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ABCbiolab

SKU:ABCCS44838

ATP5F1 Antibody

ATP5F1 Antibody

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Size

100ul

Clone Number

Aliases

AT5F1_HUMAN antibody; ATP synthase B chain mitochondrial antibody; ATP synthase subunit b antibody; ATP synthase subunit b mitochondrial antibody; ATP synthase; H+ transporting; mitochondrial F0 complex; subunit b; antibody; ATP synthase; H+ transporting; mitochondrial F0 complex; subunit b; isoform 1 antibody; ATP synthase; H+ transporting; mitochondrial F0 complex; subunit B1 antibody; ATP5F1 antibody; ATPase subunit b antibody; Cell proliferation inducing protein 47 antibody; H+ ATP synthase subunit b antibody; MGC24431 antibody; mitochondrial antibody; PIG47 antibody

Immunogen Species

Homo sapiens (Human)

UniProt ID

P24539

Immunogen

Recombinant Human ATP synthase F(0) complex subunit B1, mitochondrial protein (1-245AA)

Raised in

Rabbit

Species Reactivity

Human, Mouse

Tested Applications

ELISA, WB, IHC; Recommended dilution: WB:1:500-1:2000, IHC:1:20-1:200

Background

Mitochondrial membrane ATP synthase (F1F0 ATP synthase or Complex V) produces ATP from ADP in the presence of a proton gradient across the membrane which is generated by electron transport complexes of the respiratory chain. F-type ATPases consist of two structural domains, F1 - containing the extramembraneous catalytic core, and F0 - containing the membrane proton channel, linked together by a central stalk and a peripheral stalk. During catalysis, ATP synthesis in the catalytic domain of F1 is coupled via a rotary mechanism of the central stalk subunits to proton translocation. Part of the complex F0 domain and the peripheric stalk, which acts as a stator to hold the catalytic alpha3beta3 subcomplex and subunit a/ATP6 static relative to the rotary elements.

Clonality

Polyclonal

Isotype

IgG

Purification Method

Antigen Affinity Purified

Conjugate

Non-conjugated

Buffer

PBS with 0.02% sodium azide, 50% glycerol, pH7.3.

Form

Liquid

Stroage

Upon receipt, store at -20°C or -80°C. Avoid repeated freeze.

Target Names

ATP5F1

Research Areas

Cancer; Metabolism; Signal transduction

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