OPCML (NM_001012393) Human Tagged ORF Clone Lentiviral Particle

SKU
RC212254L3V
Lenti ORF particles, OPCML (Myc-DDK tagged) - Human opioid binding protein/cell adhesion molecule-like (OPCML), transcript variant 2, 200ul, >10^7 TU/mL
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    LentiORF®

    Expression-ready ORF plasmid in lenti backbone

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$1,007.00
5 Weeks*
Specifications
Product Data
Type Human Tagged ORF Clone Lentiviral Particle
Tag Myc-DDK
Target Symbol OPCML
Synonyms IGLON1; OBCAM; OPCM
Vector pLenti-C-Myc-DDK-P2A-Puro
Mammalian Cell Selection Puromycin
Sequence Data
ORF Nucleotide Sequence
The ORF insert of this clone is exactly the same as(RC212254).
ACCN NM_001012393
ORF Size 1014 bp
OTI Disclaimer The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info
OTI Annotation This clone was engineered to express the complete ORF with an expression tag. Expression varies depending on the nature of the gene.
Shipping Dry Ice
Reference Data
RefSeq NM_001012393.1
RefSeq Size 6413 bp
RefSeq ORF 1017 bp
Locus ID 4978
UniProt ID Q14982
Cytogenetics 11q25
Protein Families Druggable Genome, Transmembrane
MW 37.27 kDa
Summary This gene encodes a member of the IgLON subfamily in the immunoglobulin protein superfamily of proteins. The encoded preprotein is proteolytically processed to generate the mature protein. This protein is localized in the plasma membrane and may have an accessory role in opioid receptor function. This gene has an ortholog in rat and bovine. The opioid binding-cell adhesion molecule encoded by the rat gene binds opioid alkaloids in the presence of acidic lipids, exhibits selectivity for mu ligands and acts as a GPI-anchored protein. Since the encoded protein is highly conserved in species during evolution, it may have a fundamental role in mammalian systems. Alternative splicing results in multiple transcript variants, at least one of which encodes an isoform that is proteolytically processed. [provided by RefSeq, Jan 2016]
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