Rat Abcc4/Mrp4/RGD1565953 ORF/cDNA clone-Adenovirus particle (NM_133411.1)

Cat. No.: vGMAD000372

Pre-made Rat Abcc4/Mrp4/RGD1565953 Adenovirus for Abcc4 overexpression in-vitro and in-vivo. The Abcc4 adenoviral vector excels as a vehicle for transient gene transfection in both stable cell lines and primary cells, including DC cells, macrophages, cardiomyocytes, hepatocytes, and neurons. The purified Abcc4-encoding adenovirus also stands out as a quintessential tool for in vivo studies and vaccine research initiatives.

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Product information

Catalog No. Product Name Adenovirus Grade Adenovirus quantity
vGMAD000372 Rat Abcc4 Adenovirus particle Research Grade-In vitro 1E+10PFU (1E+10pfu/ml×1ml)
5E+10PFU (1E+10pfu/ml×5ml)
1E+11PFU (1E+10pfu/ml×10ml)
Research Grade-In vivo 1E+11PFU (1E+11pfu/ml×1ml)
GMP-like Grade inquiry
GMP Grade inquiry


Product Description

Catalog ID vGMAD000372
Gene Name Abcc4
Accession Number NM_133411.1
Gene ID 170924
Species Rat
Product Type Adenovirus particle (overexpression)
Insert Length 3978 bp
Gene Alias Mrp4,RGD1565953
Fluorescent Reporter GFP
Mammalian Cell Selection Null
Fusion Tag 3xflag (C-Terminal)
Promoter EF1
Resistance Amplicin
ORF Nucleotide Sequence ATGCTGCCGGTGCACACCGAGGTGAAACCCAACCCGCTGCAGGACGCCAACCTCTGCTCGCGCTTGTTCTTCTGGTGGCTCAACCCGTTGTTTAAAGCTGGACATAAGCGGAGATTGGAAGAAGATGACATGTTTTCAGTGCTTCCAGAAGATCGCTCAAAGCACCTTGGAGAGGAGTTGCAAGGGTACTGGGATAAAGAAGTTCTGCGAGCCAAGAAGGACGCTCGGAAGCCTTCCTTAACGAAGGCAATCGTGAAGTGTTACTGGAAATCTTACCTGATTTTGGGAATTTTTACGTTAATTGAGGAGACCACCCGAGTAGTTCAGCCCATATTTTTAGGGAAAATTATTGATTATTTTGAGAAGTATGACTCTGACGACTCGGCCGCTTTGCACACAGCTTACGGCTACGCGGCGGTGCTGTCGCTGTGCACGCTCATCCTGGCCATACTACATCACTTGTATTTCTACCACGTGCAGTGCGCCGGGATGAGGATACGGGTCGCCATGTGCCACATGATTTACCGGAAGGCTCTCCGGCTAAGTAACTCGGCCATGGGGAAGACAACCACGGGCCAGATAGTCAACCTGCTGTCCAACGACGTGAACAAGTTTGACCAGGTGACCATCTTCTTGCACTTCCTGTGGGCGGGGCCGCTGCAAGCCATAGGGGTAACCATCCTTCTCTGGGTGGAAATCGGAATCTCCTGTCTGGCGGGCCTGGCCATTCTGGTTATTCTGCTGCCTCTGCAAAGCTGCATCGGGAAACTGTTCTCGTCACTGCGGAGTAAAACAGCGGCTTTCACGGATGCCAGGTTCCGGACCATGAATGAAGTGATAACGGGCATGAGGATAATAAAGATGTACGCGTGGGAGAAGTCATTCGCCGACCTCATAACCAATCTGAGAAAGAAGGAAATTTCTAAGATTCTGGGCAGCTCCTACCTCAGAGGGATGAACATGGCGTCGTTTTTCATTGCAAACAAAGTCATCCTGTTCGTGACCTTCACCACCTATGTGCTGCTTGGCAATAAGATTACATCTAGCCACGTGTTCGTGGCCATGACTCTGTATGGTGCTGTCCGGTTGACAGTTACCCTCTTCTTCCCATCAGCCATTGAGAGAGTGTCAGAGGCCGTCGTCAGCGTTCGGAGGATCAAGAACTTTCTGTTACTCGATGAACTGCCAGAGCGCAAAGCCCAGGAACCATCTGATGGCAAAGCCATCGTTCACGTGCAAGATTTTACCGCTTTCTGGGACAAGGCATTAGACACTCCTACCCTGCAAGGTCTTTCCTTCACTGCCAGACCTGGTGAGTTGTTAGCTGTGGTCGGCCCAGTCGGAGCAGGCAAGTCGTCCCTGTTGAGCGCGGTGCTCGGTGAGCTGCCTCCCACCAGTGGGCTGGTCAGCGTGCACGGGAGGATCGCCTACGTTTCCCAGCAGCCCTGGGTGTTCTCAGGAACCGTGAGGAGCAATATTTTATTTGGGAGGAAATACGAGAAAGAACGCTACGAGAAAGTCATCAAGGCCTGTGCTCTGAAGAAGGACTTGCAACTTCTGGAGGACGGGGATCTGACTGTCATAGGCGACCGGGGAGCCACGCTGAGCGGAGGCCAGAAAGCACGGGTGAACTTGGCACGGGCAGTCTACCAGGATGCCGACATCTACCTCCTCGATGATCCGCTCAGTGCTGTTGATGCAGAAGTGGGCAAGCACCTGTTCCAGCTGTGTATCTGCCAGACTTTGCACGAGAAGATCACCATTTTAGTGACTCACCAGTTACAGTACCTCAAAGCTGCAAGCCACATCCTCATACTAAAAGATGGCGAAATGGTGCAGAAGGGGACTTACACCGAGTTTCTGAAGTCTGGTGTAGATTTCGGTTCCCTGCTAAAGAAGGAAAATGAGGAAGCAGAGCCCTCCCCTGTCCCAGGAACACCGACACTCAGGAACCGAACCTTCTCCGAGGCCTCGATTTGGTCTCAACAGTCATCCAGACCCTCGTTGAAAGACGGGGTCCCAGATGCCCAAGATGCAGAGAATACTCAGGCAGCTCAACCCGAGGAGAGCCGTTCAGAAGGGAGAATCGGCTTCAAGGCCTACAAGAACTACTTCTCTGCAGGCGCATCCTGGTTTTTCATTATTTTCCTCGTTCTGCTTAACCTGATGGGTCAGGTTTTCTACGTTCTTCAGGACTGGTGGCTTTCCCACTGGGCGAATAGGCAAGGTGCCCTGAATGACACCAAAAACGCGAACGGGAATGTAACCGGGACCCTCGATCTCAGCTGGTACTTAGGGATTTACACAGGTTTAACTGCGGTCACAGTCCTCTTTGGCATAGCGAGATCCCTGCTGGTGTTCTATGTCCTTGTGAATGCTTCCCAGACTCTGCACAACAGGATGTTCGAGTCGATCCTGAAGGCACCGGTGTTGTTCTTCGATAGAAATCCAATAGGAAGGATTTTAAATCGTTTCTCCAAGGACATCGGACACATGGACGACTTGCTTCCCCTAACGTTTCTAGACTTCATCCAGACCTTGCTCCTTGTTGTAAGTGTGATCGCCGTGGCGGCGGCCGTGATCCCTTGGATCCTCATACCCCTGGTTCCACTCTCCATCATCTTTGTGGTCCTTCGGAGATATTTCTTAGAAACGTCGCGGGACGTCAAGCGCCTGGAGTCCACAACACGGAGCCCGGTATTCTCCCATTTATCATCCTCCCTCCAGGGACTCTGGACCATCCGTGCCTATAAGGCTGAAGAGAGGTGTCAGGAGCTGTTTGATGCACACCAGGACTTGCATTCAGAGGCTTGGTTCTTGTTCCTGACGACATCAAGATGGTTCGCCGTGCGTCTGGACGCCATCTGCGCCGTCTTTGTCATCGTCGTTGCCTTCGGGTCCCTGGTTCTGGCAAAGACCTTGGATGCTGGGCAGGTTGGCTTGGCCTTGTCCTACTCCCTCACGCTCATGGGGATGTTCCAGTGGTCTGTGAGACAGAGCGCCGAAGTAGAGAATATGATGATTTCTGTGGAGAGGGTGATTGAATACACGGACCTAGAGAAGGAGGCGCCTTGGGAATGCAGGAAGCGCCCACCCCCAGGCTGGCCCCACGAAGGAGTAATTGTCTTCGACAATGTGAACTTCACCTACAGCTTGGACGGGCCCCTTGTTCTGAAGCACCTGACCGCACTCATCAAGTCACGAGAAAAGGTTGGAATTGTGGGAAGAACTGGAGCTGGAAAAAGTTCCCTCATCTCAGCCCTCTTCAGGTTGTCAGAACCTGAGGGGAAAATCTGGATTGATAAGATCTTGACGACTGAAATTGGACTTCACGATTTAAGGAAGAAAATGTCAATCATACCTCAGGAACCTGTCCTGTTCACTGGAACCATGAGGAAGAACCTGGACCCCTTTAATGAGCACTCGGACGAGGAGCTGTGGAAAGCCCTAGAGGAGGTACAACTTAAAGAGGCCATAGAAGATCTTCCTGGTAAAATGGACACTGAACTAGCAGAATCTGGATCCAATTTCAGTGTTGGACAGAGACAGTTAGTGTGCCTTGCGAGGGCAATTCTGAAGAAAAACCGGATACTGATCATTGATGAAGCAACTGCAAATGTGGATCCGAGAACTGACGAGTTAATACAACAGAAAATCCGGGAGAAGTTTGCCCAGTGCACTGTTCTCACCATTGCTCACAGACTGAACACCATCATTGACAGCGACAAGATAATGGTTTTGGATTCGGGAAGACTGAGAGAATATGATGAGCCGTATGTTTTGCTGCAGAATCCAGAGAGCCTCTTTTACAAGATGGTTCAGCAGCTGGGTAAGGGCGAAGCCGCTGCCCTCACCGAAACAGCAAAACAGGTGTACTTCAGACGGAATTATCCGGATATTGCATTCAGCAGCCCTGCGGTTATGAGCACCTCCAACGGACAGCCCTCCGCCTTAACGATATTTGAAACAGCATTGTGA
ORF Protein Sequence MLPVHTEVKPNPLQDANLCSRLFFWWLNPLFKAGHKRRLEEDDMFSVLPEDRSKHLGEELQGYWDKEVLRAKKDARKPSLTKAIVKCYWKSYLILGIFTLIEETTRVVQPIFLGKIIDYFEKYDSDDSAALHTAYGYAAVLSLCTLILAILHHLYFYHVQCAGMRIRVAMCHMIYRKALRLSNSAMGKTTTGQIVNLLSNDVNKFDQVTIFLHFLWAGPLQAIGVTILLWVEIGISCLAGLAILVILLPLQSCIGKLFSSLRSKTAAFTDARFRTMNEVITGMRIIKMYAWEKSFADLITNLRKKEISKILGSSYLRGMNMASFFIANKVILFVTFTTYVLLGNKITSSHVFVAMTLYGAVRLTVTLFFPSAIERVSEAVVSVRRIKNFLLLDELPERKAQEPSDGKAIVHVQDFTAFWDKALDTPTLQGLSFTARPGELLAVVGPVGAGKSSLLSAVLGELPPTSGLVSVHGRIAYVSQQPWVFSGTVRSNILFGRKYEKERYEKVIKACALKKDLQLLEDGDLTVIGDRGATLSGGQKARVNLARAVYQDADIYLLDDPLSAVDAEVGKHLFQLCICQTLHEKITILVTHQLQYLKAASHILILKDGEMVQKGTYTEFLKSGVDFGSLLKKENEEAEPSPVPGTPTLRNRTFSEASIWSQQSSRPSLKDGVPDAQDAENTQAAQPEESRSEGRIGFKAYKNYFSAGASWFFIIFLVLLNLMGQVFYVLQDWWLSHWANRQGALNDTKNANGNVTGTLDLSWYLGIYTGLTAVTVLFGIARSLLVFYVLVNASQTLHNRMFESILKAPVLFFDRNPIGRILNRFSKDIGHMDDLLPLTFLDFIQTLLLVVSVIAVAAAVIPWILIPLVPLSIIFVVLRRYFLETSRDVKRLESTTRSPVFSHLSSSLQGLWTIRAYKAEERCQELFDAHQDLHSEAWFLFLTTSRWFAVRLDAICAVFVIVVAFGSLVLAKTLDAGQVGLALSYSLTLMGMFQWSVRQSAEVENMMISVERVIEYTDLEKEAPWECRKRPPPGWPHEGVIVFDNVNFTYSLDGPLVLKHLTALIKSREKVGIVGRTGAGKSSLISALFRLSEPEGKIWIDKILTTEIGLHDLRKKMSIIPQEPVLFTGTMRKNLDPFNEHSDEELWKALEEVQLKEAIEDLPGKMDTELAESGSNFSVGQRQLVCLARAILKKNRILIIDEATANVDPRTDELIQQKIREKFAQCTVLTIAHRLNTIIDSDKIMVLDSGRLREYDEPYVLLQNPESLFYKMVQQLGKGEAAALTETAKQVYFRRNYPDIAFSSPAVMSTSNGQPSALTIFETAL

Reference




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    Associated products


    Category Cat No. Products Name
    ORF Viral Vector pGMAD000372 Rat Abcc4 Adenovirus plasmid




    About GMVC

    GDU

    GMVC (GM Vector Core) is GeneMedi’s unique platform for QbD Viral vectors Processes development and manufacturing. In GMVC, our core expertise lies in the tailored production of viral vectors, including adeno-associated virus (AAV), lentivirus, and adenovirus. Our state-of-the-art facilities are equipped for scalable manufacturing, ensuring high-quality viral vector production to meet both research and therapeutic needs. Our expert team specializes in process development, leveraging innovative technology and extensive industry knowledge to provide clients with tailored solutions that exceed expectations. GMVC will be the ideal partner for scientists and healthcare professionals seeking reliable and efficient viral vector production services.