Ceramide glucosyltransferase (UGCG) (NM_003358) Human Untagged Clone

CAT#: SC118052

UGCG (untagged)-Human UDP-glucose ceramide glucosyltransferase (UGCG)


  "NM_003358" in other vectors (6)

Reconstitution Protocol

USD 310.00

In Stock*

Size
    • 10 ug

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Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Symbol UGCG
Synonyms GCS; GLCT1
Vector pCMV6-XL5
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>OriGene ORF within SC118052 sequence for NM_003358 edited (data generated by NextGen Sequencing)
ATGGCGCTGCTGGACCTGGCCTTGGAGGGAATGGCCGTCTTCGGGTTCGTCCTCTTCTTG
GTGCTGTGGCTGATGCATTTCATGGCTATCATCTACACCCGATTACACCTCAACAAGAAG
GCAACTGACAAACAGCCTTATAGCAAGCTCCCAGGTGTCTCTCTTCTGAAACCACTGAAA
GGGGTAGATCCTAACTTAATCAACAACCTGGAAACATTCTTTGAATTGGATTATCCCAAA
TATGAAGTGCTCCTTTGTGTACAAGATCATGATGATCCAGCCATTGATGTATGTAAGAAG
CTTCTTGGAAAATATCCAAATGTTGATGCTAGATTGTTTATAGGTGGCAAAAAAGTTGGC
ATTAATCCTAAAATTAATAATTTAATGCCAGGATATGAAGTTGCAAAGTATGATCTTATA
TGGATTTGTGATAGTGGAATAAGAGTAATTCCAGATACGCTTACTGACATGGTGAATCAA
ATGACAGAAAAAGTAGGCTTGGTTCACGGGCTGCCTTACGTAGCAGACAGACAGGGCTTT
GCTGCCACCTTAGAGCAGGTATATTTTGGAACTTCACATCCAAGATACTATATCTCTGCC
AATGTAACTGGTTTCAAATGTGTGACAGGAATGTCTTGTTTAATGAGAAAAGATGTGTTG
GATCAAGCAGGAGGACTTATAGCTTTTGCTCAGTACATTGCCGAAGATTACTTTATGGCC
AAAGCGATAGCTGACCGAGGTTGGAGGTTTGCAATGTCCACTCAAGTTGCAATGCAAAAC
TCTGGCTCATATTCAATTTCTCAGTTTCAATCCAGAATGATCAGGTGGACCAAACTACGA
ATTAACATGCTTCCTGCTACAATAATTTGTGAGCCAATTTCAGAATGCTTTGTTGCCAGT
TTAATTATTGGATGGGCAGCCCACCATGTGTTCAGATGGGATATTATGGTATTTTTCATG
TGTCATTGCCTGGCATGGTTTATATTTGACTACATTCAACTCAGGGGTGTCCAGGGTGGC
ACACTGTGTTTTTCAAAACTTGATTATGCAGTCGCCTGGTTCATCCGCGAATCCATGACA
ATATACATTTTTTTGTCTGCATTATGGGACCCAACTATAAGCTGGAGAACTGGTCGCTAC
AGATTACGCTGTGGGGGTACAGCAGAGGAAATCCTAGATGTATAA

Clone variation with respect to NM_003358.1
348 t=>c
>OriGene 5' read for NM_003358 unedited
AGCATTTTGTAATACGACTCACTTATAGGGCGGCCGCGAATTCGCACGAGGCACCCCCCT
CCGCCCTTTCCTCTCCCCACCTTCCTCTCGCCTCCCGCGCCCCCGCACCGGGCGCCCACC
CTGTCCTCCTCCTGCGGGAGCGTTGTCCGTGTTGGCGGCCGCAGCGGGCCGGGCCGGTCC
GGCGGGCCGGGGGATGGCGCTGCTGGACCTGGCCTTGGAGGGAATGGCCGTCTTCGGGTT
CGTCCTCTTCTTGGTGCTGTGGCTGATGCATTTCATGGCTATCATCTACACCCGATTACA
CCTCAACAAGAAGGCAACTGACAAACAGCCTTATAGCAAGCTCCCAGGTGTCTCTCTTCT
GAAACCACTGAAAGGGGTAGATCCTAACTTAATCAACAACCTGGAAACATTCTTTGAATT
GGATTATCCCAAATATGAAGTGCTCCTTTGTGTACAAGATCATGATGATCCAGCCATTGA
TGTATGTAAGAAGCTTCTTGGAAAATATCCAAATGTTGATGCTAGATTGTTTATAGGTGG
CAAAAAAGTTGGCATTAATCCTAAAATTAATAATTTAATGCCAGGATATGAAGTTGCAAA
GTATGATCTTATATGGATTTGTGATAGTGGAATAAGAGTAATTCCAGATACGCTTACTGA
CATGGTGAATCAAATGACAGAAAAAGTAGGCTTGGTTCACGGGCTGCCTTACGTAGCAGA
CAGACAGGGCTTTGCTGCCACCTTAGAGCANGTATATTNTGGAACTTCACATCCAAGATA
CTATATCTCTGCCAATGTAACTGGTTTCAAATGTGTGACAGGAAATGTCTGTTTTAATGA
GAAAGATGTGTTGGNATCAAGCAGGAGGACTTTATAGCTTTTGCTCAGTACATTGCCCGA
AGATACTTTATGGCCNAGCGATAGCTGACCGAGGTTGGAGGTTNGCATGTCNCACTCAGT
GCATGCC
>OriGene 3' read for NM_003358 unedited
GCACGCAATCTAAAGTCGAGTTTTTTTTTTTTTTTTTTCTGTTTGTTTCTGCAAGGCCTA
GCTATCTTATTACAATTTATATTTGCTCTGCAACAACTACAAGAGGTAGGCATAAAGCAT
GAAAAAGTTTCTCAGTTAGTACCTCGCCATGTGTTGTTCACTGCACAAAACCATTCACTT
TGGACATGAATAGTCATTCCTTCTATTATCTTCTAAACTCTAAAGCAAAGCTGCTGCCAC
CCGTAAATGTTCTAAAAGAGTGTACTCACAAGTAAGAAACTTTCTCTACTGAAGGATACT
GTCACAGAGTTTGTTGCAGAGCATCTATATATATATTTATTTATTTATTTTAAAAAAATA
AACAACAATGATGAACGAACCCAGGTTCCTAGAACCAATTCTCTTGATTCTCTACTTCCA
CAAAATAAAGTGTATCATTTGGCCAAGACTACAGATGTGTTTTTTTTTTTTTTCACAGAT
GCAAGTGCCATGCAAAAATAAATTAAAGAACAGATCCCAAAACATACATGTGATAAAACT
ACAGAAGGTAGATTTTTAAAAGCATTTATATAAACATAATTTATAATACTTCTCTTTTTT
CCTTTATATACAGTCACAAAGCTGTAGTTATACATCTAGGATTTCCTCTGCTGTACCCCC
ACAGCGTAATCTGTAGCGACCAGTTCTCCAGCTTATAGTTGGGTCCCATAATGCAGACAA
AAAAATGTATATTGTCATGGATTCGCGGATGAACCANGCGACTGCATAATCAAGTTTGAA
AAAACAGTGTGCACCCTGGACACCCTGAGTTGATGTGGCAAAATAAACCTGCCCGCCATG
ACCCTGAAAATACCTATTTCCCTCTGACCCTGGGGGCTGCCATCCATATTAAACTGGCAC
AAGCATCCGAATTGGCTCACAATTATGACCAGAAACATGTATCCGANTTGGCCCACCGAT
C
Restriction Sites NotI-NotI     
ACCN NM_003358
Insert Size 1710 bp
OTI Disclaimer Due to the inherent nature of this plasmid, standard methods to replicate additional amounts of DNA in E. coli are highly likely to result in mutations and/or rearrangements. Therefore, OriGene does not guarantee the capability to replicate this plasmid DNA. Additional amounts of DNA can be purchased from OriGene with batch-specific, full-sequence verification at a reduced cost. Please contact our customer care team at custsupport@origene.com or by calling 301.340.3188 option 3 for pricing and delivery.

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
Product Components The cDNA clone is shipped in a 2-D bar-coded Matrix tube as dried plasmid DNA. The package also includes 100 pmols of both the corresponding 5' and 3' vector primers in separate vials. Every lot of primer is tested to provide clean sequencing of OriGene TrueClones.
Reconstitution 1. Centrifuge at 5,000xg for 5min.
2. Carefully open the tube and add 100ul of sterile water to dissolve the DNA.
3. Close the tube and incubate for 10 minutes at room temperature.
4. Briefly vortex the tube and then do a quick spin (less than 5000xg) to concentrate the liquid at the bottom.
5. Store the suspended plasmid at -20°C. The DNA is stable for at least one year from date of shipping when stored at -20°C.
Reference Data
RefSeq NM_003358.1, NP_003349.1
RefSeq Size 1637 bp
RefSeq ORF 1185 bp
Locus ID 7357
Cytogenetics 9q31.3
Domains Glycos_transf_2
Protein Families Transmembrane
Protein Pathways Metabolic pathways, Sphingolipid metabolism
Gene Summary 'This gene encodes an enzyme that catalyzes the first glycosylation step in the biosynthesis of glycosphingolipids, which are membrane components containing lipid and sugar moieties. The product of this reaction is glucosylceramide, which is the core structure of many glycosphingolipids. [provided by RefSeq, Dec 2014]'

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