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Overview

Uniprot IDO95210
Protein NameStarch-binding domain-containing protein 1
Gene NameSTBD1
OrganismHomo sapiens

Kla Sites from experimental identification

Position Flanking peptide
164 KGQEISAKAATCFAE
172 AATCFAEKLPSSNLL
180 LPSSNLLKNRAKEEM
184 NLLKNRAKEEMSLSD
250 RGQQVHGKMERVAVM
92 SKTKDLGKLQAASWR

Function

Acts as a cargo receptor for glycogen. Delivers its cargo to an autophagic pathway called glycophagy, resulting in the transport of glycogen to lysosomes

Protein Sequence

10 MGAVWSALLV 20 GGGLAGALFV 30 WLLRGGPGDT 40 GKDGDAEQEK 50 DAPLGGAAIP 60 GGHQSGSSGL 70 SPGPSGQELV 80 TKPEHLQESN 90 GHLISKTKDL 100 GKLQAASWRL 110 QNPSREVCDN 120 SREHVPSGQF 130 PDTEAPATSE 140 TSNSRSYSEV 150 SRNESLESPM 160 GEWGFQKGQE 170 ISAKAATCFA 180 EKLPSSNLLK 190 NRAKEEMSLS 200 DLNSQDRVDH 210 EEWEMVPRHS 220 SWGDVGVGGS 230 LKAPVLNLNQ 240 GMDNGRSTLV 250 EARGQQVHGK 260 MERVAVMPAG 270 SQQVSVRFQV 280 HYVTSTDVQF 290 IAVTGDHECL 300 GRWNTYIPLH 310 YNKDGFWSHS 320 IFLPADTVVE 330 WKFVLVENGG 340 VTRWEECSNR 350 FLETGHEDKV VHAWWGIH

Gene Ontology

Classification GO ID Description
Cellular Component GO:0005783 endoplasmic reticulum
Cellular Component GO:0005789 endoplasmic reticulum membrane
Cellular Component GO:0101003 ficolin-1-rich granule membrane
Cellular Component GO:0016020 membrane
Cellular Component GO:0048471 perinuclear region of cytoplasm
Cellular Component GO:0034045 phagophore assembly site membrane
Cellular Component GO:0005886 plasma membrane
Cellular Component GO:0030315 T-tubule
Cellular Component GO:0070821 tertiary granule membrane
Molecular Function GO:0038024 cargo receptor activity
Molecular Function GO:0019899 enzyme binding
Molecular Function GO:2001069 glycogen binding
Molecular Function GO:0030247 polysaccharide binding
Molecular Function GO:2001070 starch binding
Biological Process GO:0005980 glycogen catabolic process
Biological Process GO:0061723 glycophagy
Biological Process GO:0007041 lysosomal transport
Biological Process GO:0061753 substrate localization to autophagosome

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] Hong H, Chen X, Wang H, Gu X, Yuan Y et al.. Global profiling of protein lysine lactylation and potential target modified protein analysis in hepatocellular carcinoma.. Proteomics 23(9):e2200432. 2023 May. PMID: 36625413.