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E-Cadherin Dysfunction and Cancer
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作者 María Fernanda Izaguirre Carolina Daniela Galetto +1 位作者 Lautaro Baró Víctor Hugo Casco 《Journal of Biosciences and Medicines》 2019年第8期42-67,共26页
E-cadherin molecules are cell-cell molecular connectors, but also act attaching cell surface to the cytoskeleton through catenin’s and additional partner proteins. Its main function is to regulate cellular adhesion a... E-cadherin molecules are cell-cell molecular connectors, but also act attaching cell surface to the cytoskeleton through catenin’s and additional partner proteins. Its main function is to regulate cellular adhesion and motility, and therefore acts as an invasion suppressor system. Its role is crucial in the induction and maintenance of cell polarity and differentiation, and in the organization and maintenance of tissue architecture. Downregulation or loss of its function is associated with an invasive and aggressive phenotype in many types of human cancers. In alterations of animal development, E-cadherin dysfunction influence in premature lethality or epidermal barrier and immunity defects. However, new hypothesis over its promoter role in tissue invasion is on focus. In addition to its tumor suppressor role, E-cadherin is a guiding molecule in collective cell migration increasing the metastasis risk during in vivo tumorigenesis. This E-cadherin function explains the retention of the functional E-cadherin expression, and that the epithelial-mesenchymal transition (EMT) is not required for the metastasis occurrence. However, like a switch, in some tumoral environments E-cadherin post-translational modifications may cause cell cluster migration. Like in development, in certain in vivo tumoral contexts, E-cadherin apparently involves signaling rather than cell contact formation. In this report, we explore the possibility of a novel role of thyroid hormones (THs) in the signal via E-cadherin-catenins, this not only should be involved in development and homeostasis, but also in cancer susceptibility of gastrointestinal tract. 展开更多
关键词 Cell Adhesion MOLECULES complexes e-cadherin CANCER THYROID HORMONES
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力学刺激对人腺样囊性癌高低转移细胞株中E-cad/cat复合体的影响 被引量:2
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作者 何海波 唐休发 +2 位作者 李龙江 李良 华成舸 《华西口腔医学杂志》 CAS CSCD 北大核心 2007年第1期29-32,共4页
目的观察周期性双轴力学应变对人腺样囊性癌高转移细胞株ACC-M、低转移细胞株ACC-2中E-cad和α、β、-γcat的表达以及ACC细胞与细胞外基质(ECM)粘附的影响。方法采用成组设计,分别选取频率为每分钟3次的1 000、4 000μ应变对ACC-2、AC... 目的观察周期性双轴力学应变对人腺样囊性癌高转移细胞株ACC-M、低转移细胞株ACC-2中E-cad和α、β、-γcat的表达以及ACC细胞与细胞外基质(ECM)粘附的影响。方法采用成组设计,分别选取频率为每分钟3次的1 000、4 000μ应变对ACC-2、ACC-M细胞分别加载,每天定点加载1次,每组加载时间分别为每次1 h、3 h和6 h,共加载2次。第3天上午8点收获细胞;将未受力学刺激的细胞作为对照组,受力学刺激的细胞作为实验组。细胞在力学刺激后行E-cad和α、β、-γcat及细胞核双重免疫荧光染色,用激光共聚焦显微镜和图像分析软件进行定量和定位观察。用MTT法测定ACC细胞和ECM的粘附率。结果对照组除ACC-2细胞E-cad低于ACC-M细胞外,ACC-2细胞α、β、-γcat表达均高于ACC-M细胞;在力学刺激下,E-cad和α、β、-γcat的表达随时间而变化。对照组ACC-2细胞和ECM的粘附率高于ACC-M细胞,但在力学刺激后,与对照组比较,ACC细胞和ECM的粘附率随时间而变化。结论在力学刺激后,ACC-2、ACC-M细胞出现E-cad/cat复合体表达的改变,同时其和ECM的粘附率也发生了改变,显示力学刺激后细胞粘附发生变化在肿瘤转移中发挥重要作用。 展开更多
关键词 力学刺激 腺样囊性癌 细胞粘附 E—cad/cat复合体
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