Transfected Stable Cell Lines
Reliable | High-Performance | Wide Rage
Precision reporter, kinase, immune receptor, biosimilar, Cas9, and knockout stable cell lines for diverse applications.
Cat. No. : SHH229930
| Cat. No. | SHH229930 |
| Description | The SureSilencing trade; shRNA Plasmids are designed to specifically knock down the expression of individual genes by RNA interference under either transient (with GFP) or stable transfection (for hygromycin, neomycin or puromycin-resistance) conditions after performance of the appropriate enrichment or selection procedures, respectively. Each vector contains the shRNA under control of the U1 promoter and either the GFP gene, for the enrichment of transiently transfected cells, or the neomycin or puromycin resistance genes, for the selection of stably transfected cells. |
| Gene Abbr | ACADM |
| Gene Name | Acadm acyl-Coenzyme A dehydrogenase, medium chain [ Mus musculus ] |
| Species | Mouse |
| Report Gene | GFP |
| Storage | The SureSilencing shRNA Plasmids are shipped on dry ice or cold packs. Store all tubes at -20°C. |
| Gene Name | Acadm acyl-Coenzyme A dehydrogenase, medium chain [ Mus musculus ] |
| Gene Symbol | ACADM |
| Synonyms | MCAD; AU018656 |
| GeneID | 11364 |
| Uni ProtID | P45952 |
| mRNA Refseq | NM_007382.4 |
| Protein Refseq | NP_031408.1 |
| Chromosome Location | 3 H3; 3 73.6 cM |
| Function | acyl-CoA dehydrogenase activity; fatty-acyl-CoA binding; flavin adenine dinucleotide binding; identical protein binding; isomerase activity; medium-chain-acyl-CoA dehydrogenase activity; medium-chain-acyl-CoA dehydrogenase activity; oxidoreductase activity; oxidoreductase activity, acting on the CH-CH group of donors; |
| Pathway | Amino Acid metabolism, organism-specific biosystem; Beta oxidation of decanoyl-CoA to octanoyl-CoA-CoA, organism-specific biosystem; Beta oxidation of octanoyl-CoA to hexanoyl-CoA, organism-specific biosystem; Fatty Acid Beta Oxidation, organism-specific biosystem; Fatty acid metabolism, organism-specific biosystem; Fatty acid metabolism, conserved biosystem; Fatty acid, triacylglycerol, and ketone body metabolism, organism-specific biosystem; Leucine degradation, leucine => acetoacetate + acetyl-CoA, organism-specific biosystem; Leucine degradation, leucine => acetoacetate + acetyl-CoA, conserved biosystem; Malonate semialdehyde pathway, propanoyl-CoA => Acetyl-CoA, organism-specific biosystem; Malonate semialdehyde pathway, propanoyl-CoA => Acetyl-CoA, conserved biosystem; Metabolism, organism-specific biosystem; Metabolism of lipids and lipoproteins, organism-specific biosystem; Mitochondrial Fatty Acid Beta-Oxidation, organism-specific biosystem; Mitochondrial LC-Fatty Acid Beta-Oxidation, organism-specific biosystem; PPAR (Peroxisome proliferator-activated receptor) signaling pathway, organism-specific biosystem; PPAR signaling pathway, organism-specific biosystem; PPAR signaling pathway, organism-specific biosystem; PPAR signaling pathway, conserved biosystem; PPARA Activates Gene Expression, organism-specific biosystem; Propanoate metabolism, organism-specific biosystem; Propanoate metabolism, conserved biosystem; Regulation of Lipid Metabolism by Peroxisome proliferator-activated receptor alpha (PPARalpha), organism-specific biosystem; Valine, leucine and isoleucine degradation, organism-specific biosystem; Valine, leucine and isoleucine degradation, conserved biosystem; beta-Alanine metabolism, organism-specific biosystem; beta-Alanine metabolism, conserved biosystem; beta-Oxidation, organism-specific biosystem; beta-Oxidation, conserved biosystem; fatty acid beta-oxidation I, organism-specific biosystem; mitochondrial fatty acid beta-oxidation of saturated fatty acids, organism-specific biosystem; mitochondrial fatty acid beta-oxidation of unsaturated fatty acids, organism-specific biosystem; |
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