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ATPIF1 Proteins

ATPIF1 Human recombinant proteins are validated for use in the following applications: Blocking Assay. Available Product Grades: RUO. Browse 1 protein. Not finding the exact protein, grade or size needed?... ATPIF1 Human recombinant proteins are validated for use in the following applications: Blocking Assay. Available Product Grades: RUO. Browse 1 protein. Not finding the exact protein, grade or size needed? Contact us to discuss your specific application and product needs.... ATPIF1 Human recombinant proteins are validated for use in the following applications: Blocking Assay. Available Product Grades: RUO. Browse 1 protein. Not finding the exact protein, grade or size needed? Contact us to discuss your specific application and product needs.... ATPIF1 Human recombinant proteins are validated for use in the following applications: Blocking Assay. Available Product Grades: RUO. Browse 1 protein. Not finding the exact protein, grade or size needed? Contact us to discuss your specific application and product needs.

Protein Information

Complex V, also called F1F0 ATPase or ATP synthase is extremely conserved through evolution and can be found in plants, fungi, bacteria, and animals. The ATP synthase enzyme is a transmembrane protein responsible for driving the reversible reaction from ADP + phosphate to ATP, in oxidative phosphorylation, and as a proton pumping ATPase. This reaction is accomplished by a flux of protons across the membrane as a result of electron transfer. The enzyme was thought to be localized exclusively to mitochondria; however, it has recently been identified on the plasma membrane of several cell types including hepatocytes where it functions as the HDL receptor, on endothelial cells where it may act as the angiostatin receptor, and on the surface of cancer cells. The ATP synthase protein has two main sections; the F1 ATP-ase (soluble) and the F0 ATP-ase (membrane embedded). The F1 section consists of the alpha, beta, gamma, delta, and epsilon subunits; while the F0 consists of a, b, and c subunits. The enzyme in mammals is composed of 17 subunits, five of which make up the easily detached F1. The remainder subunits are components of two stalk domains and the proton pumping F0 part of the machinery. Two of the subunits of the F0 part are encoded on mitochondrial DNA while the other subunits are nuclearly encoded. Mutations in the mitochondrial-encoded subunits of ATP synthase (Complex V) cause OXPHOS disease.

Synonyms

ATP synthase F1 subunit epsilon; ATP synthase inhibitor protein; ATP synthase inhibitory factor subunit 1; ATP5IF1; ATPase inhibitor (rat mitochondrial IF1 protein); ATPase inhibitor protein; ATPase inhibitor, mitochondrial; ATPase inhibitory factor 1; ATPase inhibitory factor 1, precursor; Atpi; ATPIF1; ATPIP; IF(1); IF1; IF1PA; inhibitor of F(1)F(o)-ATPase; IP

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Clicking the images or links will redirect you to a website hosted by BenchSci that provides third-party scientific content. Neither the content nor the BenchSci technology and processes for selection have been evaluated by us; we are providing them as-is and without warranty of any kind, including for use or application of the Thermo Fisher Scientific products presented.

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Invitrogen
Human ATPIF1 (aa 17-103) Control Fragment Recombinant Protein
Invitrogen
Human ATPIF1 (aa 17-103) Control Fragment Recombinant Protein
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Species
Human
Expression System
E. coli
Product Grade
Research Use Only
Application
Ctrl BLOCK
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Online exclusive
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Cat # RP-94184

100 µL

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