FLRT2 (NM_013231) Human Tagged ORF Clone Lentiviral Particle

SKU
RC224270L4V
Lenti ORF particles, FLRT2 (mGFP-tagged) - Human fibronectin leucine rich transmembrane protein 2 (FLRT2), 200ul, >10^7 TU/mL
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    LentiORF®

    Expression-ready ORF plasmid in lenti backbone

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$1,164.00
5 Weeks*
Specifications
Product Data
Type Human Tagged ORF Clone Lentiviral Particle
Tag mGFP
Target Symbol FLRT2
Vector pLenti-C-mGFP-P2A-Puro
Mammalian Cell Selection Puromycin
Sequence Data
ORF Nucleotide Sequence
The ORF insert of this clone is exactly the same as(RC224270).
ACCN NM_013231
ORF Size 1980 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_013231.4
RefSeq Size 7185 bp
RefSeq ORF 1983 bp
Locus ID 23768
UniProt ID O43155
Cytogenetics 14q31.3
Domains FN3, LRR, LRRCT, LRRNT, LRR_TYP
Protein Families Druggable Genome, Transmembrane
MW 74 kDa
Summary This gene encodes a member of the fibronectin leucine rich transmembrane (FLRT) family of cell adhesion molecules, which regulate early embryonic vascular and neural development. The encoded type I transmembrane protein has an extracellular region consisting of an N-terminal leucine-rich repeat domain and a type 3 fibronectin domain, followed by a transmembrane domain and a short C-terminal cytoplasmic tail domain. It functions as both a homophilic cell adhesion molecule and a heterophilic chemorepellent through its interaction with members of the uncoordinated-5 receptor family. Proteolytic removal of the extracellular region controls the migration of neurons in the developing cortex. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Sep 2016]
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*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.