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UDP-alpha-D-glucose + glycogenin
UDP + alpha-D-glucosylglycogenin
UDP-alpha-D-glucose + glycogenin-1
UDP + alpha-D-glucosylglycogenin-1
self-glucosylation of the glycosyltransferase glycogenin-1
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?
UDP-alpha-D-glucose + glycogenin-2
UDP + alpha-D-glucosylglycogenin-2
self-glucosylation of the glycosyltransferase glycogenin-2
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
UDP-glucose + glycogenin
UDP + glucosylglycogenin
additional information
?
-
UDP-alpha-D-glucose + glycogenin
UDP + alpha-D-glucosylglycogenin
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?
UDP-alpha-D-glucose + glycogenin
UDP + alpha-D-glucosylglycogenin
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?
UDP-alpha-D-glucose + glycogenin
UDP + alpha-D-glucosylglycogenin
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?
UDP-alpha-D-glucose + glycogenin
UDP + alpha-D-glucosylglycogenin
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?
UDP-alpha-D-glucose + glycogenin
UDP + alpha-D-glucosylglycogenin
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?
UDP-alpha-D-glucose + glycogenin
UDP + alpha-D-glucosylglycogenin
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autoglucosylation by glycogenin-1
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?
UDP-alpha-D-glucose + glycogenin
UDP + alpha-D-glucosylglycogenin
autoglucosylation by glycogenin-1
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?
UDP-alpha-D-glucose + glycogenin
UDP + alpha-D-glucosylglycogenin
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?
UDP-alpha-D-glucose + glycogenin
UDP + alpha-D-glucosylglycogenin
autoglucosylation by glycogenin-1
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
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enzyme forms the protein part of proteoglycogen
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
essential for the formation of glycogen granules, binds a chain of 5-13 glucose molecules at a specific tyrosine residue (Y194) by autoglycosylation
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
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enzyme forms the protein part of proteoglycogen
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
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enzyme forms the protein part of proteoglycogen
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
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regulation
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
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the glycogenin subunit of glycogen synthase, EC 2.4.1.11, catalyzes this reaction, i.e. the enzyme catalyzes its own glucosylation
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
essential for the formation of glycogen granules, binds a chain of 5-13 glucose molecules at a specific tyrosine residue by autoglycosylation, catalyzes two chemically different autoglucosylation reactions, the glucosylation of a tyrosine hydroxyl group and the formation of alpha-1,4 glucosidic linkages by subsequent glucosylations
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
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enzyme forms the protein part of proteoglycogen
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
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regulation
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?
UDP-glucose + glycogenin
UDP + glucosylated glycogenin
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the glycogenin subunit of glycogen synthase, EC 2.4.1.11, catalyzes this reaction, i.e. the enzyme catalyzes its own glucosylation
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?
UDP-glucose + glycogenin
UDP + glucosylglycogenin
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increases in glycogenin and glycogenin mRNA accompany glycogen resynthesis in human skeletal muscle. Glycogenin is a self-glycosylating protein primer that initiates glycogen granule formation
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?
UDP-glucose + glycogenin
UDP + glucosylglycogenin
self-glucosylating initiator of glycogen synthesis
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?
additional information
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OsGGT-gene expression increases in FR13A (a submergence-tolerant cultivar, Indica) during submergence but decreases in IR42 (submergence-intolerant cultivar, Indica). The expression of the OsGGT gene in FR13A is induced by salicylic acid and benzyladenine. The accumulation of OsGGT mRNA in FR13A also increases in response to ethylene, gibberellin, abscisic acid, drought and salt treatment, but methyl jasmonate treatment and cold stress have no effect on expression. OsGGT gene can be related to submergence stress and associated with a general defensive response to various environmental stresses
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?
additional information
?
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OsGGT-gene expression increases in FR13A (a submergence-tolerant cultivar, Indica) during submergence but decreases in IR42 (submergence-intolerant cultivar, Indica). The expression of the OsGGT gene in FR13A is induced by salicylic acid and benzyladenine. The accumulation of OsGGT mRNA in FR13A also increases in response to ethylene, gibberellin, abscisic acid, drought and salt treatment, but methyl jasmonate treatment and cold stress have no effect on expression. OsGGT gene can be related to submergence stress and associated with a general defensive response to various environmental stresses
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?