Golga4 (NM_018748) Mouse Untagged Clone

CAT#: MC225236

Golga4 (untagged) - Mouse golgi autoantigen, golgin subfamily a, 4 (Golga4), (10ug)



  "NM_018748" in other vectors (2)

CNY 35910.00


货期*
13周

规格
    • 10 ug

Product images

推荐一起购买 (3)
TurboFectin Transfection Reagent (1 mL in 1 vial)
    • 1 ml in 1 vial

CNY 4090.00


DH5α Chemically Competent Cells (≥10^8 cfu/μg of pUC19 DNA)
    • 5 x 200 ul

CNY 1280.00


Forward sequencing primer VP1.5, Reverse sequencing primer XL39, 100pmoles each
    • 100 pmol

CNY 480.00

Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Synonyms AI225887; AU019508; Olp-1
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC225236 representing NM_018748
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGTTCAAGAAGCTGAAGCAGAAGATCAGCGAGGAGCAGCAGCAGCTGCAGCAGGCGTTAGCCCCTGCTC
AGGCTTCCTCCAGCTCTTCAACACCAACAAGGACAAGAAGCAGGACATCTTCATTTACAGACCAGCTTGA
TGACGTGACACCCAACAGAGAGAATGCATCAACTCAAGCAACAAAATCTCCAGATGGTGTCAGTAAAGAT
GAGTCGTCCCCCTCTCAGTCGGGTGACACACAGACTTTTGCGCAGAAGCTCCAGCTCCGAGTACCTTCCA
TGGAGTCTCTGTTTCGAAGTCCCATAAAGGAATCCCTGTTTCGGTCTTCTAAAGAGCCTTTGGTCCGGAC
GTCCTCCAGAGAGTCCTTGAACCAGCTTGACCTGGACTGTTCTGCTGCGGCCTTTGACCCCCCTTCTGAT
ATGGAGAGCGAGGCTGAAGACGCACCATGGAACTCAGACGGTCTCAGCAGAGAGCAGCTGCTTCAGCGGC
TGCGCAGAATGGAGCGAAGCCTAAGTAGCTACAGAGGGAAGTACTCCGAGCTCGTCACAGCGTTTCAGAC
TCTTCAGAGAGAGAAGAAAAAGCTTCAAGGTATATTGAGTCAGAGTCAAGATAAATCACTTCGGAGAATT
TCAGAATTAAGAGAGGAGCTGCAAATGGACCAGCAAGCAAAGAAACATCTTCAGGACGAGTTTGATGCAT
GTTTGGAGGAGAAAGATCAGTATATCAGTGTTCTCCAGACTCAGGTTTCTCTTCTAAAGCAGCGATTACA
GAATGGCCCAATGAATGTTGATGCTCCCAAACCCCTCCCTCCCGGGGAGCTCCAGGCAGAAGTGCACGGT
GACACGGAGAAGATGGAGGGCGTCGGGGAACCAGTGGGAGGTGGGACTTCCGCTAAAACCCTGGAAATGC
TCCAGCAAAGAGTGAAACGTCAGGAGAATCTGCTTCAGCGCTGTAAGGAGACAATTGGGTCCCACAAGGA
GCAGTGCGCACTGCTGCTGAGTGAGAAGGAGGCACTGCAGGAGCAGTTGGATGAAAGGCTGCAGGAGCTG
GAAAAGATGAAGGAGCTTCATATGGCTGAGAAGACTAAACTTATCACTCAGTTGCGTGATGCAAAGAACT
TAATTGAACAGCTTGAACAAGATAAGGGGATGGTAATAACCGAGACGAAGCGGCAAATGCTTGAGACCCT
GGAACTGAAAGAAGATGAAATTGCTCAGCTTCGTAGTCATATCAAACAGATGACTACCCAGGGAGAGGAA
CTGCGGGAACAGAAAGAAAAGTCTGAAAGAGCTGCTTTTGAGGAACTTGAAAAAGCCTTGAGTACAGCCC
AAAAAACTGAAGATGCACAGAGAAGAATGAAGATGGAGATGGATGAACAGATGAAGGCTGTTGAGAGAGC
GAGCGAGGAGGAGCGCCTCCGCCTTCAGCATGAGCTGAGTCGGGTGAGGCAGGAGGCTGCCAGCATGGCA
AAGAAGAACTCAGAAGAACAAGTTGCTGCACTCCAGAAGCTGCATGCAGAGGAGCTCGCCAGCAAAGAGC
AGGAGCTGAGCAGGAGGCTTGAGGCCCGGGAAAGGGAGCTGCAGGAGCAGATGAGAATAGCTCTCGAAAA
GAGTCGATCAGAATATTTGAAGCTCACCCAAGAAAAAGAGCAGCAAGAATCCTTGGCTTTAGAAGAGTTA
GAGCTGCAGAAAAAAGCCATCCTTACAGAGAGTGAAAATAAACTCCAGGAACTTGGGCAAGAAGCAGAGG
CTTACCGAACCAGAATTCTTGAATTGGAAACCTCTTTGGAAAAAAGTTTACAAGAAAGCAAAACACAGTC
AGAGCATCTGGCTGTTCATCTGGAAGCTGAGAAGAATAAGCACAATAAAGAACTCACAGCCCTGGCTGAG
CAGCATAGGACAGAAGTGGAGGGCCTCCAGCAGCAGCAGGACAGCCTGTGGACTGAGAGACTCCAAAGCC
TCTCTCAGCAGCATCAGGCTGCTGTGGAGGAGCTCAGAGAGAAGTATCAGCAAGAGAAAGATGCACTACT
GAAGGAGAAGGAGAGTCTCTTCCAGGCCCACATACAAGACATGAATGAAAAGACCTTGGAGAAGCTTGAC
AAGAAGCAAATGGAACTGGAATCTGTCTCTTCTGAGCTGTCAGAAGCACTGAGAGCTCGGGACCAGCTTG
CAGAGGAGCTTTCTGTCCTAAGAGGTGATGCAGATAAAATGAAACAGGCTTTAGAGGCCGAGCTGGAGGA
GCAGCGGCGTCACCACCAGCGTGAGGTTGGCAGCATCAGTGAGCAACAAGAACTAACCGTCCGCAGAGCT
GAGAAGGCACTGAAAGATGAGCTCAGTCGGCTGGGGGCTCTGCTGGACGAGAGGGACGAGCACCTGAGAG
AGCGGCAGGCCCGGGTGCAGGACCTGGAAGCTCATCTTCAGAAGTCTGCCGGGGAGCTCCAGCAGGCCTT
GGCCAAACTAGATCTCTTGCACTCTGAGCAGAGCGCCGCACGCGAGCAGGCAGGTGCGTATGAGGAGCAG
CTGGCCCAAATGCAGCAAAAGGTGTTAGACCTGGAAACAGAGAAGAGCCTTCTTACCAAGCAGGTAGTGG
AGATGGAAACACACAAAAAGCATGTGTGTGAGGAATTAGATGCTCAGAGAGCTCAAGTGCAGCAGCTGGA
GAGACAGAGGAGTGAGCTGGAGGAGAAGGTCAGGTCGCTAGCCCAGCTCCAGGACTCACAGCTCAAGAAC
AGTACTGTGGAGAAGGAGCAGGCTCGGCAAAGCCTGATGGAAAAGGAAAACATCATCTTACAGATGCGAG
AGGAGCAGGCCAAGGAAATCGAGATCCTCAAACAGACATTGTCTTCTAAAGAAGAGAGCATTAGTATTTT
GCATGAAGAATATGAAACCAAATTTAAAAATCAGGAAAAAAGAATGGAAAAAATTAAGCAGAAAGCAAAA
GAAATGCAAGAAACAAAGAAAAAGTTGTTGGATCAGGAAGCCAAACTTAAAAAAGAGCTTGAAAATACTG
TCCTAGAGCTTAGTCAGAAAGAGAAGCAGTTCAATGCGCAGATCCTGGAAATGGCACAGGCTAACTCAGC
TGGAATCAGCGACACGGTGTCGAGACTGGAGGAGAACCAGAGGCAGCAGATAGAAAGCCTGACCGGGGCT
CATCAGCGAAAACTTGATGATGTCATAGAGGCCTGGGAAAAGAAGCTGAGTCAGCAAGCTGCAGAGCTCC
GGGACAAGCATGCAGAGCAGATGGAGGAGAAGGAGCAGGGGCTGGGAGAGCTGAGGCAGAAGGTCCGCAT
AGTCCAGTCTGAAAAAGAGGAGCTGACTAAGGAGGTGGCGCGATTGAAAGAGGCGGTCAGTGGGCAGGAC
GTGGCACTAGCTGGCCTGCAGGGACAGCTGGAGCAGAAGTCTGCTGTCATCGTTTCCCTTTCGGAGCGTG
AATCTCAGCTGCAGTCACAAGTGGAAAAGCTGGAAGCTGATTTGGGTTGTTCTCTGAGTGAAAAGCTTTC
CCTTCAAGAAGAGCTGGCTGAGCTGAAACTGCTGGCAGACAAGAGTCAGCTGAGGGTCTCCGAGCTGACG
GGCCAGGTGCAGGCTGCGGAGAAGGAGCTCCAGAGCTGTAAGTCTCTGCATGAGCTCAGCAAGAAGAGCC
TGGAGGACAAGAGCTTGAACCTCAAAAGCTTGCTTGAGGAGCTAGCATCTCAGCTAGACAGTCGCTGTGA
GAGAACCAAAGCTCTGTTAGAAGCCAAGACGAACGAACTAGTGTGCACCAGCCGTGACAAAGCCGACGCT
ATTCTCGCTAGGCTGTCCCAATGCCAGCGCCACACAGCCACAGTTGGGGAGGCGCTGCTCAGGAGAATGG
GCCAGGTTTCTGAGTTAGAAGCACAACTTACACAGCTGACAGAGGAGCAGCGCACACTAAAGAGCTCTTT
TCAGCAGGTTACCAATCAGCTGGAAGAGAAAGAGAAGCAGATTAAGACCATGAAGGCTGACATTGAAGGT
CTTCTCACAGAAAAAGAAGCCTTACAGCAAGAAGGAGGCCAGCAGCGGCAGGCGGCCTCTGAGAAGGAGT
CCTGCATCACACAGCTGAAGAAGGAGTTAGCGGAGAACATCAATGCCGTCACACTACTGAGAGAAGAGCT
GTCGGAGAAGAAGTCTGAGATTGCCAGTCTTAGCAAGCAGTTAAGTGATCTCGGTGCTCAGCTGGAGAGC
AGCATCAGCCCGAGTGACAAGGCCGAAGCCATCTCTGCCCTGAGCAAGCAGCACGAGGAACAAGAGCTGC
AGCTGCAAGCTCAGCTTCAGGAGCTGTCTCTGAAAGTCGATGCTCTGAGTAAAGAGAAAATGTCTGCCCT
TGAGCAGGTGGATCATTGGTCCAACAAGTTCTCAGAGTGGAAGAAAAAAGCACAGTCCAGACTTGCCCAG
CACCAAAGCACTATTAAAGACTTGCAGGCACAGCTAGACGTAAAAGCCACGGACGCTCGTGAGAAGGAGG
AGCAGATATGTTTACTGAAGGAAGACCTTGATCGGCAGAATAAAAAGTTTGAATGTTTAAAAGGCGAGAT
GGAAGTCAGGAAGAGCAAGATGGAGAAAAAGGAGTGTGACTTAGAGACTGCGTTAAAGACTCAGACAGCA
AGGGTCGTTGAATTAGAAGACTGCGTTACTCAGAGGAAAAAAGAAGTTGAGTCCCTAAATGAAACACTTA
AGAATTACAACCAGCAGAGGGACACTGAGCACAGTGGGCTGGTTCAGAGACTTCAGCACTTGGAAGAGTT
GGGAGAAGAGAAAGACAACAAGGTTAGGGAGGCTGAAGAGACCGTCCTGAGACTACGAGAGCACGTGTCC
TCGCTGGAAGCTGAACTTGGAACTGTGAAGAAGGAACTAGAACATGTAAATTCAAGTGTGAAAAGCAGAG
ATGGGGAGCTGAAAGCTTTAGAAGACAAACTTGAGTTAGAAAGTGCTGCAAAAGTGGAGCTGAAGAGGAA
GGCCGAGCAGAAGATCGCTGCCATCAGGAAGCAGCTCTTGTCTCAGATGGAAGAGAAAACCCAGCGGTAT
GCGAAGGACACAGAGAACCGACTGAGTGAGCTGAGTGCACAATTAAAAGAAAGAGAAAAGCAAGTTCACA
GCCTAGAAGACAAACTTAAAAACCTGGAGAGTTCTCCACACCCAGAAGTGCCAGCGGTGTCCAGATCTAT
GCAAAGTGTGGCAGCGTCTCCCGAGCAAGAGGCTCCAGATTCCCAGGACTGCACACACAAGGCCTGTAAA
GAAAGACTCTGCATGCTGCAAAGACGTTTAAGTGAAAAAGAGAAGCTGCTGCGCAGGCTGGAGCAGGGCG
AAGGCGAGGCGAGGCCATCGCAGCCTGAGGCTCAGCACAGGGCGCTCTCTGGAAAGTTAGACTGCACTAG
AGCCAGGCAGCTTGAAGATCACGTTTTGATAGGATGTCTTCCAGAAGAACTCGAAGAAAAGATGAAATGT
TCCTTAATTGTGTCTCAGCCCATGGGAGAAGAAACTGGTAACAACACAGGGGTGAAGCAGAATTGGGCAA
GTGTGGTTGACAGTGTTCAGAAAACCCTCCAGGAAAAGGAGCTCACTTGCCAGGCCCTAGAGCAAAGGGT
GAAAGAACTGGAGTCGGACTTAGTAAGAGAGAGGGGCGCCCATAGACTTGAAGTGGAAAAGTTGACCTTA
AAATATGAAAAATCGCAATCTTCCCAGCAAGAAATGGATGGGGAAAATAAATGTGTAGAAGTGTTGGAAG
ACAGGCCTGAGGAAAACTCCCAATCCCATGAGATCCAGTCAAACGTGGGGACCGTGGACGGCCTGCGCAG
CGACCTGGAGTCCAAGTTGACAGGAGCGGAGCGGGACAAGCAGAAGCTGAGCAAGGAGGTGGCGAGGCTG
CAGAAGGAGCTGCGAGCTCTGCGGAGGGAGCACCAGCAGGAGCTGGACATCCTGAAGAGGGAGTGCGAGC
AGGAGGCCGAGGAAAAGCTCAAACAGGAGCAAGAGGATCTTGAGTTGAAGCACACGTCCACACTGAAGCA
GCTGATGCGGGAGTTTAACACACAACTGGCACAGAAGGAGCAGGAGCTGGAAAGAACTGTCCAGGAGACC
ATTGATAAGGCCCAAGAGGTGGAAGCCGAACTTCTGGAAAGCCACCAAGAAGAGACACAGCAGTTGCATA
GAAAGATCGCGGAGAAAGAGGATGATCTGAGAAGGACAGCCAGGAGATACGAGGAGATACTCGATGCCCG
TGAAGAAGAAATGACTGGCAAAGTGACGGACCTGCAGACCCAGCTCGAGGAGCTCCAGAAGAAATACCAG
CAGAGGCTGGAGCAGGAGGAGAGCACCAAGGACAGTGTAACAATTTTGGAGCTACAGACACAACTAGCGC
AGAAGACCACTCTGATCAGCGACTCCAAGCTGAAGGAGCAGGAGTTGAGAGAACAGGTCCATAATTTAGA
AGACCGTTTGAAAAGATATGAAAAGAATGCATGTGCAGCAACTGTGGGGACACCTTACAAAGGTGGCAAT
TTGTACCACACTGAGGTCTCACTCTTCGGAGAACCTACCGAGTTTGAGTATTTGCGAAAAGTGATGTTTG
AATATATGATGGGTCGCGAGACTAAGACCATGGCCAAAGTTATAACCACTGTCCTGAAATTCCCTGATGA
TCAGGCTCAGAAAATTTTGGAAAGAGAAGATGCTCGTCTGATGTCATGGCTCCGAACCTCATCTTGA


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_018748
Insert Size 6717 bp
OTI Disclaimer Our molecular clone sequence data has been matched to the reference identifier above as a point of reference. Note that the complete sequence of our molecular clones may differ from the sequence published for this corresponding reference, e.g., by representing an alternative RNA splicing form or single nucleotide polymorphism (SNP).
Product Components The ORF clone is ion-exchange column purified and shipped in a 2D barcoded Matrix tube containing 10ug of transfection-ready, dried plasmid DNA (reconstitute with 100 ul of water).
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.
Note Plasmids are not sterile.  For experiments where strict sterility is required, filtration with 0.22um filter is required.
Reference Data
RefSeq NM_018748.3, NP_061218.2
RefSeq Size 7532 bp
RefSeq ORF 6717 bp
Locus ID 54214
UniProt ID Q91VW5
Gene Summary Involved in vesicular trafficking at the Golgi apparatus level. May play a role in delivery of transport vesicles containing GPI-linked proteins from the trans-Golgi network through its interaction with MACF1. Involved in endosome-to-Golgi trafficking.[UniProtKB/Swiss-Prot Function]
*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.

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