Pyruvate Dehydrogenase E1-alpha subunit Products
Pyruvate Dehydrogenase E1-alpha subunit (PDHE1 alpha) is a member of the pyruvate dehydrogenase complex (PDC) and is a nuclear-encoded mitochondrial matrix multienzyme complex that provides the primary link between glycolysis and the tricarboxylic acid (TCA) cycle by catalyzing the irreversible conversion of pyruvate into acetyl-CoA. The PDH complex is composed of multiple copies of 3 enzymes: E1 (PDHA1 or PDHE1), dihydrolipoyl transacetylase (DLAT), and dihydrolipoyl dehydrogenase (DLD). The E1 enzyme is a heterotetramer of 2 alpha and 2 beta subunits. The E1-alpha subunit contains the E1 active site and plays a key role in the function of the PDH complex. Enhanced expression of pyruvate dehydrogenase kinase-1 (PDK-1) results in phosphorylation of PDHE1 alpha at Serine 293, which in turn produces nearly complete inhibition of the pyruvate dehydrogenase complex (PDC). A recent study shows that inhibition of PDC activity in cancer cells restores normoxic stablization of HIF-1 alpha by glycolytic metabolites.
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30 results for "Pyruvate Dehydrogenase E1-alpha subunit" in Products
30 results for "Pyruvate Dehydrogenase E1-alpha subunit" in Products
Pyruvate Dehydrogenase E1-alpha subunit Products
Pyruvate Dehydrogenase E1-alpha subunit (PDHE1 alpha) is a member of the pyruvate dehydrogenase complex (PDC) and is a nuclear-encoded mitochondrial matrix multienzyme complex that provides the primary link between glycolysis and the tricarboxylic acid (TCA) cycle by catalyzing the irreversible conversion of pyruvate into acetyl-CoA. The PDH complex is composed of multiple copies of 3 enzymes: E1 (PDHA1 or PDHE1), dihydrolipoyl transacetylase (DLAT), and dihydrolipoyl dehydrogenase (DLD). The E1 enzyme is a heterotetramer of 2 alpha and 2 beta subunits. The E1-alpha subunit contains the E1 active site and plays a key role in the function of the PDH complex. Enhanced expression of pyruvate dehydrogenase kinase-1 (PDK-1) results in phosphorylation of PDHE1 alpha at Serine 293, which in turn produces nearly complete inhibition of the pyruvate dehydrogenase complex (PDC). A recent study shows that inhibition of PDC activity in cancer cells restores normoxic stablization of HIF-1 alpha by glycolytic metabolites.
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Applications: IHC, WB, ICC/IF, Flow, IP, KO
Reactivity:
Human,
Mouse,
Rat
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF, Flow, IP, +1 More |
Applications: IHC, WB, ICC/IF, IP
Reactivity:
Human,
Mouse,
Rat
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF, IP |
Applications: WB, IP
Reactivity:
Human,
Mouse,
Rat
Recombinant Monoclonal Antibody
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Monoclonal Clone #6E3J0 |
Applications: | WB, IP |
Applications: IHC, WB, ICC/IF, IP
Reactivity:
Human,
Mouse,
Rat
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF, IP |
Applications: IHC, WB, ICC/IF
Reactivity:
Human
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF |
Applications: IHC, WB, IP
Reactivity:
Human,
Mouse,
Rat
Recombinant Monoclonal Antibody
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Monoclonal Clone #SR1677 |
Applications: | IHC, WB, IP |
Applications: IHC, WB, ICC/IF
Reactivity:
Human,
Mouse,
Rat
Recombinant Monoclonal Antibody
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Monoclonal Clone #JE58-27 |
Applications: | IHC, WB, ICC/IF |
Applications: WB, ICC/IF
Reactivity:
Human,
Mouse,
Rat
Recombinant Monoclonal Antibody
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Monoclonal Clone #8Z4N6 |
Applications: | WB, ICC/IF |
Applications: | WB, ELISA, MA, AP, PAGE |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB |
Applications: | AC |
Recombinant Monoclonal Antibody
Reactivity: | Human |
Details: | Rabbit IgG Monoclonal Clone #006 |
Applications: | ICC/IF |
Applications: | AC |
Applications: | ELISA |
Applications: | ELISA |
Applications: | WB |
Applications: | ELISA |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC |
Applications: | AC |
Applications: WB, ICC/IF, Flow, IP, KO
Reactivity:
Human,
Mouse,
Rat
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Polyclonal |
Applications: | WB, ICC/IF, Flow, IP, KO |
Applications: WB, ICC/IF, Flow, IP, KO
Reactivity:
Human,
Mouse,
Rat
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Polyclonal |
Applications: | WB, ICC/IF, Flow, IP, KO |
Applications: WB, ICC/IF, Flow, IP, KO
Reactivity:
Human,
Mouse,
Rat
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Polyclonal |
Applications: | WB, ICC/IF, Flow, IP, KO |
Applications: WB, ICC/IF, Flow, IP, KO
Reactivity:
Human,
Mouse,
Rat
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Polyclonal |
Applications: | WB, ICC/IF, Flow, IP, KO |
Applications: WB, ICC/IF, Flow, IP, KO
Reactivity:
Human,
Mouse,
Rat
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Polyclonal |
Applications: | WB, ICC/IF, Flow, IP, KO |
Applications: WB, ICC/IF, Flow, IP, KO
Reactivity:
Human,
Mouse,
Rat
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Polyclonal |
Applications: | WB, ICC/IF, Flow, IP, KO |