ADARB1 KO cell lysate available now. Free of charge wild type control included. Knockout achieved by using CRISPR/Cas9, 1 bp insertion in exon5.
1700057H01Rik, ADAR2, ADAR2a, ADAR2a L1, ADAR2a L2, ADAR2a L3, ADAR2b, ADAR2c, ADAR2d, ADAR2g, ADARB 1, AW124433, AW558573, Adenosine deaminase, RNA specific, 2, Adenosine deaminase, RNA specific, B1, Adenosine deaminase, RNA specific, B1 (RED1 homolog rat), Adenosine deaminase, RNA specific, B1 (homolog of rat RED1), BB220382, D10Bwg0447e, DRABA2, DRADA2, Double-stranded RNA-specific editase 1, EC 3.5.-.-, Human dsRNA adenosine deaminase DRADA2, Human dsRNA adenosine deaminase DRADA2b, EC 3.5, OTTHUMP00000115341, OTTHUMP00000115342, RED1_HUMAN, RNA editase, RNA editase 1, RNA editing enzyme 1, rat, homolog of, RNA specific adenosine deaminase B1, RNA-editing deaminase 1, RNA-editing enzyme 1, dsRNA adenosine deaminase
ADARB1 KO cell lysate available now. Free of charge wild type control included. Knockout achieved by using CRISPR/Cas9, 1 bp insertion in exon5.
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Lysate preparation: Our lysates are made using RIPA buffer to which we add a protease inhibitor cocktail and phosphatase inhibitor cocktail (ratio: 300:100:10). This means that the protein of interest is denatured. If you require a native form of the protein please use the live cell version. Please refer to our lysis protocol for further details on how our lysates are prepared.
User storage instructions: Lyophilizate may be stored at 4°C. After reconstitution, store at -20°C for short-term storage or -80°C for long-term storage.
This product is subject to limited use licenses from The Broad Institute, ERS Genomics Limited and Sigma-Aldrich Co. LLC, and is developed with patented technology. For full details of the licenses and patents please refer to our limited use license and patent pages.
RED1 also known as ADARB1 is a protein involved in RNA editing. It weighs approximately 73 kDa. RED1 mainly expresses itself in the central nervous system but also appears in other tissues. This protein modifies RNA molecules by catalyzing the conversion of adenosine to inosine which can alter the coding potential and metabolism of the RNA it acts upon.
The protein RED1 functions within RNA editing complexes. It co-operates with other proteins like ADAR1 to carry out its editing role. In particular RED1 affects the regulation of gene expression influencing neuronal function and development in the brain. Through its editing capabilities the protein contributes to the diversity and stability of RNA transcripts.
RED1 plays a role in neurotransmission and neurodevelopment pathways. It interacts with other editing proteins in the ADAR family to ensure proper RNA sequence modifications critical for brain function. The editing process that RED1 participates in impacts synaptic transmission important for neuronal communication and neural network formation.
The protein RED1 is associated with neurological disorders. Changes in RED1 expression or mutations can link to conditions such as epilepsy and schizophrenia. Aberrations in RNA editing performed by RED1 might lead to the dysfunction of proteins involved in neuronal signaling. It also connects with proteins like ADAR2 influencing the pathological progress of these conditions.
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Homozygous: 1 bp insertion in exon5
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