Maintaining the optimal performance of cell processes and organelles is the task of auto-regulatory systems. Here we describe an auto-regulatory device that helps to maintain homeostasis of the endoplasmic reticulum (ER) by adjusting the secretory flux to the cargo load. The cargo-recruiting subunit of the coatomer protein II (COPII) coat, Sec24, doubles as a sensor of folded cargo and, upon cargo binding, acts as a guanine nucleotide exchange factor to activate the signaling protein G?12 at the ER exit sites (ERESs). This step, in turn, activates a complex signaling network that activates and coordinates the ER export machinery and attenuates proteins synthesis, thus preventing large fluctuations of folded and potentially active cargo that could be harmful to the cell or the organism. We call this mechanism AREX (autoregulation of ER export) and expect that its identification will aid our understanding of human physiology and diseases that develop from secretory dysfunction. By sensing the load of folded ER lumenal proteins, the COPII subunit Sec24 directs a signaling cascade that allows secretory pathway flux to respond to the abundance of cargo.

Auto-regulation of Secretory Flux by Sensing and Responding to the Folded Cargo Protein Load in the Endoplasmic Reticulum

Iyengar NR;Rizzo R;di Campli A;Di Martino R;Lo Monte M;Turacchio G;Pirozzi M;Parashuraman S;Luini A
2019

Abstract

Maintaining the optimal performance of cell processes and organelles is the task of auto-regulatory systems. Here we describe an auto-regulatory device that helps to maintain homeostasis of the endoplasmic reticulum (ER) by adjusting the secretory flux to the cargo load. The cargo-recruiting subunit of the coatomer protein II (COPII) coat, Sec24, doubles as a sensor of folded cargo and, upon cargo binding, acts as a guanine nucleotide exchange factor to activate the signaling protein G?12 at the ER exit sites (ERESs). This step, in turn, activates a complex signaling network that activates and coordinates the ER export machinery and attenuates proteins synthesis, thus preventing large fluctuations of folded and potentially active cargo that could be harmful to the cell or the organism. We call this mechanism AREX (autoregulation of ER export) and expect that its identification will aid our understanding of human physiology and diseases that develop from secretory dysfunction. By sensing the load of folded ER lumenal proteins, the COPII subunit Sec24 directs a signaling cascade that allows secretory pathway flux to respond to the abundance of cargo.
2019
Istituto di Biochimica delle Proteine - IBP - Sede Napoli
Inglese
176
1461
1476
15
http://www.scopus.com/record/display.url?eid=2-s2.0-85062427620&origin=inward
AKAP; COPII; ER exit sites; ER export; PKA; auto-regulatory systems; folded cargo; homeostasis; membrane traffic; signaling
ACKNOWLEDGMENTS We thank all members of the A.L. lab for critical evaluation and discussion of the data. We thank Nina Dathan and Daniela Spano for help with cloning and construct preparation. A.L. acknowledges financial support from the Italian Cystic Fibrosis Research Foundation (Project #6), AIRC (Projects IG 15767 and IG 20786), MIUR (Project ''FaReBio di Qualita` ''), the Italian Node of Euro-Bioimaging (Preparatory Phase II - INFRADEV), TERABIO, and the CNR (PON Project 01/00117 and Projects 01-00862 and a3-00025). We thank the Bioimaging Facility of the IBP for help with EM preparation and image acquisition.
21
info:eu-repo/semantics/article
262
Subramanian, A; Capalbo, A; Iyengar, Nr; Rizzo, R; di Campli, A; Di Martino, R; Lo Monte, M; Beccari, Ar; Yerudkar, A; del Vecchio, C; Glielmo, L; Tur...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/343274
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