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Role of FAM134 paralogues in endoplasmic reticulum remodeling, ER-phagy, and Collagen quality control

Authors :
Reggio, Alessio
Buonomo, Viviana
Berkane, Rayene
Bhaskara, Ramachandra M.
Tellechea, Mariana
Peluso, Ivana
Polishchuk, Elena
Di Lorenzo, Giorgia
Cirillo, Carmine
Esposito, Marianna
Hussain, Adeela
Hübner, Antje-Kathrin
Hübner, Christian
Settembre, Carmine
Hummer, Gerhard
Grumati, Paolo
Stolz, Alexandra
Reggio, Alessio
Buonomo, Viviana
Berkane, Rayene
Bhaskara, Ramachandra M.
Tellechea, Mariana
Peluso, Ivana
Polishchuk, Elena
Di Lorenzo, Giorgia
Cirillo, Carmine
Esposito, Marianna
Hussain, Adeela
Hübner, Antje-Kathrin
Hübner, Christian
Settembre, Carmine
Hummer, Gerhard
Grumati, Paolo
Stolz, Alexandra
Publication Year :
2021

Abstract

Degradation of the endoplasmic reticulum (ER) via selective autophagy (ER-phagy) is vital for cellular homeostasis. We identify FAM134A/RETREG2 and FAM134C/RETREG3 as ER-phagy receptors, which predominantly exist in an inactive state under basal conditions. Upon autophagy induction and ER stress signal, they can induce significant ER fragmentation and subsequent lysosomal degradation. FAM134A, FAM134B/RETREG1, and FAM134C are essential for maintaining ER morphology in a LC3-interacting region (LIR)-dependent manner. Overexpression of any FAM134 paralogue has the capacity to significantly augment the general ER-phagy flux upon starvation or ER-stress. Global proteomic analysis of FAM134 overexpressing and knockout cell lines reveals several protein clusters that are distinctly regulated by each of the FAM134 paralogues as well as a cluster of commonly regulated ER-resident proteins. Utilizing pro-Collagen I, as a shared ER-phagy substrate, we observe that FAM134A acts in a LIR-independent manner and compensates for the loss of FAM134B and FAM134C, respectively. FAM134C instead is unable to compensate for the loss of its paralogues. Taken together, our data show that FAM134 paralogues contribute to common and unique ER-phagy pathways.

Details

Database :
OAIster
Notes :
application/octet-stream, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1362826914
Document Type :
Electronic Resource