4.6 Article

Multifaceted Roles of Retromer in EGFR Trafficking and Signaling Activation

期刊

CELLS
卷 11, 期 21, 页码 -

出版社

MDPI
DOI: 10.3390/cells11213358

关键词

retromer; endosomes; protein trafficking; EGF receptor

资金

  1. Australian Research Council [DP160101573, DP210103017]

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The mammalian retromer complex plays a role in multiple early endosome-associated trafficking pathways, depending on the sorting nexin (SNX) it is complexed with. Depletion of retromer subunit Vps35 was found to decrease EGFR protein levels and increase association with lysosomal compartments. This study suggests that the absence of retromer can interfere with early endosome-associated protein trafficking pathways and organelle maturation, leading to a prolonged association of EGFR within early endosomes.
Mammalian retromer complex contributes to multiple early endosome-associated trafficking pathways whose origins are dependent on which sorting nexin (SNX) they are complexed with. In an attempt to dissect out the contribution of individual retromer-SNX complexes, we examined the trafficking of EGFR in detail within a series of KO cell line models. We demonstrated that the depletion of retromer subunit Vps35 leads to decreased EGFR protein levels in resting cells with enhanced association of EGFR with lysosomal compartments. Compared to control cells, the addition of EGF to Vps35 KO cells resulted in a reduced rate of EGFR degradation; AKT activation and cell prolferation rates were elevated, while ERK activation remained relatively unchanged. These observations are consistent with a prolonged temporal association of EGFR within early endosomes due to the inefficiency of early endosome-associated protein trafficking pathways or organelle maturation due to retromer absence. We did not fully delineate the discrete contributions from retromer-associated SNXs to the phenotypes observed from retromer Vps35 depletion. While each of the knock-outs of SNX1/2, SNX3, or SNX27 promotes the enhanced association of EGFR with early endosomal compartments, only the decreased EGF-mediated EGFR degradation was observed in SNX1/2 dKO cells, while the enhanced AKT activation was only increased in SNX3 KO or SNX27 KO cells. Despite this, each of the knock-outs showed increased EGF-stimulated cell proliferation rates.

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