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The Ectodomain Shedding of E-cadherin by ADAM15 Supports ErbB Receptor Activation*

机译:ADAM15对E-钙粘蛋白的Ectodomain脱落支持ErbB受体 激活*

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摘要

The zinc-dependent disintegrin metalloproteinases (a disintegrin and metalloproteinases (ADAMs) have been implicated in several disease processes, including human cancer. Previously, we demonstrated that the expression of a catalytically active member of the ADAM family, ADAM15, is associated with the progression of prostate and breast cancer. The accumulation of the soluble ectodomain of E-cadherin in human serum has also been associated with the progression of prostate and breast cancer and is thought to be mediated by metalloproteinase shedding. Utilizing two complementary models, overexpression and stable short hairpin RNA-mediated knockdown of ADAM15 in breast cancer cells, we demonstrated that ADAM15 cleaves E-cadherin in response to growth factor deprivation. We also demonstrated that the extracellular shedding of E-cadherin was abrogated by a metalloproteinase inhibitor and through the introduction of a catalytically inactive mutation in ADAM15. We have made the novel observation that this soluble E-cadherin fragment was found in complex with the HER2 and HER3 receptors in breast cancer cells. These interactions appeared to stabilize HER2 heterodimerization with HER3 and induced receptor activation and signaling through the Erk pathway, supporting both cell migration and proliferation. In this study, we provide evidence that ADAM15 catalyzes the cleavage of E-cadherin to generate a soluble fragment that in turn binds to and stimulates ErbB receptor signaling.
机译:锌依赖性解整合素金属蛋白酶(一种整合素和金属蛋白酶(ADAMs)已牵涉到包括人类癌症在内的多种疾病过程中;以前,我们证明了ADAM家族催化活性成员ADAM15的表达与疾病进展有关。 E-钙粘蛋白在人血清中的可溶性胞外域的积累也与前列腺癌和乳腺癌的进展有关,并被认为是由金属蛋白酶的释放介导的,利用两种互补模型,即过表达和稳定短时发夹RNA介导的乳腺癌细胞中ADAM15的敲低,我们证明ADAM15响应生长因子剥夺而裂解E-cadherin;我们还证明了金属蛋白酶抑制剂和通过引入a可以消除E-cadherin的细胞外脱落。 ADAM15中的催化无活性突变。认为该可溶性E-钙粘着蛋白片段与乳腺癌细胞中的HER2和HER3受体复合存在。这些相互作用似乎可以稳定HER2与HER3的异源二聚化作用,并通过Erk途径诱导受体激活和信号传导,从而支持细胞迁移和增殖。在这项研究中,我们提供的证据表明,ADAM15催化E-钙粘蛋白的裂解,产生可溶的片段,进而结合并刺激ErbB受体信号传导。

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