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GNPTG | N-acetylglucosamine-1-phosphate transferase, gamma subunit; May recognize the substrate of GlcNAc-1- phosphotransferase but also the lysosomal proteins with mannose-6- phosphate residues (305 aa) | |||
TUSC3 | tumor suppressor candidate 3; Magnesium transporter. May be involved in N- glycosylation through its association with N-oligosaccharyl transferase (348 aa) | |||
HES1 | hairy and enhancer of split 1, (Drosophila); Transcriptional repressor of genes that require a bHLH protein for their transcription. May act as a negative regulator of myogenesis by inhibiting the functions of MYOD1 and ASH1. Binds DNA on N-box motifs- 5’-CACNAG-3’ with high affinity and on E-box motifs- 5’-CANNTG-3’ with low affinity (By similarity). May play a role in a functional FA core complex response to DNA cross-link damage, being required for the stability and nuclear localization of FA core complex proteins, as well as for FANCD2 monoubiquitination in response to DNA damage (280 aa) | |||
CANX | calnexin; Calcium-binding protein that interacts with newly synthesized glycoproteins in the endoplasmic reticulum. It may act in assisting protein assembly and/or in the retention within the ER of unassembled protein subunits. It seems to play a major role in the quality control apparatus of the ER by the retention of incorrectly folded proteins. Associated with partial T-cell antigen receptor complexes that escape the ER of immature thymocytes, it may function as a signaling complex regulating thymocyte maturation. Additionally it may play a role in receptor- mediated endocytosis at [...] (592 aa) | |||
PRKCSH | protein kinase C substrate 80K-H; Regulatory subunit of glucosidase II (528 aa) | |||
YY1 | YY1 transcription factor; Multifunctional transcription factor that exhibits positive and negative control on a large number of cellular and viral genes by binding to sites overlapping the transcription start site. Binds to the consensus sequence 5’-CCGCCATNTT-3’; some genes have been shown to contain a longer binding motif allowing enhanced binding; the initial CG dinucleotide can be methylated greatly reducing the binding affinity. The effect on transcription regulation is depending upon the context in which it binds and diverse mechanisms of action include direct activation or repre [...] (414 aa) | |||
SI | sucrase-isomaltase (alpha-glucosidase); Plays an important role in the final stage of carbohydrate digestion. Isomaltase activity is specific for both alpha-1,4- and alpha-1,6-oligosaccharides (1827 aa) | |||
CDH2 | cadherin 2, type 1, N-cadherin (neuronal); Cadherins are calcium-dependent cell adhesion proteins. They preferentially interact with themselves in a homophilic manner in connecting cells; cadherins may thus contribute to the sorting of heterogeneous cell types. CDH2 may be involved in neuronal recognition mechanism. In hippocampal neurons, may regulate dendritic spine density (By similarity) (906 aa) | |||
NCF1 | neutrophil cytosolic factor 1; May be required for activation of the latent NADPH oxidase (necessary for superoxide production) (By similarity) (390 aa) | |||
HK2 | hexokinase 2 (917 aa) | |||
HK3 | hexokinase 3 (white cell) (923 aa) | |||
AGL | amylo-alpha-1, 6-glucosidase, 4-alpha-glucanotransferase (1532 aa) | |||
GAA | glucosidase, alpha; acid; Essential for the degradation of glygogen to glucose in lysosomes (952 aa) | |||
CLGN | calmegin; Probably plays an important role in spermatogenesis. Binds calcium ions (610 aa) | |||
UBC | ubiquitin C (685 aa) | |||
ERO1LB | ERO1-like beta (S. cerevisiae); Essential oxidoreductase that oxidizes proteins in the endoplasmic reticulum to produce disulfide bonds. Acts by oxidizing directly P4HB/PDI isomerase through a direct disulfide exchange. Does not act as a direct oxidant of folding substrate, but relies on P4HB/PDI to transfer oxidizing equivalent. Associates with ERP44 but not with GRP54, demonstrating that it does not oxidize all PDI related proteins and can discriminate between PDI and related proteins. Its reoxidation probably involves electron transfer to molecular oxygen via FAD. Acts independently [...] (467 aa) | |||
HKDC1 | hexokinase domain containing 1 (917 aa) | |||
PGAP1 | post-GPI attachment to proteins 1; Involved in inositol deacylation of GPI-anchored proteins. GPI inositol deacylation may important for efficient transport of GPI-anchored proteins from the endoplasmic reticulum to the Golgi (By similarity) (922 aa) | |||
SYNCRIP | synaptotagmin binding, cytoplasmic RNA interacting protein (623 aa) | |||
HNRNPK | heterogeneous nuclear ribonucleoprotein K; One of the major pre-mRNA-binding proteins. Binds tenaciously to poly(C) sequences. Likely to play a role in the nuclear metabolism of hnRNAs, particularly for pre-mRNAs that contain cytidine-rich sequences. Can also bind poly(C) single- stranded DNA. Plays an important role in p53/TP53 response to DNA damage, acting at the level of both transcription activation and repression. When sumoylated, acts as a transcriptional coactivator of p53/TP53, playing a role in p21/CDKN1A and 14-3-3 sigma/SFN induction (By similarity). As far as transcription [...] (464 aa) | |||
ERO1L | ERO1-like (S. cerevisiae); Essential oxidoreductase that oxidizes proteins in the endoplasmic reticulum to produce disulfide bonds. Acts by oxidizing directly P4HB/PDI isomerase through a direct disulfide exchange. Does not act as a direct oxidant of folding substrate, but relies on P4HB/PDI to transfer oxidizing equivalent. Associates with ERP44 but not with GRP54, demonstrating that it does not oxidize all PDI related proteins and can discriminate between PDI and related proteins. Its reoxidation probably involves electron transfer to molecular oxygen via FAD. Acts independently of g [...] (468 aa) | |||
HK1 | hexokinase 1 (921 aa) | |||
ILF3 | interleukin enhancer binding factor 3, 90kDa (898 aa) | |||
CALU | calumenin (323 aa) | |||
MTHFD1 | methylenetetrahydrofolate dehydrogenase (NADP+ dependent) 1, methenyltetrahydrofolate cyclohydrolase, formyltetrahydrofolate synthetase (935 aa) | |||
KLRP | glucosidase, beta, acid 3 (cytosolic) (EC-3.2.1.21) (162 aa) |