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Arrestin mobilizes signaling proteins to the cytoskeleton and redirects their activity.


ABSTRACT: Arrestins regulate the activity and subcellular localization of G protein-coupled receptors and other signaling molecules. Here, we demonstrate that arrestins bind microtubules (MTs) in vitro and in vivo. The MT-binding site on arrestins overlaps significantly with the receptor-binding site, but the conformations of MT-bound and receptor-bound arrestin are different. Arrestins recruit ERK1/2 and the E3 ubiquitin ligase Mdm2 to MTs in cells, similar to the arrestin-dependent mobilization of these proteins to the receptor. Arrestin-mediated sequestration of ERK to MTs reduces the level of ERK activation. In contrast, recruitment of Mdm2 to MTs by arrestin channels Mdm2 activity toward cytoskeleton-associated proteins, increasing their ubiquitination dramatically. The mobilization of signaling molecules to MTs is a novel biological function of arrestin proteins.

SUBMITTER: Hanson SM 

PROVIDER: S-EPMC1904837 | biostudies-literature | 2007 Apr

REPOSITORIES: biostudies-literature

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Arrestin mobilizes signaling proteins to the cytoskeleton and redirects their activity.

Hanson Susan M SM   Cleghorn Whitney M WM   Francis Derek J DJ   Vishnivetskiy Sergey A SA   Raman Dayanidhi D   Song Xiufeng X   Nair K Saidas KS   Slepak Vladlen Z VZ   Klug Candice S CS   Gurevich Vsevolod V VV  

Journal of molecular biology 20070222 2


Arrestins regulate the activity and subcellular localization of G protein-coupled receptors and other signaling molecules. Here, we demonstrate that arrestins bind microtubules (MTs) in vitro and in vivo. The MT-binding site on arrestins overlaps significantly with the receptor-binding site, but the conformations of MT-bound and receptor-bound arrestin are different. Arrestins recruit ERK1/2 and the E3 ubiquitin ligase Mdm2 to MTs in cells, similar to the arrestin-dependent mobilization of these  ...[more]

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