首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Real-time study of E-cadherin and membrane dynamics in living animals: implications for disease modeling and drug development.
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Real-time study of E-cadherin and membrane dynamics in living animals: implications for disease modeling and drug development.

机译:活体动物中钙粘蛋白和膜动力学的实时研究:对疾病建模和药物开发的影响。

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摘要

The ability of tumor cells to invade and metastasize requires deregulation of interactions with adjacent cells and the extracellular matrix. A major challenge of cancer biology is to observe the dynamics of the proteins involved in this process in their functional and physiologic context. Here, for the first time, we have used photobleaching and photoactivation to compare the mobility of cell adhesion and plasma membrane probes in vitro and in tumors grown in mice (in vivo). We find differences between in vitro and in vivo recovery dynamics of two key molecules, the tumor suppressor E-cadherin and the membrane-targeting sequence of H-Ras. Our data show that E-cadherin dynamics are significantly faster in vivo compared with cultured cells, that the ratio of E-cadherin stabilized in cell-cell junctions is significantly higher in vivo, and that E-cadherin mobility correlates with cell migration. Moreover, quantitative imaging has allowed us to assess the effects of therapeutic intervention on E-cadherin dynamics using dasatinib, a clinically approved Src inhibitor, and show clear differences in the efficacy of drug treatment in vivo. Our results show for the first time the utility of photobleaching and photoactivation in the analysis of dynamic biomarkers in living animals. Furthermore, this work highlights critical differences in molecular dynamics in vitro and in vivo, which have important implications for the use of cultured disease models as surrogates for living tissue.
机译:肿瘤细胞侵袭和转移的能力要求放松与相邻细胞和细胞外基质的相互作用。癌症生物学的主要挑战是在其功能和生理背景下观察参与此过程的蛋白质的动力学。在这里,我们第一次使用光漂白和光活化来比较细胞粘附和质膜探针在体外以及在小鼠体内生长的肿瘤(体内)的迁移率。我们发现两个关键分子,抑癌药物E-钙黏着蛋白和H-Ras的膜靶向序列在体外和体内恢复动力学之间的差异。我们的数据显示,与培养细胞相比,E-钙粘蛋白的动力学在体内显着更快,在细胞-细胞连接处稳定的E-钙粘蛋白的比例在体内显着更高,并且E-钙粘蛋白的迁移率与细胞迁移相关。此外,定量成像使我们能够使用临床批准的Src抑制剂dasatinib评估治疗干预对E-cadherin动力学的影响,并显示出体内药物治疗功效的明显差异。我们的结果首次显示了光漂白和光活化在活体动物动态生物标志物分析中的实用性。此外,这项工作突出了体外和体内分子动力学的关键差异,这对于使用培养的疾病模型作为活体组织的替代物具有重要意义。

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