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Overview

Uniprot IDP02774
Protein NameVitamin D-binding protein
Gene NameGC
OrganismHomo sapiens

Kla Sites from experimental identification

Position Flanking peptide
207 LKERLQLKHLSLLTT
229 QYAAYGEKKSRLSNL
30 YEKNKVCKEFSHLGK
341 VCDPGNTKVMDKYTF
394 AKGPLLKKELSSFID
429 LAERLKAKLPDATPT
51 SLVLYSRKFPSGTFE

Function

Involved in vitamin D transport and storage, scavenging of extracellular G-actin, enhancement of the chemotactic activity of C5 alpha for neutrophils in inflammation and macrophage activation

Protein Sequence

10 MKRVLVLLLA 20 VAFGHALERG 30 RDYEKNKVCK 40 EFSHLGKEDF 50 TSLSLVLYSR 60 KFPSGTFEQV 70 SQLVKEVVSL 80 TEACCAEGAD 90 PDCYDTRTSA 100 LSAKSCESNS 110 PFPVHPGTAE 120 CCTKEGLERK 130 LCMAALKHQP 140 QEFPTYVEPT 150 NDEICEAFRK 160 DPKEYANQFM 170 WEYSTNYGQA 180 PLSLLVSYTK 190 SYLSMVGSCC 200 TSASPTVCFL 210 KERLQLKHLS 220 LLTTLSNRVC 230 SQYAAYGEKK 240 SRLSNLIKLA 250 QKVPTADLED 260 VLPLAEDITN 270 ILSKCCESAS 280 EDCMAKELPE 290 HTVKLCDNLS 300 TKNSKFEDCC 310 QEKTAMDVFV 320 CTYFMPAAQL 330 PELPDVELPT 340 NKDVCDPGNT 350 KVMDKYTFEL 360 SRRTHLPEVF 370 LSKVLEPTLK 380 SLGECCDVED 390 STTCFNAKGP 400 LLKKELSSFI 410 DKGQELCADY 420 SENTFTEYKK 430 KLAERLKAKL 440 PDATPTELAK 450 LVNKHSDFAS 460 NCCSINSPPL 470 YCDSEIDAEL KNIL

Gene Ontology

Classification GO ID Description
Cellular Component GO:0072562 blood microparticle
Cellular Component GO:0005829 cytosol
Cellular Component GO:0070062 extracellular exosome
Cellular Component GO:0005576 extracellular region
Cellular Component GO:0005615 extracellular space
Cellular Component GO:0043202 lysosomal lumen
Molecular Function GO:0003779 actin binding
Molecular Function GO:1902118 calcidiol binding
Molecular Function GO:0140104 molecular carrier activity
Molecular Function GO:0005499 vitamin D binding
Molecular Function GO:0090482 vitamin transmembrane transporter activity
Biological Process GO:0031667 response to nutrient levels
Biological Process GO:0042359 vitamin D metabolic process
Biological Process GO:0051180 vitamin transport

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.

[2] Lin Y, Chen M, Wang D, Yu Y, Chen R et al.. Multi-Proteomic Analysis Reveals the Effect of Protein Lactylation on Matrix and Cholesterol Metabolism in Tendinopathy.. J Proteome Res 22(6):1712-1722. 2023 Jun 2. PMID: 37159428.