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February 10, 2014The Journal of Cell Biology130 citationsOpen Access

Aggregation state determines the localization and function of M1– and M23–aquaporin-4 in astrocytes

ASAlexander J. SmithBJByung‐Ju JinJRJulien Ratelade

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Abstract

The astrocyte water channel aquaporin-4 (AQP4) is expressed as heterotetramers of M1 and M23 isoforms in which the presence of M23-AQP4 promotes formation of large macromolecular aggregates termed orthogonal arrays. Here, we demonstrate that the AQP4 aggregation state determines its subcellular localization and cellular functions. Individually expressed M1-AQP4 was freely mobile in the plasma membrane and could diffuse into rapidly extending lamellipodial regions to support cell migration. In contrast, M23-AQP4 formed large arrays that did not diffuse rapidly enough to enter lamellipodia and instead stably bound adhesion complexes and polarized to astrocyte end-feet in vivo. Co-expressed M1- and M23-AQP4 formed aggregates of variable size that segregated due to diffusional sieving of small, mobile M1-AQP4-enriched arrays into lamellipodia and preferential interaction of large, M23-AQP4-enriched arrays with the extracellular matrix. Our results therefore demonstrate an aggregation state-dependent mechanism for segregation of plasma membrane protein complexes that confers specific functional roles to M1- and M23-AQP4.

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Cite This Study

Smith et al. (2014) studied this question.

synapsesocial.com/papers/6a1b0a89942a4878b7c214e8https://doi.org/10.1083/jcb.201308118
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