is not expressed, the expression of AQP1 is increased together with an increased expression of HIF-1α and HIF-2α. We furthermore show that when growing cells in different cell densities, they express AQP1, HIF-1α, HIF-2α, NMYC and NCAM to different degrees. AQP1 expression correlates with a hypoxic profile of these cells with increased HIF-1α and HIF-2α expression, as well as with NMYC and NCAM expression in two out of three neuroblastoma cell lines. When investigating cell properties of the cells that actually migrate, we find that the increased APQ1 expression in the migrated cells correlates with an increased NMYC and NCAM expression again in two out of three cell lines. Expression of the tumor cell homing marker CXCR4 varies between different tumor areas and between cell lines. While some migrated tumor cells highly express CXCR4, cells of other origin do not. In the initial phase of migration, we determined a dominant role of AQP1 expression of migrating cells in the scratch assay.
机译:神经母细胞瘤是一种生物学上非常异质的肿瘤,其临床表现从自发性回归到高度侵袭性转移性疾病。几种不良因子已与包括NMYC扩增的神经母细胞瘤的肿瘤进展和转移,神经粘附分子NCAM以及CXCR4作为转移的启动子。在这项研究中,我们调查AQP1在神经母细胞瘤中AQP1的表达如何与改变细胞因子,例如缺氧状态,分化,诸如NMYC和NCAM等缺血不良因子的表达,以及CXCR4相关转移扩散。我们的研究结果表明,虽然AQP1表达在缺氧条件下导致神经母细胞瘤细胞的迁徙行为增加,但发现缺氧与同一细胞中NMYC的减少相关。使用SH-EP / TET细胞的四环素驱动机制时可以观察到类似的效果。当不表达NMYC时,AQP1的表达式随着HIF-1α和HIF-2α的增加而增加。此外,我们表明,当在不同细胞密度中生长细胞时,将AQP1,HIF-1α,HIF-2α,NMYC和NCAM表达到不同程度。 AQP1表达与这些细胞的缺氧谱相关,具有增加的HIF-1α和HIF-2α表达,以及在三种神经母细胞瘤细胞系中的两个中的NMYC和NCAM表达。当研究实际迁移的细胞的细胞性质时,我们发现迁移细胞中的增加的APQ1表达与三种细胞系中的两个中再次与NMYC和NCAM表达增加相关。肿瘤细胞归巢标志物CXCR4的表达在不同的肿瘤区域和细胞系之间变化。虽然一些迁移的肿瘤细胞高度表达CXCR4,但其他起源的细胞并不是。在迁移的初始阶段,我们确定了AQP1在划痕测定中迁移细胞表达的显性作用。

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