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Plant/Algal cell antibodies / Mitochondria | Respiration


Beta-CA1, beta-CA2 | carbonic anhydrase | mitochondrial | Chlamydomonas

Art no: AS11 1737
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product information

background  

Beta-CA1, beta-CA2 is a low-CO2-induced  mitochondrial carbonic anhydrase. that catalyze the reversible interconversion of carbon dioxide and water to bicarbonate and protons. Synonymes: MtCA.

immunogen  

recombinant Chlamydomonas reinhardtii mitochondrial CA, as described in Villand et al. 1997. Accession number Q39590 and Q39589

antibody format  

rabbit

polyclonal

serum

lyophilized

quantity  

200 µl

for reconstitution add 200 µl of sterile water.

storage  

store lyophilized/reconstituted at -20°C; once reconstituted make aliquots to avoid repeated freeze-thaw cycles. Please, remember to spin tubes briefly prior to opening them to avoid any losses that might occur from lyophilized material adhering to the cap or sides of the tubes.

tested applications  

western blot (WB)

related products   other antibodies against carbonic anhydrase
additional information  

antibody is recognizing both isoforms, beta- CA1 and beta-CA2 and can be used as mitochondrial marker for low carbon dioxide grown cells of Chlamydomonas reinhardtii.

application information

recommended dilution  

1 : 1000 with standard ECL (WB)

expected | apparent MW  

23.7 | 21-22 kDa

confirmed reactivity   Chlamydomonas reinhardtii
predicted reactivity   Chlamydomonas reinhardtii
not reactive in  

no confirmed exceptions from predicted reactivity are currently known

additional information  

to be added when available

selected references  

Eriksson et al. (1996). Discovery of an algal mitochondrial carbonic anhydrase: Molecular cloning and characterization of a low-CO2-induced polypeptide in Chlamydomonas reinhardtii. Proc. Natl. Acad. Sci. USA. 93:12031-12034.

Eriksson et al. (1998). Induction and Regulation of Expression of a Low-CO2-Induced Mitochondrial Carbonic Anhydrase in Chlamydomonas reinhardtii. Plant Physiol. 116: 637-641.

Renberg et al. (2010). A Metabolomic Approach to Study Major Metabolite Changes during Acclimation to Limiting CO2 in Chlamydomonas reinhardtii. Plant physiol. 154: 187-196.



||| For applications or usage on species others than stated above Agrisera offers a payment-after-testing option. To learn more about this or for any questions on this product, please use the LiveChat option in the left menue bar or contact us at  support@agrisera.com



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