Carbonic Anhydrase I (CA1) (NM_001738) Human Tagged ORF Clone Lentiviral Particle
CAT#: RC206616L1V
- LentiORF®
Lenti ORF particles, CA1 (Myc-DDK tagged) - Human carbonic anhydrase I (CA1), transcript variant 2, 200ul, >10^7 TU/mL
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CNY 7,410.00
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Specifications
Product Data | |
Product Name | Carbonic Anhydrase I (CA1) (NM_001738) Human Tagged ORF Clone Lentiviral Particle |
Synonyms | CA-I; CAB; Car1; HEL-S-11 |
Vector | pLenti-C-Myc-DDK |
ACCN | NM_001738 |
ORF Size | 783 bp |
Sequence Data |
The ORF insert of this clone is exactly the same as(RC206616).
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OTI Disclaimer | The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info |
OTI Annotation | This clone was engineered to express the complete ORF with an expression tag. Expression varies depending on the nature of the gene. |
Reference Data | |
RefSeq | NM_001738.1 |
RefSeq Size | 1319 bp |
RefSeq ORF | 786 bp |
Locus ID | 759 |
Domains | carb_anhydrase |
Protein Families | Druggable Genome |
Protein Pathways | Nitrogen metabolism |
MW | 28.9 kDa |
Gene Summary | Carbonic anhydrases (CAs) are a large family of zinc metalloenzymes that catalyze the reversible hydration of carbon dioxide. They participate in a variety of biological processes, including respiration, calcification, acid-base balance, bone resorption, and the formation of aqueous humor, cerebrospinal fluid, saliva and gastric acid. They show extensive diversity in tissue distribution and in their subcellular localization. This CA1 gene is closely linked to the CA2 and CA3 genes on chromosome 8. It encodes a cytosolic protein that is found at the highest level in erythrocytes. Allelic variants of this gene have been described in some populations. Alternative splicing and the use of alternative promoters results in multiple transcript variants. [provided by RefSeq, Nov 2016] |
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