Localization of the tubby domain, a PI(4,5)P2 biosensor, to E-Syt3-rich endoplasmic reticulum–plasma membrane junctions

Author:

Thallmair Veronika12ORCID,Schultz Lea1,Evers Saskia1,Jolie Theresa1,Goecke Christian1ORCID,Leitner Michael G.1345ORCID,Thallmair Sebastian67ORCID,Oliver Dominik128ORCID

Affiliation:

1. Institute of Physiology and Pathophysiology, Philipps University Marburg 1 Department of Neurophysiology , , 35037 Marburg , Germany

2. DFG Research Training Group, Membrane Plasticity in Tissue Development and Remodeling, GRK 2213, Philipps University 2 Marburg, 35037 Marburg , Germany

3. Institute of Physiology 3 , Department of Physiology and Medical Physics , , 6020 Innsbruck , Austria

4. Medical University of Innsbruck 3 , Department of Physiology and Medical Physics , , 6020 Innsbruck , Austria

5. Drug Discovery Sciences, Boehringer Ingelheim Pharma GmbH&Co.KG 4 , Birkendorfer Str. 65, 88400 Biberach an der Riß , Germany

6. Frankfurt Institute for Advanced Studies 5 , 60438 Frankfurt am Main , Germany

7. Groningen Biomolecular Sciences and Biotechnology Institute and The Zernike Institute for Advanced Material, University of Groningen 6 , 9747 AG Groningen , The Netherlands

8. Center for Mind, Brain and Behavior (CMBB), Universities of Marburg and Giessen, 35032 Marburg 7 , Germany

Abstract

ABSTRACT The phospholipid phosphatidylinositol (4,5)-bisphosphate [PI(4,5)P2] acts as a signaling lipid at the plasma membrane (PM) with pleiotropic regulatory actions on multiple cellular processes. Signaling specificity might result from spatiotemporal compartmentalization of the lipid and from combinatorial binding of PI(4,5)P2 effector proteins to additional membrane components. Here, we analyzed the spatial distribution of tubbyCT, a paradigmatic PI(4,5)P2-binding domain, in live mammalian cells by total internal reflection fluorescence (TIRF) microscopy and molecular dynamics simulations. We found that unlike other well-characterized PI(4,5)P2 recognition domains, tubbyCT segregates into distinct domains within the PM. TubbyCT enrichment occurred at contact sites between PM and endoplasmic reticulum (ER) (i.e. at ER–PM junctions) as shown by colocalization with ER–PM markers. Localization to these sites was mediated in a combinatorial manner by binding to PI(4,5)P2 and by interaction with a cytosolic domain of extended synaptotagmin 3 (E-Syt3), but not other E-Syt isoforms. Selective localization to these structures suggests that tubbyCT is a novel selective reporter for a ER–PM junctional pool of PI(4,5)P2. Finally, we found that association with ER–PM junctions is a conserved feature of tubby-like proteins (TULPs), suggesting an as-yet-unknown function of TULPs.

Funder

Deutsche Forschungsgemeinschaft

Hessian Ministry of Science and Arts

Alfons und Gertrud Kassel-Stiftung

Dr. Rolf M. Schwiete foundation

Philipps-Universität Marburg

Publisher

The Company of Biologists

Subject

Cell Biology

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