Autoregulatory circuit regulating basolateral cargo export from the TGN: role of the orphan receptor GPRC5A in PKD signaling and cell polarity.
Di Martino, R.; Capalbo, A.; Sticco, L.; Varavallo, A.; Kunnathully, V.; De Luca, V.; Iyengar, N. R.; Lo Monte, M.; Henklein, P.; Cancino, J.; Luini, A.
10.1101/2020.05.26.114710 bioRxivShow abstract
The membrane transport apparatus comprises a series of separate membrane bound compartments, or transport stations, that are responsible for the synthesis, processing, transport, sorting and delivery to their final cellular destinations of most transmembrane and soluble lumenal proteins. Over the last decades the membrane transport system has been shown to be extensively regulated both by environmental inputs and by internal homeostatic signalling systems, or control systems, that operate to maintain the homeostasis and optimal functionality of the main transport stations, such as the endoplasmic reticulum and the Golgi, in the face of internal and external perturbations. The trans-Golgi network (TGN) is a major transport and processing station and the main sorting compartment of the transport apparatus. However, the mechanisms that control cargo export and sorting at the TGN have so far remained elusive. Here we focus on the sorting of basolateral cargo proteins and show that these proteins bind to the TGN localized orphan receptor GPRC5A. The cargo-GPRC5A complex triggers the activation of a signaling pathway that involves the G{beta}{gamma} subunits dependent activation of the phospholipase C beta 3 (PLC{beta}3), which inturn induces diacyl glycerol (DAG) production. DAG recruits and activates protein kinase D (PKD) and the phosphorylation of its substrates. This step results in the formation of basolateral carriers for delivery of these cargoes to the basolateral plasma membrane domain. We term this mechanism "ARTG" (AutoRegulation of TGN export). Remarkably, the impairment of ARTG pathway components, and in particular of GPRC5A, causes defects in the polarized organization of epithelial cells.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- CHC22 clathrin mediates traffic from early secretory compartments for human GLUT4 pathway biogenesis 96%
- Uncoating of COPII from ER exit site membranes precedes cargo accumulation and membrane fission 96%
- VPS13B is localized at the cis-trans Golgi complex interface and is a functional partner of FAM177A1 95%
Similar papers in this journal
- Lipid kinases VPS34 and PIKfyve coordinate a phosphoinositide cascade to regulate Retriever-mediated recycling on endosomes 96%
- Partitioning to ordered membrane domains regulates the kinetics of secretory traffic 96%
- S-acylation of NLRP3 provides a nigericin sensitive gating mechanism that controls access to the Golgi 95%
Similar papers in this journal
- Interactions between TULP3 tubby domain cargo site and ARL13B amphipathic helix promote lipidated protein transport to cilia 95%
- EIPR1 controls dense-core vesicle cargo retention and EARP complex localization in insulinoma cells 95%
- Phospholipase D1 Produces Phosphatidic Acid at Sites of Secretory Vesicle Docking and Fusion 94%
Similar papers in this journal
- ERLIN1/2 scaffolds bridge TMUB1 and RNF170 and restrict cholesterol esterification to regulate the secretory pathway 95%
- Small disulfide loops in peptide hormones mediate self-aggregation and secretory granule sorting 94%
- LRRK2-phosphorylated Rab10 sequesters Myosin Va with RILPL2 during ciliogenesis blockade 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.