Cooperative regulation of adherens junction expansion through epidermal growth factor receptor activation

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Abstract

The mechanisms controlling the dynamics of expansion of adherens junctions are significantly less understood than those controlling their static properties. Here, we report that for suspended cell aggregates, the time to form a new junction between two cells speeds up with the number of junctions that the cells are already engaged in. Upon junction formation, the activation of epidermal growth factor receptor (EGFR) distally affects the actin turnover dynamics of the free cortex of the cells. The 'primed' actin cortex results in a faster expansion of the subsequent new junctions. In such aggregates, we show that this mechanism results in a cooperative acceleration of the junction expansion dynamics (kinetype) but does not alter the cell contractility, and hence the final junction size (phenotype).

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Fu, C., Arora, A., Engl, W., Sheetz, M., & Viasnoff, V. (2022). Cooperative regulation of adherens junction expansion through epidermal growth factor receptor activation. Journal of Cell Science, 135(4). https://doi.org/10.1242/jcs.258929

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