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Human ATP5B (ATPMB) (ATPSB) (a.a.48-529)
ATP5B Swiss Prot#
P06576
ATP5B Protein names
ATP synthase subunit beta, mitochondrial (EC 3.6.3.14)
ATP5B Gene names
ATP5B (ATPMB) (ATPSB)
Organism
Human
ATP5B Entry name
ATPB_HUMAN
ATP5B Codon optimized cDNA Clone
ATP5B CDNA Cat#
RPE0258
cDNA Tag
cDNA ATP5B Contains A 6x histidine tag
Condon optimized ATP5B CDNA Formulation
Liquid
Condon optimized ATP5B CDNA Storage
Ship at Room temperature. Storage at -20℃ to −80℃ Upon receipt. Avoid repeated freeze-thaw
Condon optimized ATP5B cDNA Applications
Applications: 1. Codon-optimized cDNA sequence designed for recombinant

protein production in both E.coli and Mammalian cell. The cDNA has been

cloned into E.coli expression vector with 6x Histidine tag.2. May be used as

RNAi assistance to restore the loss-of-function.

Recombinant ATP5B Protein

Recombinant ATP5B Protein Cat#
PE0258
ATP5B Protein Source
Recombinant protein.
Recombinant ATP5B Protein Applications
Western Blot, may be used for other applications determined by user
Recombinant ATP5B Protein Purity
>90%, as determined by SDS-PAGE under reducing conditions
Recombinant ATP5B Protein Activity
N/A
Recombinant protein Tag
Recombinant ATP5B contains A 6x histidine tag
Recombinant ATP5B Protein Formulation
Liquid
Recombinant ATP5B Protein Storage
Ship at 4℃. Storage at -20℃ to −80℃ Upon receipt. Avoid repeated freeze-thaw
Place Order for Recombinant ATP5B Protein or cDNA
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ATP5B Protein family
ATPase alpha/beta chains family
ATP5B Subcellular locations
Mitochondrion. Mitochondrion inner membrane.
ATP5B FUNCTION (According to UniProtKB/Swiss Prot)
FUNCTION: Mitochondrial membrane ATP synthase (F(1)F(0) 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,

F(1) - containing the extramembraneous catalytic core, and F(0) - containing

the membrane proton channel, linked together by a central stalk and a

peripheral stalk. During catalysis, ATP synthesis in the catalytic domain of

F(1) is coupled via a rotary mechanism of the central stalk subunits to

proton translocation. Subunits alpha and beta form the catalytic core in F(1).

Rotation of the central stalk against the surrounding alpha(3)beta(3) subunits

leads to hydrolysis of ATP in three separate catalytic sites on the beta

subunits.
ATP5B Sequence databases
EMBL DDBJ GenBank
ATP5B 3D structure databases
ModBase
ATP5B Protein-protein interaction databases
STRING
ATP5B Proteomic databases
PRIDE
ATP5B Genome annotation databases
Ensembl GeneID KEGG UCSC
ATP5B Organism specific databases
CTD MGI
ATP5B Phylogenomic databases
eggNOG GeneTree HOGENOM HOVERGEN

InParanoid OrthoDB PhylomeDB OMA
ATP5B Gene expression databases
Bgee ArrayExpress Genevestigator
ATP5B Family and domain databases
InterPro PROSITE ProtoNet
FOR in vitro RESEARCH USE ONLY