Human GLS/AAD20/CASGID ORF/cDNA clone-Mammalian (Non-Viral Vector) plasmid (NM_014905.5)

SKU: pGMPC000349
Size: 10 µg
Concentration: generally 0.5ug/ul, usually not less than 0.3ug/ul
Leading Time: 3-7 working days

Pre-made Human GLS/AAD20/CASGID Non-Viral expression plasmid (overexpression vector) for mouse GLS overexpression in unique cell transient transfection and stable cell line development.


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Product Description

Catalog ID pGMPC000349
Gene Name GLS
Accession Number NM_014905.5
Gene ID 2744
Species Human
Product Type Mammalian (Non-Viral Vector) plasmid (overexpression)
Insert Length 2010 bp
Gene Alias AAD20,CASGID,DEE71,EIEE71,GAC,GAM,GDPAG,GLS1,KGA
Fluorescent Reporter Null
Mammalian Cell Selection Puromyocin
Fusion Tag 3xflag (C-Terminal)
Promoter CMV
Resistance Amplicin

Reference




    Data / case study


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    Associated products


    Category Cat No. Products Name
    Target Antibody GM-Tg-g-TA039-Ab Anti-GLSK/ GLS/ AAD20 functional antibody
    Target Antigen GM-Tg-g-TA039-Ag GLS protein
    ORF Viral Vector pGMLV000116 Human GLS Lentivirus plasmid
    ORF Viral Vector pGMPC000349 Human GLS Mammalian (Non-Viral Vector) plasmid
    ORF Viral Vector vGMLV000116 Human GLS Lentivirus particle


    Target information

    Target ID GM-TA039
    Target Name GLS
    Gene ID 2744, 14660, 693520, 24398, 101080395, 488448, 525335, 100069617
    Gene Symbol and Synonyms 6330442B14,AAD20,B230365M23Rik,CASGID,DEE71,EIEE71,GAC,GAM,GDPAG,GLS,GLS1,Glut,KGA,RATGLUT
    Uniprot Accession O94925
    Uniprot Entry Name GLSK_HUMAN
    Protein Sub-location Secreted Protein/Potential Cytokines
    Category Therapeutics Target
    Disease Not Available
    Gene Ensembl ENSG00000115419
    Target Classification Not Available

    This gene encodes the K-type mitochondrial glutaminase. The encoded protein is an phosphate-activated amidohydrolase that catalyzes the hydrolysis of glutamine to glutamate and ammonia. This protein is primarily expressed in the brain and kidney plays an essential role in generating energy for metabolism, synthesizing the brain neurotransmitter glutamate and maintaining acid-base balance in the kidney. Alternate splicing results in multiple transcript variants. [provided by RefSeq, Jan 2012]



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