NMRAL1 Products
Redox sensor protein. Undergoes restructuring and subcellular redistribution in response to changes inintracellular NADPH/NADP(+) levels. At low NADPH concentrations the protein is found mainly as a monomer, and bindsargininosuccinate synthase (ASS1), the enzyme involved in nitric oxide synthesis. Association with ASS1 impairs itsactivity and reduces the production of nitric oxide, which subsecuently prevents apoptosis. Under normal NADPHconcentrations, the protein is found as a dimer and hides the binding site for ASS1. The homodimer binds one moleculeof NADPH. Has higher affinity for NADPH than for NADP(+). Binding to NADPH is necessary to form a stable dimer
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73 results for "NMRAL1" in Products
73 results for "NMRAL1" in Products
NMRAL1 Products
Redox sensor protein. Undergoes restructuring and subcellular redistribution in response to changes inintracellular NADPH/NADP(+) levels. At low NADPH concentrations the protein is found mainly as a monomer, and bindsargininosuccinate synthase (ASS1), the enzyme involved in nitric oxide synthesis. Association with ASS1 impairs itsactivity and reduces the production of nitric oxide, which subsecuently prevents apoptosis. Under normal NADPHconcentrations, the protein is found as a dimer and hides the binding site for ASS1. The homodimer binds one moleculeof NADPH. Has higher affinity for NADPH than for NADP(+). Binding to NADPH is necessary to form a stable dimer
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Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | WB |
Applications: | PAGE |
Reactivity: | Mouse |
Details: | Rabbit Polyclonal |
Applications: | WB |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | WB |
Applications: | WB |
Reactivity: | Mouse |
Details: | Rabbit IgG Polyclonal |
Applications: | WB |
Applications: | AC |
Applications: IHC, WB, ICC/IF
Reactivity:
Human
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | WB |
Applications: IHC, WB, ICC/IF
Reactivity:
Human
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | WB |
Applications: IHC, WB, ICC/IF
Reactivity:
Human
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | WB |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | WB |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | WB |
Applications: IHC, WB, ICC/IF
Reactivity:
Human
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF |
Applications: IHC, WB, ICC/IF
Reactivity:
Human
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF |
Applications: IHC, WB, ICC/IF
Reactivity:
Human
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | WB |
Applications: IHC, WB, ICC/IF
Reactivity:
Human
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB, ICC/IF |