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shRNA set against Mouse ISL1 (NM_021459.4)

For research use only. Not intended for any clinical use.

Cat. No. :   SHH320945

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Gene Information

Cat. No. SHH320945
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 ISL1
Gene Name Isl1 ISL1 transcription factor, LIM/homeodomain [ 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 Isl1 ISL1 transcription factor, LIM/homeodomain [ Mus musculus ]
Gene Symbol Isl1
Gene Description ISL1 transcription factor, LIM/homeodomain
GeneID 16392
Uni ProtID A2RSV5
mRNA Refseq NM_021459.4
Protein Refseq NP_067434.3
Chromosome Location 13 D2.3; 13
Function DNA binding; RNA polymerase II activating transcription factor binding; RNA polymerase II transcription coactivator activity; RNA polymerase II transcription coactivator activity; bHLH transcription factor binding; chromatin binding; enhancer sequence-specific DNA binding; estrogen receptor binding; ligand-dependent nuclear receptor binding; metal ion binding; protein binding; sequence-specific DNA binding; sequence-specific DNA binding transcription factor activity; zinc ion binding;
Pathway Heart Development, organism-specific biosystem; Incretin Synthesis, Secretion, and Inactivation, organism-specific biosystem; Integration of energy metabolism, organism-specific biosystem; Metabolism, organism-specific biosystem; Regulation of Insulin Secretion, organism-specific biosystem; Synthesis, Secretion, and Inactivation of Glucose-dependent Insulinotropic Polypeptide (GIP), organism-specific biosystem;
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