Recombinant Rat Ca5a protein, His-tagged
Cat.No. : | Ca5a-7851R |
Product Overview : | Recombinant Rat Ca5a aa. (Tyr12~Leu219 (Accession # P43165)) fused with N-terminal His tag was produced in E. coli cells. |
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Description : | Mitochondrial protein that may be involved in gluconeogenesis and ureagenesis. |
Source : | E. coli |
Species : | Rat |
Tag : | His |
Form : | Freeze-dried powder |
Molecular Mass : | 25 kDa as determined by SDS-PAGE reducing conditions. |
Protein length : | Tyr12~Leu219 |
Endotoxin : | <1.0EU per 1ug (determined by the LAL method) |
Purity : | >95% |
Characteristic : | The isoelectric point is 6.7. |
Applications : | SDS-PAGE; WB; ELISA; IP |
Stability : | The thermal stability is described by the loss rate of the target protein. The loss rate was determined by accelerated thermal degradation test, that is, incubate the protein at 37°C for 48h, and no obvious degradation and precipitation were observed. (Referring from China Biological Products Standard, which was calculated by the Arrhenius equation.) The loss of this protein is less than 5% within the expiration date under appropriate storage condition. |
Storage : | Avoid repeated freeze/thaw cycles. Store at 2-8°C for one month. Aliquot and store at -80°C for 12 months. |
Storage Buffer : | Supplied as liquid form in Phosphate buffered saline(PBS), pH 7.4. |
Reconstitution : | Reconstitute in sterile PBS, pH7.2-pH7.4. |
Gene Name : | Ca5a carbonic anhydrase 5A [ Rattus norvegicus (Norway rat) ] |
Official Symbol : | Ca5a |
Synonyms : | Ca5a; carbonic anhydrase 5A; Ca5; Car5a; carbonic anhydrase 5A, mitochondrial; CA-VA; carbonate dehydratase VA; carbonic anhydrase 5 mitochondrial; carbonic anhydrase Va, mitochondrial |
Gene ID : | 54233 |
mRNA Refseq : | NM_019293.3 |
Protein Refseq : | NP_062166.1 |
UniProt ID : | P43165 |
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Q&As (7)
Ask a questionPost-translational modifications of CA5A can be identified using mass spectrometry, with potential phosphorylation or acetylation sites.
Dysregulation of CA5A might influence metabolic processes in the liver, potentially impacting conditions like fatty liver disease or other metabolic disorders.
Specific mutations might affect CA5A's stability or activity, necessitating functional assays for validation.
While general carbonic anhydrase inhibitors might affect CA5A, specific modulators would need further research.
CA5A facilitates the reversible conversion of CO2 to bicarbonate and protons, playing a role in pH regulation and CO2 transport.
CA5A's activity is tailored to its mitochondrial environment, which might differ in kinetics from cytosolic isoforms.
CA5A is primarily expressed in the mitochondria of liver cells, with lesser amounts in other tissues.
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