Details of Protein
General Information of Protein (ID: PRT01572) | |||||
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Name | Glycogen synthase 1 (GYS1) | ||||
Synonyms |
Click to Show/Hide Synonyms of This Protein
Glycogen [starch] synthase, muscle; Gys1; Gys; Gys3
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Gene Name | Gys1 | Gene ID | |||
UniProt ID | |||||
Family | Transferases (EC 2) | ||||
EC Number | EC: 2.4.1.11 (Click to Show/Hide the Complete EC Tree) | ||||
Click to Show/Hide the Molecular/Functional Data (Sequence/Structure/Function) of This Protein | |||||
Sequence |
MPLSRSLSVSSLPGLEDWEDEFDPENAVLFEVAWEVANKVGGIYTVLQTKAKVTGDEWGD
NYYLVGPYTEQGVRTQVELLEPPTPELKRTLDSMNSKGCKVYFGRWLIEGGPLVVLLDVG ASAWALERWKGELWDTCNIGVPWYDREANDAVLFGFLTTWFLGEFLAQNEEKPYVVAHFH EWLAGVGLCLCRARRLPVATIFTTHATLLGRYLCAGAVDFYNNLENFNVDKEAGERQIYH RYCMERAAAHCAHVFTTVSQITAIEAQHLLKRKPDIVTPNGLNVKKFSAMHEFQNLHAQS KARIQEFVRGHFYGHLDFNLDKTLYFFIAGRYEFSNKGADVFLEALARLNYLLRVNGSEQ TVVAFFIMPARTNNFNVETLKGQAVRKQLWDTANTVKEKFGRKLYESLLVGSLPDMNKML DKEDFTMMKRAIFATQRQSFPPVCTHNMLDDSSDPILTTIRRIGLFNSSADRVKVIFHPE FLSSTSPLLPVDYEEFVRGCHLGVFPSYYEPWGYTPAECTVMGIPSISTNLSGFGCFMEE HIADPSAYGIYILDRRFRSLDDSCSQLTSFLYSFCQQSRRQRIIQRNRTERLSDLLDWKY LGRYYMSARHMALAKAFPDHFTYEPHEVDATQGYRYPRPASVPPSPSLSRHSSPHQSEDE EEPRDGPLGEDSERYDEEEEAAKDRRNIRAPEWPRRASCSSSTGGSKRSNSVDTGPSSSL STPTEPLSPTSSLGEERN |
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Function | Transfers the glycosyl residue from UDP-Glc to the non-reducing end of alpha-1,4-glucan. | ||||
Regulatory Network | |||||
Full List of Metabolite(s) Regulating This Protein | ||||||
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Organic oxygen compounds | ||||||
Glucose | Click to Show/Hide the Full List of Regulating Pair(s): 1 Pair(s) | |||||
Detailed Information |
Metabo Info
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Regulating Pair |
Experim Info
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[1] | ||||
Introduced Variation | Glucose (low concentration) addition (17.50 hours) | |||||
Induced Change | GYS1 protein abundance levels: increase (FC = 2.09) | |||||
Summary | Introduced Variation
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Disease Status | Cerebral stroke [ICD-11: 8B11] | |||||
Details | It is reported that low glucose addition causes the increase of GYS1 protein abundance compared with control group. | |||||
References | |||||
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1 | Quantitative Proteomics Reveals the Beneficial Effects of Low Glucose on Neuronal Cell Survival in an in vitro Ischemic Penumbral Model. Front Cell Neurosci. 2020 Sep 1;14:272. |
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