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EGF-induced ERK activation promotes CK2-mediated disassociation of alpha-Catenin from beta-Catenin and transactivation of beta-Catenin.

机译:EGF诱导的ERK活化促进CK2介导的α-连环蛋白与β-连环蛋白的解离和β-连环蛋白的反式激活。

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Increased transcriptional activity of beta-catenin resulting from Wnt/Wingless-dependent or -independent signaling has been detected in many types of human cancer, but the underlying mechanism of Wnt-independent regulation remains unclear. We demonstrate here that EGFR activation results in disruption of the complex of beta-catenin and alpha-catenin, thereby abrogating the inhibitory effect of alpha-catenin on beta-catenin transactivation via CK2alpha-dependent phosphorylation of alpha-catenin at S641. ERK2, which is activated by EGFR signaling, directly binds to CK2alpha via the ERK2 docking groove and phosphorylates CK2alpha primarily at T360/S362, subsequently enhancing CK2alpha activity toward alpha-catenin phosphorylation. In addition, levels of alpha-catenin S641 phosphorylation correlate with levels of ERK1/2 activity in human glioblastoma specimens and with grades of glioma malignancy. This EGFR-ERK-CK2-mediated phosphorylation of alpha-catenin promotes beta-catenin transactivation and tumor cell invasion. These findings highlight the importance of the crosstalk between EGFR and Wnt pathways in tumor development.
机译:已经在许多类型的人类癌症中检测到Wnt / Wingless依赖性或非依赖性信号转导导致的β-catenin转录活性增加,但是Wnt非依赖性调节的潜在机制仍不清楚。我们在这里证明,EGFR激活导致β-catenin和α-catenin的复合物的破坏,从而废除了α-catenin在S641处通过CK2alpha依赖的α-catenin磷酸化对β-catenin反激活的抑制作用。被EGFR信号传导激活的ERK2通过ERK2对接凹槽直接与CK2alpha结合,并主要在T360 / S362上磷酸化CK2alpha,随后增强CK2alpha对α-连环蛋白磷酸化的活性。此外,α-cateninS641磷酸化水平与人类胶质母细胞瘤标本中ERK1 / 2活性水平以及神经胶质瘤恶性程度相关。这种EGFR-ERK-CK2介导的α-连环蛋白的磷酸化促进了β-连环蛋白的反式激活和肿瘤细胞的侵袭。这些发现突出了EGFR与Wnt途径之间的串扰在肿瘤发展中的重要性。

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