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Aequorin In Vitro Transcribed mRNA-LNP
MRNA-TG-025
Aequorin In Vitro Transcribed mRNA-LNP
Source:In vitro transcribed mRNA encapsulated with LNP
SKU:MRNA-TG-025-DCPS
Product Name:Cap1-Aequorin-120nt PolyA Tail In Vitro Transcribed mRNA
Product Description:In Vitro Transcribed mRNA encoding AequorinORF with Cap1 and 120nt PolyA tail.
SKU:MRNA-TG-025-DCPS
Product Name:Cap1-Aequorin-120nt PolyA Tail In Vitro Transcribed mRNA
Product Description:In Vitro Transcribed mRNA encoding AequorinORF with Cap1 and 120nt PolyA tail.
PROPERTIES
Cap:
Cap 1
5'-UTR:
5' -untranslated region derived from human alpha-globin RNA with an optimized Kozak sequence
ORF:
Aequorin
3'-UTR:
3' UTR comprising two sequence elements derived from the aminoterminal enhancer of split (AES) mRNA and the mitochondrial encoded 12S ribosomal RNA
Poly(A) Tail:
A 110-nucleotide poly(A)-tail consisting of a stretch of 30 adenosine residues, followed by a 10-nucleotide linker sequence and another 70 adenosine residues.
Modifications:
N1-methyl-pseudouridine
Neutral Lipid:
1,2-distearoyl-sn-glycero-3-phosphocholine (DSPC)
Cholesterol:
Cholesterol
Lonizable Lipid:
1,2-dimyristoyl-rac-glycero-3-methoxypolyethylene glycol-2000 (PEG2000-DMG)
PEG-lipid:
Heptadecan-9-yl 8-((2-hydroxyethyl)(8-(nonyloxy)− 8-oxooctyl)amino)octanoate)(SM-102)
Storage:
-20 °C
Buffer:
PBS, pH7.4
Cryoprotectant:
Trehalose
Related Categories
Reporter Gene mRNA
Background

Background

Aequorin is a calcium-activated photoprotein isolated from the hydrozoan Aequorea victoria. Its bioluminescence was studied decades before the protein was isolated from the animal by Osamu Shimomura in 1962. In the animal, the protein occurs together with the green fluorescent protein to produce green light by resonant energy transfer, while aequorin by itself generates blue light. Since the emitted light can be easily detected with a luminometer, aequorin has become a useful tool in molecular biology for the measurement of intracellular Ca2+ levels. The early successful purification of aequorin led to the first experiments involving the injection of the protein into the tissues of living animals to visualize the physiological release of calcium in the muscle fibers of a barnacle. Since then, the protein has been widely used in many model biological systems, including zebrafish, rats, mice, and cultured cells.

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