ATPase, Na+/K+ Transporting Beta 3 Polypeptide (ATP1B3) Antibody

Este producto es parte de ATP1B3 - ATPase Na+/K+ transporting subunit beta 3
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357.5€ (100 µg)

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935106861
info@markelab.com
name
ATPase, Na+/K+ Transporting Beta 3 Polypeptide (ATP1B3) Antibody
category
Primary Antibodies
provider
Abbexa
reference
abx036376
tested applications
ELISA, IHC

Description

Rabbit Polyclonal against the ATP1B3 protein.

Documents del producto

Instrucciones
Data sheet
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Product specifications

Category
Primary Antibodies
Immunogen Target
ATPase, Na+/K+ Transporting Beta 3 Polypeptide (ATP1B3)
Host
Rabbit
Reactivity
Human
Recommended Dilution
ELISA: 1/20000 - 1/80000, IHC: 1/100 - 1/200. Optimal dilutions/concentrations should be determined by the end user.
Clonality
Polyclonal
Conjugation
Unconjugated
Isotype
IgG
Purification
Purified by antigen affinity column chromatography.
Size 1
100 µg
Size 2
1 mg
Form
Lyophilized
Tested Applications
ELISA, IHC
Buffer
Prior to lyophilization: 1% BSA and 0.02% NaN3.
Availability
Shipped within 7-15 working days.
Storage
Store at -20 °C. Avoid repeated freeze/thaw cycles.
Dry Ice
No
Alias
Sodium/potassium-transporting ATPase subunit beta-3,CD298,ATPB-3,
Background
Antibody anti-ATP1B3
Status
RUO
Note
Concentration: Lyophilized form: Not applicable.  After reconstitution: 1 mg/ml. - 

Descripción

The ATPase Na+/K+ transporting subunit beta 3 (ATP1B3) is a critical protein involved in maintaining cellular ionic balance through the sodium-potassium (Na+/K+) pump, an essential enzyme for cellular homeostasis. ATP1B3 is one of the beta subunits of this Na+/K+-ATPase complex, which actively transports sodium (Na+) out of cells and potassium (K+) into cells against their concentration gradients using energy from ATP hydrolysis. The proper functioning of this pump is vital for generating the membrane potential, controlling cell volume, and enabling various cellular processes such as nerve impulse transmission, muscle contraction, and maintaining cell polarity. ATP1B3 is expressed in many tissues, particularly in those involved in high rates of ion transport, such as neural, cardiac, and renal tissues.

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