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ABCA8 Lentiviral Vector (Human) (CMV) (pLenti-GIII-CMV-GFP-2A-Puro)

Abca8 lentiviral vector (human) (cmv) (plenti-giii-cmv-gfp-2a-puro) Catalog: LV064274 | Size: 1.0 µg DNA | Price: €387.23 Supplier: ABM lentivectors ASK
DNA lentivector for transduction information: Lentiveral packaging plasmid DNA for non-viral plasmid transfection and direct use in plasmid expression. This DNA can alos be used for packaging into Lentiviral particles for high efficiency transduction and stably integrated expressions. GENTAUR suggests to use our ABM packaging mix LV003 of second generation virusses or the LV053, our 3rd Generation Packaging mixture. pLenti lentiviral plasmids DNAs are stored in 10milliMolar Tris/HCI with 1mM EDTA at a pH of 8 at -25 C. Vectors with selection markers like kanamycin, puromycin or cumate are available. Lentiviral technical files: <a href="https://www.abmgood.com/UbC-Lentivirus-System.html" target="_blank" title="https://www.abmgood.com/UbC-Lentivirus-System.html"><i class="fa fa-external-link" aria-hidden="true"></i></a> Lentivirus references: <a href="http://compbio.dfci.harvard.edu/compbio/research/labprotocols/contentBlocks/0/contentBlock_files/file15/Lentivirus_Production_and_Transfection_Protocol.pdf" target="_blank" title="http://compbio.dfci.harvard.edu/compbio/research/labprotocols/contentBlocks/0/contentBlock_files/file15/Lentivirus_Production_and_Transfection_Protocol.pdf"><i class="fa fa-external-link" aria-hidden="true"></i></a>

ABCA8 gene: ATP binding cassette subfamily A member 8

Summary

The membrane-associated protein encoded by this gene is a member of the superfamily of ATP-binding cassette (ABC) transporters. ABC proteins transport various molecules across extra- and intracellular membranes. ABC genes are divided into seven distinct subfamilies (ABC1, MDR/TAP, MRP, ALD, OABP, GCN20, White). This protein is a member of the ABC1 subfamily. Members of the ABC1 subfamily comprise the only major ABC subfamily found exclusively in multicellular eukaryotes. The encoded protein may regulate lipid metabolism and be involved in the formation and maintenance of myelin. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Jan 2014]

Organism: human (Homo sapiens)