Mouse MDGA2 Gene ORF cDNA clone expression plasmid,without any tag

Catalog Number:MGE748-UT

Gene
Species
Mouse
NCBI Ref Seq
RefSeq ORF Size
2850bp
Gene Synonym
Mamdc1, 6720489L24Rik, 9330209L04Rik, Mdga2
Sequence Description
Identical with the Gene Bank Ref. ID sequence.
Description
Full length Clone DNA of Mouse MAM domain containing glycosylphosphatidylinositol anchor 2 Gene ORF cDNA clone expression plasmid,without any tag
Plasmid
Promoter
Enhanced CMV mammalian cell promoter
Vector
pCMV3-untagged
Restriction Site
Protein Tag
Tag Sequence
Sequencing Primers
Forward:T7(TAATACGACTCACTATAGGG) Reverse:BGH(TAGAAGGCACAGTCGAGG)
Quality Control
The plasmid is confirmed by full-length sequencing.
Screening
Antibiotic in E.coli
Ampicillin
Antibiotic in Mammalian cell
Hygromycin
Application
Stable or Transient mammalian expression
Storage & Shipping
Shipping
Each tube contains lyophilized plasmid.
Storage
The lyophilized plasmid can be stored at ambient temperature for three months.
Background Information
MAM domain-containing glycosylphosphatidylinositol anchor protein 2, also known as MAM domain-containing protein 1, MDGA2 and MAMDC1, is a cell membrane protein which contains six Ig-like (immunoglobulin-like) domains and one MAM domain. Analyses of the full-length coding region of MDGA1 and MDGA2 indicate that they encode proteins that comprise a novel subgroup of the Ig superfamily and have a unique structural organization consisting of six immunoglobulin (Ig)-like domains followed by a single MAM domain. Biochemical characterization demonstrates that MDGA1 and MDGA2 proteins are highly glycosylated, and that MDGA1 is tethered to the cell membrane by a GPI anchor. The MDGAs are differentially expressed by subpopulations of neurons in both the central and peripheral nervous systems, including neurons of the basilar pons, inferior olive, cerebellum, cerebral cortex, olfactory bulb, spinal cord, and dorsal root and trigeminal ganglia. The similarity of MDGAs to other Ig-containing molecules and their temporal-spatial patterns of expression within restricted neuronal populations, for example migrating pontine neurons and D1 spinal interneurons, suggest a role for these novel proteins in regulating neuronal migration, as well as other aspects of neural development, including axon guidance.
References
  • Litwack,ED. et al., 2004, Mol Cell Neurosci. 25 (2): 263-74.
  • Hellquist, A. et al., 2009, PLoS One. 4 (12): e8037.
  • Sano,S. et al., 2009, Genesis. 47 (8):505-13.
  • Bucan, M. et al., 2009, PLoS Genet. 5 (6):e1000536.
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