人皮肤鳞状癌细胞COLO 16条件培养基处理后E-cadherin/catenin复合物内化及人乳腺癌细胞MCF-7/AZ的散射

T Boterberg, K M Vennekens, M Thienpont, M M Mareel, M E Bracke
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引用次数: 33

摘要

细胞因子和其他旁分泌或自分泌因子对侵袭抑制因子和信号转导E-cadherin/catenin复合物进行功能性调节。我们使用来自人鳞癌COLO 16细胞(CM COLO 16)的条件培养基作为这些因子的来源来调节人乳腺癌MCF-7细胞中的E-cadherin/catenin复合物。CM COLO 16能诱导MCF-7/AZ细胞在组织培养塑料基质上的散射,但不能诱导MCF-7/6细胞在组织培养塑料基质上的散射,并能降低MCF-7/AZ细胞在悬浮中的聚集。胰岛素样生长因子I抵消了这种聚集的减少。免疫细胞化学染色的共聚焦激光扫描显微镜显示E-cadherin, α -连环蛋白和β -连环蛋白的蜂窝状图案的丢失,以及这些元素的内化。细胞表面生物素化显示膜结合e-钙粘蛋白的减少。免疫沉淀和细胞分离表明复合物的组成保持不变。白细胞介素-1、白细胞介素-6、粒细胞-单核细胞集落刺激因子、干细胞因子、分散因子/肝细胞生长因子和转化生长因子- β分别添加到MCF-7/AZ细胞中,不能模拟CM COLO 16的作用。我们也没有发现证据表明80 kDa的E-cadherin细胞外片段与MCF-7/AZ细胞的散射有关。该片段存在于CM COLO 16中,但它也由MCF-7/AZ细胞本身产生,甚至在更高的水平上。我们的数据表明,旁分泌因子诱导的细胞质内化是e -钙粘蛋白/连环蛋白复合物的下调机制之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Internalization of the E-cadherin/catenin complex and scattering of human mammary carcinoma cells MCF-7/AZ after treatment with conditioned medium from human skin squamous carcinoma cells COLO 16.

Cytokines and other paracrine or autocrine factors functionally modulate the invasion-suppressor and signal-transducing E-cadherin/catenin complex. We have used conditioned medium from human squamous carcinoma COLO 16 cells (CM COLO 16) as a source of such factors to modulate the E-cadherin/catenin complex in human breast carcinoma MCF-7 cells. CM COLO 16 induces scattering of MCF-7/AZ, but not of MCF-7/6 cells on tissue culture plastic substratum, and reduces aggregation of MCF-7/AZ cells in suspension. Insulin-like growth factor I counteracts this reduction of aggregation. Confocal laser scanning microscopy of immunocytochemical stainings shows loss of the honeycomb pattern of E-cadherin, alpha-catenin and beta-catenin, and internalization of those elements. Cell surface biotinylation shows a decrease in membrane-bound E-cadherin. Immunoprecipitation and cell fractionation show that the composition of the complex is maintained. Interleukin-1, interleukin-6, granulocyte-monocyte colony stimulating factor, stem cell factor, scatter factor/hepatocyte growth factor and transforming growth factor-beta, added separately to MCF-7/AZ cells, could not mimic the effects of CM COLO 16. Neither could we find evidence that the 80 kDa extracellular fragment of E-cadherin is implicated in scattering of MCF-7/AZ cells. This fragment is present in CM COLO 16, but it is also produced by the MCF-7/AZ cells themselves, even at higher levels. Our data point toward cytoplasmic internalization induced by paracrine factors as one of the downregulating mechanisms for the E-cadherin/catenin complex.

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