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Home >Products> Reagents >Antibody> CA2 Rabbit Polyclonal Antibody
CA2 Rabbit Polyclonal Antibody
CA2 Rabbit Polyclonal Antibody
Origin of place Singapore
Model S0B1472-25μl
Supplier ANT BIO PTE.LTD.
Price 100
Hits 8
Updated 9/1/2025
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Product Specification


HostRabbit
AntigenCA2
SynonymsCarbonic anhydrase 2; Carbonate dehydratase II; Carbonic anhydrase C (CAC); Carbonic anhydrase II (CA-II); Cyanamide hydratase CA2
ImmunogenSynthetic Peptide
LocationCytoplasm, Cell membrane
AccessionP00918
Antibody TypePolyclonal antibody
IsotypeIgG
ApplicationWB, IHC-P, ICC
ReactivityHu, Ms, Rt
Positive SampleCaco-2, MCF7, A431, HEK-293, mouse brain, rat brain
PurificationImmunogen Affinity
Concentration0.5 mg/ml
ConjugationUnconjugated
Physical AppearanceLiquid
Storage Buffer

PBS, 40% Glycerol, 0.05% BSA, 0.03% Proclin 300

Stability & Storage

12 months from date of receipt / reconstitution, -20 掳C as supplied

Dilution


applicationdilutionspecies
WB1:1000Hu, Ms, Rt
IHC-P1:1000Hu, Ms, Rt
ICC1:500Hu

Background

Carbonic anhydrase 2 (CA2) is a zinc-containing metalloenzyme that belongs to the carbonic anhydrase family and plays a crucial role in catalyzing the reversible hydration of carbon dioxide (CO鈧? to bicarbonate (HCO鈧冣伝) and protons (H鈦?. This reaction is essential for maintaining pH homeostasis, electrolyte balance, and CO鈧?transport in various tissues, including the kidneys, red blood cells, and the central nervous system. CA2 is one of the most efficient enzymes, with a catalytic rate approaching diffusion limits, and its activity is critical for physiological processes such as respiration, bone resorption, renal acid secretion, and cerebrospinal fluid production. Mutations in the CA2 gene can lead to osteopetrosis with renal tubular acidosis and cerebral calcification, highlighting its importance in bone remodeling and acid-base regulation. Additionally, CA2 is implicated in pathological conditions, including cancer, glaucoma, and epilepsy, making it a potential therapeutic target for inhibitors like acetazolamide. Its structure consists of a conserved 伪-carbonic anhydrase fold with a zinc ion coordinated by three histidine residues in the active site, enabling rapid proton transfer via a water-mediated mechanism.

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