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Catalog Number: (77512-598)
Supplier: AFG BIOSCIENCE LLC
Description: 36246968

New Product


Catalog Number: (89361-254)
Supplier: Genetex
Description: Human muscle glycogen synthase (GS) is responsible for the biosynthesis of glycogen from phosphorylated glucose units. Mammalian liver and muscle contain GS consisting of four subunits with a total molecular weight of 360,000. GS is subject to regulation through both allosteric and covalent modification and occurs in two forms: the phosphorylated inactive form, and the dephosphorylated active form. GS is inactivated by the serine/threonine kinase called glycogen synthase kinase-3b that mainly functions to phosphorylate muscle glycogen synthase. This antibody is specific for the phosphorylated form of GS at Ser 640. Phosphorylation of GS at S640 has been associated with Antiphospholipid Antibody Syndrome.


Catalog Number: (76082-730)
Supplier: Bioss
Description: PDK1 (3 Phosphoinositide Dependent Protein Kinase 1) phosphorylates AGC kinases. PDK1 activates conventional PKC and PKC zeta through phosphorylation of critical threonine residues in the activation loop. PDK1 also phosphorylates Protein Kinase B (PKB) at threonine 308 in the presence of phosphatidylinositol-3,4,5-trisphosphate. Active Akt inactivates Glycogen Synthase Kinase 3 (GSK3), eventually leading to the dephosphorylation and activation of Glycogen synthase and the stimulation of Glycogen synthesis. Because of the role that PDK plays in insulin-induced Glycogen synthesis and PKC activation it is a potentially important target for metabolic drug research. There are three named isoforms.


Catalog Number: (76080-704)
Supplier: Bioss
Description: PDK1 (3 Phosphoinositide Dependent Protein Kinase 1) phosphorylates AGC kinases. PDK1 activates conventional PKC and PKC zeta through phosphorylation of critical threonine residues in the activation loop. PDK1 also phosphorylates Protein Kinase B (PKB) at threonine 308 in the presence of phosphatidylinositol-3,4,5-trisphosphate. Active Akt inactivates Glycogen Synthase Kinase 3 (GSK3), eventually leading to the dephosphorylation and activation of Glycogen synthase and the stimulation of Glycogen synthesis. Because of the role that PDK plays in insulin-induced Glycogen synthesis and PKC activation it is a potentially important target for metabolic drug research. There are three named isoforms.


Catalog Number: (10391-242)
Supplier: Bioss
Description: This gene encodes a member of the glycogenin family. glycogenin is a glycosyltransferase that catalyzes the formation of a short glucose polymer from uridine diphosphate glucose in an autoglucosylation reaction. This reaction is followed by elongation and branching of the polymer, catalyzed by glycogen synthase and branching enzyme, to form glycogen. This gene is expressed in muscle and other tissues. Mutations in this gene result in glycogen storage disease XV. This gene has pseudogenes on chromosomes 1, 8 and 13 respectively. Alternatively spliced transcript variants encoding different isoforms have been identified.[provided by RefSeq, Sep 2010].


Catalog Number: (101777-840)
Supplier: Matrix Scientific
Description: ω,4-Dibromoacetophenone 98

SDS


Catalog Number: (10346-590)
Supplier: Bioss
Description: PDK1 (3 Phosphoinositide Dependent Protein Kinase 1) phosphorylates AGC kinases. PDK1 activates conventional PKC and PKC zeta through phosphorylation of critical threonine residues in the activation loop. PDK1 also phosphorylates Protein Kinase B (PKB) at threonine 308 in the presence of phosphatidylinositol-3,4,5-trisphosphate. Active Akt inactivates Glycogen Synthase Kinase 3 (GSK3), eventually leading to the dephosphorylation and activation of Glycogen synthase and the stimulation of Glycogen synthesis. Because of the role that PDK plays in insulin-induced Glycogen synthesis and PKC activation it is a potentially important target for metabolic drug research. There are three named isoforms.


Catalog Number: (10298-256)
Supplier: Bioss
Description: Glycogen synthesis is initiated by the autoglucosylation of Glycogenin-1. Specifically, Glycogenin-1 glucosylates itself to begin the synthesis of Glycogen in mammalian skeletal muscle. It acts as the primer to which further glucose monomers may be added. All of the Glycogenin-1 molecules contain at least one glucosyl residue before autoglucosylation begins. The first step of the Glycogen synthesis occurs when a glucose molecule from UDP-glucose binds to the hydroxyl group of Tyr 194 on the Glycogenin-1 molecule. Using its glucosyltransferase activity, Glycogenin-1 adds more glucoses, each one coming from UDP-glucose. The glycosylation process reaches a plateau when five new glucose residues have been added, at which point Glycogen synthase (GS) takes over and further elongates the chain. Glycogenin-1 remains covalently attached to the reducing end of the Glycogen molecule.


Catalog Number: (10298-254)
Supplier: Bioss
Description: Glycogen synthesis is initiated by the autoglucosylation of Glycogenin-1. Specifically, Glycogenin-1 glucosylates itself to begin the synthesis of Glycogen in mammalian skeletal muscle. It acts as the primer to which further glucose monomers may be added. All of the Glycogenin-1 molecules contain at least one glucosyl residue before autoglucosylation begins. The first step of the Glycogen synthesis occurs when a glucose molecule from UDP-glucose binds to the hydroxyl group of Tyr 194 on the Glycogenin-1 molecule. Using its glucosyltransferase activity, Glycogenin-1 adds more glucoses, each one coming from UDP-glucose. The glycosylation process reaches a plateau when five new glucose residues have been added, at which point Glycogen synthase (GS) takes over and further elongates the chain. Glycogenin-1 remains covalently attached to the reducing end of the Glycogen molecule.


Catalog Number: (10298-178)
Supplier: Bioss
Description: Glycogen synthesis is initiated by the autoglucosylation of Glycogenin-1. Specifically, Glycogenin-1 glucosylates itself to begin the synthesis of Glycogen in mammalian skeletal muscle. It acts as the primer to which further glucose monomers may be added. All of the Glycogenin-1 molecules contain at least one glucosyl residue before autoglucosylation begins. The first step of the Glycogen synthesis occurs when a glucose molecule from UDP-glucose binds to the hydroxyl group of Tyr 194 on the Glycogenin-1 molecule. Using its glucosyltransferase activity, Glycogenin-1 adds more glucoses, each one coming from UDP-glucose. The glycosylation process reaches a plateau when five new glucose residues have been added, at which point Glycogen synthase (GS) takes over and further elongates the chain. Glycogenin-1 remains covalently attached to the reducing end of the Glycogen molecule.


Catalog Number: (76707-666)
Supplier: AFG BIOSCIENCE LLC
Description: 36246968


Catalog Number: (76703-652)
Supplier: AFG BIOSCIENCE LLC
Description: 36246968


Catalog Number: (10346-588)
Supplier: Bioss
Description: PDK1 (3 Phosphoinositide Dependent Protein Kinase 1) phosphorylates AGC kinases. PDK1 activates conventional PKC and PKC zeta through phosphorylation of critical threonine residues in the activation loop. PDK1 also phosphorylates Protein Kinase B (PKB) at threonine 308 in the presence of phosphatidylinositol-3,4,5-trisphosphate. Active Akt inactivates Glycogen Synthase Kinase 3 (GSK3), eventually leading to the dephosphorylation and activation of Glycogen synthase and the stimulation of Glycogen synthesis. Because of the role that PDK plays in insulin-induced Glycogen synthesis and PKC activation it is a potentially important target for metabolic drug research. There are three named isoforms.


Catalog Number: (77558-008)
Supplier: Sino Biological
Description: The GS peptide sequence (PLSRTLSVSS) is derived from an N to terminus of glycogen synthase and is suitable for use as the substrate for DCAMKL1 and CAMKII family.

New Product


Supplier: Electron Microscopy Sciences
Description: Coleman's Feulgen

Minority or Woman-Owned Business Enterprise

Catalog Number: (10417-344)
Supplier: Bioss
Description: PDK1 (3 Phosphoinositide Dependent Protein Kinase 1) phosphorylates AGC kinases. PDK1 activates conventional PKC and PKC zeta through phosphorylation of critical threonine residues in the activation loop. PDK1 also phosphorylates Protein Kinase B (PKB) at threonine 308 in the presence of phosphatidylinositol-3,4,5-trisphosphate. Active Akt inactivates Glycogen Synthase Kinase 3 (GSK3), eventually leading to the dephosphorylation and activation of Glycogen synthase and the stimulation of Glycogen synthesis. Because of the role that PDK plays in insulin-induced Glycogen synthesis and PKC activation it is a potentially important target for metabolic drug research. There are three named isoforms.


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