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Epidermal Growth Factor Receptor neddylation is regulated by a desmosomal-COP9 (Constitutive Photomorphogenesis 9) signalosome complex

机译:表皮生长因子受体的融合作用由去链体COP9(组成型光形态发生9)信号体复合体调控。

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摘要

Cell junctions are scaffolds that integrate mechanical and chemical signaling. We previously showed that a desmosomal cadherin promotes keratinocyte differentiation in an adhesion-independent manner by dampening Epidermal Growth Factor Receptor (EGFR) activity. Here we identify a potential mechanism by which desmosomes assist the de-neddylating COP9 signalosome (CSN) in attenuating EGFR through an association between the Cops3 subunit of the CSN and desmosomal components, Desmoglein1 (Dsg1) and Desmoplakin (Dp), to promote epidermal differentiation. Silencing CSN or desmosome components shifts the balance of EGFR modifications from ubiquitination to neddylation, inhibiting EGFR dynamics in response to an acute ligand stimulus. A reciprocal relationship between loss of Dsg1 and neddylated EGFR was observed in a carcinoma model, consistent with a role in sustaining EGFR activity during tumor progression. Identification of this previously unrecognized function of the CSN in regulating EGFR neddylation has broad-reaching implications for understanding how homeostasis is achieved in regenerating epithelia.
机译:细胞连接是整合机械和化学信号传导的支架。我们以前表明,桥粒钙黏着蛋白通过抑制表皮生长因子受体(EGFR)活性以粘附独立的方式促进角质形成细胞分化。在这里,我们确定了桥粒体通过CSN的Cops3亚基与桥粒成分Desmoglein1(Dsg1)和桥粒斑白蛋白(Dp)之间的缔合,协助去桥链化COP9信号体(CSN)减弱EGFR的潜在机制。 。沉默CSN或桥粒成分可将EGFR修饰的平衡从泛素化转移至糖基化,从而抑制EGFR动力学响应急性配体刺激。在癌症模型中观察到Dsg1的丧失与neddylated EGFR之间的相互关系,与在肿瘤进展过程中维持EGFR活性的作用一致。识别CSN在调节EGFR腺苷化中这种以前无法识别的功能,对于理解如何在再生上皮中实现体内平衡具有广泛的意义。

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