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Overview

Uniprot IDP51153
Protein NameRas-related protein Rab-13
Gene NameRAB13
OrganismHomo sapiens

Kla Sites from experimental identification

Position Flanking peptide
107 QNWMKSIKENASAGV
3 *****MAKAYDHLFK

Function

The small GTPases Rab are key regulators of intracellular membrane trafficking, from the formation of transport vesicles to their fusion with membranes. Rabs cycle between an inactive GDP-bound form and an active GTP-bound form that is able to recruit to membranes different sets of downstream effectors directly responsible for vesicle formation, movement, tethering and fusion. RAB13 is involved in endocytic recycling and regulates the transport to the plasma membrane of transmembrane proteins like the tight junction protein OCLN/occludin. Thereby, it regulates the assembly and the activity of tight junctions. Moreover, it may also regulate tight junction assembly by activating the PKA signaling pathway and by reorganizing the actin cytoskeleton through the activation of the downstream effectors PRKACA and MICALL2 respectively. Through its role in tight junction assembly, may play a role in the establishment of Sertoli cell barrier. Plays also a role in angiogenesis through regulation of endothelial cells chemotaxis. Also involved in neurite outgrowth. Has also been proposed to play a role in post-Golgi membrane trafficking from the TGN to the recycling endosome. Finally, it has been involved in insulin-induced transport to the plasma membrane of the glucose transporter GLUT4 and therefore may play a role in glucose homeostasis

Protein Sequence

10 MAKAYDHLFK 20 LLLIGDSGVG 30 KTCLIIRFAE 40 DNFNNTYIST 50 IGIDFKIRTV 60 DIEGKKIKLQ 70 VWDTAGQERF 80 KTITTAYYRG 90 AMGIILVYDI 100 TDEKSFENIQ 110 NWMKSIKENA 120 SAGVERLLLG 130 NKCDMEAKRK 140 VQKEQADKLA 150 REHGIRFFET 160 SAKSSMNVDE 170 AFSSLARDIL 180 LKSGGRRSGN 190 GNKPPSTDLK 200 TCDKKNTNKC SLG

Gene Ontology

Classification GO ID Description
Cellular Component GO:0005923 bicellular tight junction
Cellular Component GO:0030139 endocytic vesicle
Cellular Component GO:0005768 endosome
Cellular Component GO:0070062 extracellular exosome
Cellular Component GO:0005794 Golgi apparatus
Cellular Component GO:0032593 insulin-responsive compartment
Cellular Component GO:0030027 lamellipodium
Cellular Component GO:0016328 lateral plasma membrane
Cellular Component GO:0043005 neuron projection
Cellular Component GO:0005886 plasma membrane
Cellular Component GO:0055037 recycling endosome
Cellular Component GO:0055038 recycling endosome membrane
Cellular Component GO:0008021 synaptic vesicle
Cellular Component GO:0005802 trans-Golgi network
Cellular Component GO:0030140 trans-Golgi network transport vesicle
Molecular Function GO:0004862 cAMP-dependent protein kinase inhibitor activity
Molecular Function GO:0003925 G protein activity
Molecular Function GO:0005525 GTP binding
Molecular Function GO:0003924 GTPase activity
Molecular Function GO:0046872 metal ion binding
Biological Process GO:0070830 bicellular tight junction assembly
Biological Process GO:0032869 cellular response to insulin stimulus
Biological Process GO:0030866 cortical actin cytoskeleton organization
Biological Process GO:0032456 endocytic recycling
Biological Process GO:0016197 endosomal transport
Biological Process GO:0035767 endothelial cell chemotaxis
Biological Process GO:0097368 establishment of Sertoli cell barrier
Biological Process GO:0006887 exocytosis
Biological Process GO:0006893 Golgi to plasma membrane transport
Biological Process GO:0141162 negative regulation of cAMP/PKA signal transduction
Biological Process GO:0031175 neuron projection development
Biological Process GO:1902463 protein localization to cell leading edge
Biological Process GO:0072659 protein localization to plasma membrane
Biological Process GO:0015031 protein transport
Biological Process GO:0044795 trans-Golgi network to recycling endosome transport
Cellular Component GO:0030054 cell junction
Cellular Component GO:0031410 cytoplasmic vesicle
Cellular Component GO:0005829 cytosol

Reference

[1] Yang Z, Yan C, Ma J, Peng P, Ren X et al.. Lactylome analysis suggests lactylation-dependent mechanisms of metabolic adaptation in hepatocellular carcinoma.. Nat Metab 5(1):61-79. 2023 Jan. PMID: 36593272.