B4galt1 (NM_022305) Mouse Untagged Clone

CAT#: MC203647

B4galt1 (untagged) - Mouse UDP-Gal:betaGlcNAc beta 1,4- galactosyltransferase, polypeptide 1 (B4galt1), (10ug)


  "NM_022305" in other vectors (4)

Reconstitution Protocol

USD 210.00

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Size
    • 10 ug

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Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Symbol B4galt1
Synonyms 4-GalT; 4-GalT1; B-1; b4Gal-T1; beta-1; beta4Gal-T1; GalT; Ggtb; Ggtb2
Vector PCMV6-Kan/Neo
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>BC053006
GCTGATCTCTCCAAAGTCCCGCGGCCAGGGGTGTCGGCTTTCCGCCGCAGGCGGCCGGTGCTGCGCTAGG TCCTAGCCCCCTCCCCCCGGCCCCTCCTTCGATCGCTGTGGTCGGGTAGCGCCTGGCGGGCGGCCTGCGG GCGGGCCGTCCTCTCAGCCGTAGCCCACCCCCTCTTAAAGCCGCGGCGGGAAGATGAGGTTTCGTGAGCA GTTCCTGGGCGGCAGCGCCGCGATGCCGGGCGCGACCCTGCAGCGGGCCTGCCGCCTGCTCGTGGCCGTC TGCGCGCTGCACCTCGGCGTCACCCTCGTCTATTACCTCTCTGGCCGCGATCTGAGCCGCCTGCCCCAGT TGGTCGGAGTCTCCTCTACACTGCAGGGCGGCACGAACGGCGCCGCAGCCAGCAAGCAGCCCCCAGGAGA GCAGCGGCCGCGGGGTGCGCGGCCGCCGCCTCCTTTAGGCGTCTCCCCGAAGCCTCGCCCGGGTCTCGAC TCCAGCCCTGGTGCAGCTTCTGGCCCCGGCTTGAAGAGCAACTTGTCTTCGTTGCCAGTGCCCACCACCA CTGGACTGTTGTCGCTGCCAGCTTGCCCTGAGGAGTCCCCGCTGCTCGTTGGCCCCATGCTGATTGACTT TAATATTGCTGTGGATCTGGAGCTTTTGGCAAAGAAGAACCCAGAGATAAAGACGGGCGGCCGTTACTCC CCCAAGGACTGTGTCTCTCCTCACAAGGTGGCCATCATCATCCCATTCCGTAACCGGCAGGAGCATCTCA AATACTGGCTGTATTATTTGCATCCCATCCTTCAGCGCCAGCAACTCGACTATGGCATCTACGTCATCAA TCAGGCTGGAGACACCATGTTCAATCGAGCTAAGCTGCTCAATATTGGCTTTCAAGAGGCCTTGAAGGAC TATGATTACAACTGCTTTGTGTTCAGTGATGTGGACCTCATTCCGATGGACGACCGTAATGCCTACAGGT GTTTTTCGCAGCCACGGCACATTTCTGTTGCAATGGACAAGTTCGGGTTTAGCCTGCCATATGTTCAGTA TTTTGGAGGTGTCTCTGCTCTCAGTAAACAACAGTTTCTTGCCATCAATGGATTCCCTAATAATTATTGG GGTTGGGGAGGAGAAGATGACGACATTTTTAACAGATTAGTTCATAAAGGCATGTCTATATCACGTCCAA ATGCTGTAGTAGGGAGGTGTCGAATGATCCGGCATTCAAGAGACAAGAAAAATGAGCCCAATCCTCAGAG GTTTGACCGGATCGCACATACAAAGGAAACGATGCGCTTCGATGGTTTGAACTCACTTACCTACAAGGTG TTGGATGTACAGAGATACCCGTTATATACCCAAATCACAGTGGACATCGGGACACCGAGATAGCATTTTT AGTACCAATAAGAGACCTGAGAATGGCCGGAGACCTCAGATATGTGTCTCTGCCAGTTGACTGGGCTGGT CCCTCTCATTTGTACAGTCTGAATGACAGTTCTTCTTATCATTCAGACGTCCCTCCAGATGCCCAGGGTG AGTGTAACATTTACCCACAACCTGGCTCGGCACTGGATGAAATTCTACAAGGTGAGTGGAGTGTAAAACT GGTCAGCCCTTGGAGAGACTTCTTGGTTGTGTCACCCCCAAAGAGTCAGAACTGTACACAGTTCAAAACT TAGTGACTGTGGGTCACATTCCCACTGTTGAAACTGCTAAATTGTGACCTGGGGAAGGACTTTGCTTTAG TCGGTGATGTTCGTACTTGGTGACAAATTGAGACTGCTGCTGGATTCAGATTGACAAGATTTTCTTGGAT TTTTTTTTTATACGAAAATCAAAATTTCAATCAGTCTCGTGCTCTGTCCCTTTACATCGGTATGCGACTA TTACAATCACTGTGTGTGTGTCTTTTCTTAGCAAAGGCGTTTTAAAACTTGAGCCTGGACCTTGGGGTCC TGTAGTGTGTGGATTCCAAGGCCTTGCCCTCAGAGCAGGGGCCTGGGCACTCTCACTCACGTGGCCTGTC TCCAGATCCCTGTCTGATTTCTGAATGTAAAGAGGCTTTTTGTTTTGTTTTTGTTTTTGTTTTTAGAAGC AGTTCGTAGTATTTGAAAGAATAAATCAAGTTTTGATTATGCTATAGGTTGATTTTTGTGTTGATCCAAA TCAGAATAGCTATTGAGTGTTTAAGTCATGACTTTATTTTTCTGGGCATGCTATATAAACTTGAATTTCC TATGTATTTTTATTGTGGTATTTTAAATGTGGGGGAAGGGATTGGGTATTTTTTAGGGGAAAAAAAATAA TGTATGCTGTAGTGGTCAAAGGAGCTCTGATTGAGCTGGCAGGCCAGGTTTTGTAAAGAGCAAAATTACT TTCAGGTCCCTTGTTGAGGGAACAGGTCAGCGTTATCCTGCCAGACATCTGGGTCAGGAACTTGGGAGAC AACATCTGCTTACCTGGCAGAACTCCCCACTCCACTCCCCCAGGTGGGCTGGGTGGAAGGACCCTCAGCC ACCAAGAACTGACGCCCTCATGGCCCTAGACTATGGGGTTGAAAACTCATAGCAGTCAGGTTTGTTTACC ATCTCTCCGAGCCTCCACCACACTCCCTGACCCACCCAACGTCTCCAGTTCTTATTGTTCTCCTTCCTTC CTTCTTTCCTTTCCCTTCTCACCTCTTTGCCTCCTTCCCTAAAATTCGCTGTGGCCCTCGGGGTCAGACT GTTCATTCTCCAGCATGATTGTGCCTTTTAATTAGAGGTCTAGAAAGTTCACCTGAACCCACACCCCCTT CTTCCTGAGAATTCTGGTGCCTCTAAAGCCCCTCCTTGCCACTCAGGGTTTTAGTGGGTGCTCCCACTGC TCAGTGTACCCATGAGCTGTCGTCATTCACAGAGCCCTGTGCCAGGCCGTGTTCTGTGCCTGCCTGCGGT GATGTAGCCAGAAGCACGTACTCAGGTCATCAAGCCGAGAGGGCGTCAAAGAGGAAGCCTGGGCTGGGAT CCTTAGGCTCAGCTGTCTGTCTAATCCCAGAGCTAAGCCCTTTCTGCTTCGGGCAGCCTGGACTCCAGCC CTGAGTATAGAGGCGGTGTGGATGGCTGGCCCTCATCCTACCTGTGTCTTTATTGCTTTGATCACCACAG TCTCTAACTTGCTGCTTTCTCCAGAAGCCTTTTTATGTATGGGTTAGAAACTCTTTTTTCCCTAGTCAGA GCAGCCAGGCTGTACAAAATCTGTGCTCTCTCGGTTCCCCATGCCTCTAGAAGGCCGTTAAAACCAAGAC TGGATGCACTGAGAGGAGTCTTTTTTTTTTTTTTTTTTTTTTTCTGTCCCAAGATCCTGACTTTTCCAAA GTGCCTTAAAAGAAGGGAGACAGACTCATTGAGTGTGTTGCTTCTTTCTCTCCTAAAGCAAACCTCTGCC TTTTCTCTATGCTGTTCGTGTTGGGTTTTGTTCATGTCAGATACGTGGTTCATTCTCAGGACCAAGGGAA ACTGTCTTGCCTGTCCTCCTATCTCCTCCCTTTCAGCATCCTTTGGGGAACCTCCAGCCCAAGGCACCGT TAGGCTTGGGCATTAGCCTGGCCCAAGAGATGCCACTGGGGACTAGAGGACAGAAGGGGACGTTCCCTTC ACCTGGGAATTCTCACCCTGGTGTCAACATGCTGTGCCTTTCTCTTTCTCTATTTTTGTTGGTGACCTGG ATAGTGTGGCCTTTGGGACAGATCAGAGGCACAGGAAAGCAAAGGAAATGTGCCACCCTTTAGCCTGGCA GGGTCTCCCTGCCCACTGGGCTGTTCCAGACCTGTGATACTGTGTTTGTATGTTGATATCCCATGTGTAC AAATGTGTTTACCATTGGGGCTGGGGGTGGGTGGCTGTCTCTGACCTTGGCATTCAGAACAGACATCTGT ATTTTTGCCTTTGAAATGCAGTAATATAACGTGAATAAATGACCTTATCTTTGTAAAAAAAAAAAAAAAA AAAAAAAAAAAAAAAAAAA
Restriction Sites AscI-NotI     
ACCN NM_022305
ORF Size 1200 bp
Insert Size 1200
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
Reference Data
RefSeq BC053006, AAH53006
RefSeq Size 4009
RefSeq ORF 1200
Locus ID 14595
Gene Summary This gene encodes two distinct enzyme isoforms, a long membrane-bound form and a short soluble form. These alternate isoforms are thought to be produced through alternative nested transcription initiation and different in-frame start codon usage. These enzymes catalyze the transfer of galactose to acceptor sugars, such as N-acetylglucosamine and glucose. The long form of this enzyme is localized to the trans-Golgi membrane and is involved in glycoconjugate biosynthesis. The short form functions in lactose biosynthesis though formation of a heterodimer with alpha-lactalbumin. [provided by RefSeq, Nov 2012]

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