| Literature DB >> 25911102 |
Julian Brenig1, Susanne de Boor1, Philipp Knyphausen1, Nora Kuhlmann1, Sarah Wroblowski1, Linda Baldus1, Lukas Scislowski1, Oliver Artz1, Philip Trauschies1, Ulrich Baumann2, Ines Neundorf2, Michael Lammers3.
Abstract
Diaphanous-related formins are eukaryotic actin nucleation factors regulated by an autoinhibitory interaction between the N-terminal RhoGTPase-binding domain (mDiaN) and the C-terminal Diaphanous-autoregulatory domain (DAD). Although the activation of formins by Rho proteins is well characterized, its inactivation is only marginally understood. Recently, liprin-α3 was shown to interact with mDia1. Overexpression of liprin-α3 resulted in a reduction of the cellular actin filament content. The molecular mechanisms of how liprin-α3 exerts this effect and counteracts mDia1 activation by RhoA are unknown. Here, we functionally and structurally define a minimal liprin-α3 core region, sufficient to recapitulate the liprin-α3 determined mDia1-respective cellular functions. We show that liprin-α3 alters the interaction kinetics and thermodynamics of mDiaN with RhoA·GTP and DAD. RhoA displaces liprin-α3 allosterically, whereas DAD competes with liprin-α3 for a highly overlapping binding site on mDiaN. Liprin-α3 regulates actin polymerization by lowering the regulatory potency of RhoA and DAD on mDiaN. We present a model of a mechanistically unexplored and new aspect of mDiaN regulation by liprin-α3.Entities:
Keywords: Ras homolog gene family, member A (RhoA); actin; cytoskeleton; formin; liprin; mDia1
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Year: 2015 PMID: 25911102 PMCID: PMC4505501 DOI: 10.1074/jbc.M114.621946
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157