Welcome to GenPrice! Check out our latest updates.

Shopping Cart (0)

Your cart is empty

Add some products to get started!

PECMV-Nfic-m-FLAG

Product Specifications

Applications

Protein Expression

Storage Temperature

37°C

Plasmid Hos

Mammalian cell

Inserted Fragment Type

ORF

Inserted Fragment Species

Mouse

Resistance

Kan

Selection antibiotic

Neo/G418

Competent cells

DH5a

Nucleic Acid Sequence

AACAAAATATTAACGCTTACAATTTCCATTCGCCATTCAGGCTGCGCAACTGTTGGGAAGGGCGATCGGTGCGGGCCTCTTCGCTATTACGCCAGCTGGCGAAAGGGGGATGTGCTGCAAGGCGATTAAGTTGGGTAACGCCAGGGTTTTCCCAGTCACGACGTTGTAAAACGACGGCCAGTGCCAAGCTGATCTATACATTGAATCAATATTGGCAATTAGCCATATTAGTCATTGGTTATATAGCATAAATCAATATTGGCTATTGGCCATTGCATACGTTGTATCTATATCATAATATGTACATTTATATTGGCTCATGTCCAATATGACCGCCATGTTGACATTGATTATTGACTAGTTATTAATAGTAATCAATTACGGGGTCATTAGTTCATAGCCCATATATGGAGTTCCGCGTTACATAACTTACGGTAAATGGCCCGCCTGGCTGACCGCCCAACGACCCCCGCCCATTGACGTCAATAATGACGTATGTTCCCATAGTAACGCCAATAGGGACTTTCCATTGACGTCAATGGGTGGAGTATTTACGGTAAACTGCCCACTTGGCAGTACATCAAGTGTATCATATGCCAAGTCCGCCCCCTATTGACGTCAATGACGGTAAATGGCCCGCCTGGCATTATGCCCAGTACATGACCTTACGGGACTTTCCTACTTGGCAGTACATCTACGTATTAGTCATCGCTATTACCATGGTGATGCGGTTTTGGCAGTACACCAATGGGCGTGGATAGCGGTTTGACTCACGGGGATTTCCAAGTCTCCACCCCATTGACGTCAATGGGAGTTTGTTTTGGCACCAAAATCAACGGGACTTTCCAAAATGTCGTAATAACCCCGCCCCGTTGACGCAAATGGGCGGTAGGCGTGTACGGTGGGAGGTCTATATAAGCAGAGCTCGTTTAGTGAACCGTCAGAATTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCCGCCGCGATCGCCATGTATTCCTCCCCGCTCTGCCTGACCCAGGATGAGTTCCACCCGTTCATCGAGGCGCTGCTGCCGCATGTGCGCGCCTTCGCCTACACCTGGTTCAACCTGCAGGCGCGCAAGCGCAAGTACTTCAAGAAGCACGAGAAGCGCATGTCCAAGGACGAGGAGCGCGCGGTGAAGGATGAGCTGCTGGGTGAAAAGGCCGAAGTGAAGCAGAAGTGGGCGTCGCGGCTGCTGGCCAAGCTGCGCAAGGACATCCGGCCCGAGTGCCGTGAAGACTTCGTACTGGCTGTGACTGGCAAGAAGGCGCCAGGCTGTGTGCTGTCCAACCCGGACCAGAAGGGCAAGATGCGGCGCATCGACTGCCTGCGCCAGGCCGACAAAGTGTGGCGTCTGGACCTGGTCATGGTCATCCTGTTCAAGGGCATCCCACTGGAGAGCACAGATGGTGAGCGGCTGGTGAAGGCGGCTGCCTGTGCGCACCCGGTGCTGTGTGTGCAGCCGCACCATATTGGCGTGGCCGTCAAGGAGCTGGACCTGTACCTGGCCTACTTTGTGCGGGAGCGCGATGCGGAGCAGAGCAGCAGCCCCCGGACAGGTGTGGGCTCAGACCAGGAGGACAGCAAGCCCATAACGCTGGACACCACAGACTTCCAGGAGAGCTTTGTCACGTCAGGTGTGTTCAGTGTCACGGAGCTGATCCAAGTGTCTCGGACACCTGTGGTGACCGGAACCGGACCCAACTTCTCACTGGGAGAGCTGCAGGGTCACCTGGCATATGACCTGAACCCGGCCAGCGCCGGCATGAGAAGGACTCTACCCAGCACCTCCTCCAGTGGGAGCAAGCGGCACAAGTCGGGCTCGATGGAAGAGGACGTGGACACGAGCCCCGGCGGCGACTACTACACGTCGCCCAACTCACCCACGAGTAGCAGCCGCAACTGGACGGAAGACATAGAAGGAGGCATCTCATCCCCGGTGAAGAAGACAGAGATGGACAAATCTCCATTCAACAGCCCGTCCCCCCAGGACTCCCCCCGGCTCTCCAGCTTCACACAACACCACAGGCCGGTCATCGCGGTACACAGTGGCATCGCGCGGAGCCCCCACCCGACCTCGGCCCTGCACTTCCCTGCCACGCCCATCCTGCCACAGACAGCCTCCACCTACTTCCCCCATACGGCCATCCGGTACCCGCCACATCTCAACCCCCAGGACCCGCTCAAGGATCTGGTGTCCCTGGCCTGTGACCCGGCCACCCAGCAGCCTGGACCGTCCTGGTACCTGGGGACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATTACAAGGATGACGACGATAAGGTTTAAACGGCCGGCCGCGGTCATAGCTGTTTCCTGAACAGATCCCGGGTGGCATCCCTGTGACCCCTCCCCAGTGCCTCTCCTGGCCCTGGAAGTTGCCACTCCAGTGCCCACCAGCCTTGTCCTAATAAAATTAAGTTGCATCATTTTGTCTGACTAGGTGTCCTTCTATAATATTATGGGGTGGAGGGGGGTGGTATGGAGCAAGGGGCAAGTTGGGAAGACAACCTGTAGGGCCTGCGGGGTCTATTGGGAACCAAGCTGGAGTGCAGTGGCACAATCTTGGCTCACTGCAATCTCCGCCTCCTGGGTTCAAGCGATTCTCCTGCCTCAGCCTCCCGAGTTGTTGGGATTCCAGGCATGCATGACCAGGCTCAGCTAATTTTTGTTTTTTTGGTAGAGACGGGGTTTCACCATATTGGCCAGGCTGGTCTCCAACTCCTAATCTCAGGTGATCTACCCACCTTGGCCTCCCAAATTGCTGGGATTACAGGCGTGAACCACTGCTCCCTTCCCTGTCCTTCTGATTTTAAAATAACTATACCAGCAGGAGGACGTCCAGACACAGCATAGGCTACCTGGCCATGCCCAACCGGTGGGACATTTGAGTTGCTTGCTTGGCACTGTCCTCTCATGCGTTGGGTCCACTCAGTAGATGCCTGTTGAATTGGGTACGCGGCCAGCGGCGAGCGGTATCAGCTCACTCAAAGGCGGTAATACGGTTATCCACAGAATCAGGGGATAACGCAGGAAAGAACATGTGAGCAAAAGGCCAGCAAAAGGCCAGGAACCGTAAAAAGGCCGCGTTGCTGGCGTTTTTCCATAGGCTCCGCCCCCCTGACGAGCATCACAAAAATCGACGCTCAAGTCAGAGGTGGCGAAACCCGACAGGACTATAAAGATACCAGGCGTTTCCCCCTGGAAGCTCCCTCGTGCGCTCTCCTGTTCCGACCCTGCCGCTTACCGGATACCTGTCCGCCTTTCTCCCTTCGGGAAGCGTGGCGCTTTCTCATAGCTCACGCTGTAGGTATCTCAGTTCGGTGTAGGTCGTTCGCTCCAAGCTGGGCTGTGTGCACGAACCCCCCGTTCAGCCCGACCGCTGCGCCTTATCCGGTAACTATCGTCTTGAGTCCAACCCGGTAAGACACGACTTATCGCCACTGGCAGCAGCCACTGGTAACAGGATTAGCAGAGCGAGGTATGTAGGCGGTGCTACAGAGTTCTTGAAGTGGTGGCCTAACTACGGCTACACTAGAAGAACAGTATTTGGTATCTGCGCTCTGCTGAAGCCAGTTACCTTCGGAAAAAGAGTTGGTAGCTCTTGATCCGGCAAACAAACCACCGCTGGTAGCGGTGGTTTTTTTGTTTGCAAGCAGCAGATTACGCGCAGAAAAAAAGGATCTCAAGAAGATCCTTTGATCTTTTCTACGGGGTCTGACGCTCAGTGGAACGAAAACTCACGTTAAGGGATTTTGGTCATGAGATTATCAAAAAGGATCTTCACCTAGATCCTTTTAAATTAAAAATGAAGTTTTAAATCAATCTAAAGTATATATGAGTAACCTGAGGCTATGGCAGGGCCTGCCGCCCCGACGTTGGCTGCGAGCCCTGGGCCTTCACCCGAACTTGGGGGGTGGGGTGGGGAAAAGGAAGAAACGCGGGCGTATTGGCCCCAATGGGGTCTCGGTGGGGTATCGACAGAGTGCCAGCCCTGGGACCGAACCCCGCGTTTATGAACAAACGACCCAACACCGTGCGTTTTATTCTGTCTTTTTATTGCCGTCATAGCGCGGGTTCCTTCCGGTATTGTCTCCTTCCGTGTTTCAGTTAGCCTCCCCCTAGGGTGGGCGAAGAACTCCAGCATGAGATCCCCGCGCTGGAGGATCATCCAGCCGGCGTCCCGGAAAACGATTCCGAAGCCCAACCTTTCATAGAAGGCGGCGGTGGAATCGAAATCTCGTGATGGCAGGTTGGGCGTCGCTTGGTCGGTCATTTCGAACCCCAGAGTCCCGCTCAGAAGAACTCGTCAAGAAGGCGATAGAAGGCGATGCGCTGCGAATCGGGAGCGGCGATACCGTAAAGCACGAGGAAGCGGTCAGCCCATTCGCCGCCAAGCTCTTCAGCAATATCACGGGTAGCCAACGCTATGTCCTGATAGCGATCCGCCACACCCAGCCGGCCACAGTCGATGAATCCAGAAAAGCGGCCATTTTCCACCATGATATTCGGCAAGCAGGCATCGCCATGGGTCACGACGAGATCCTCGCCGTCGGGCATGCTCGCCTTGAGCCTGGCGAACAGTTCGGCTGGCGCGAGCCCCTGATGCTCTTCGTCCAGATCATCCTGATCGACAAGACCGGCTTCCATCCGAGTACGTGCTCGCTCGATGCGATGTTTCGCTTGGTGGTCGAATGGGCAGGTAGCCGGATCAAGCGTATGCAGCCGCCGCATTGCATCAGCCATGATGGATACTTTCTCGGCAGGAGCAAGGTGAGATGACAGGAGATCCTGCCCCGGCACTTCGCCCAATAGCAGCCAGTCCCTTCCCGCTTCAGTGACAACGTCGAGCACAGCTGCGCAAGGAACGCCCGTCGTGGCCAGCCACGATAGCCGCGCTGCCTCGTCTTGCAGTTCATTCAGGGCACCGGACAGGTCGGTCTTGACAAAAAGAACCGGGCGCCCCTGCGCTGACAGCCGGAACACGGCGGCATCAGAGCAGCCGATTGTCTGTTGTGCCCAGTCATAGCCGAATAGCCTCTCCACCCAAGCGGCCGGAGAACCTGCGTGCAATCCATCTTGTTCAATCATGCGAAACGATCCTCATCCTGTCTCTTGATCGATCTTTGCAAAAGCCTAGGCCTCCAAAAAAGCCTCCTCACTACTTCTGGAATAGCTCAGAGGCCGAGGCGGCCTCGGCCTCTGCATAAATAAAAAAAATTAGTCAGCCATGGGGCGGAGAATGGGCGGAACTGGGCGGAGTTAGGGGCGGGATGGGCGGAGTTAGGGGCGGGACTATGGTTGCTGACTAATTGAGATGCATGCTTTGCATACTTCTGCCTGCTGGGGAGCCTGGGGACTTTCCACACCTGGTTGCTGACTAATTGAGATGCATGCTTTGCATACTTCTGCCTGCTGGGGAGCCTGGGGACTTTCCACACCCTAACTGACACACATTCCACAGCTGGTTCTTTCCGCCTCAGGACTCTTCCTTTTTCAATATTATTGAAGCATTTATCAGGGTTATTGTCTCATGAGCGGATACATATTTGAATGTATTTAGAAAAATAAACAAATAGGGGTTCCGCGCACATTTCCCCGAAAAGTGCCACCTGACGCGCCCTGTAGCGGCGCATTAAGCGCGGCGGGTGTGGTGGTTACGCGCAGCGTGACCGCTACACTTGCCAGCGCCCTAGCGCCCGCTCCTTTCGCTTTCTTCCCTTCCTTTCTCGCCACGTTCGCCGGCTTTCCCCGTCAAGCTCTAAATCGGGGGCTCCCTTTAGGGTTCCGATTTAGTGCTTTACGGCACCTCGACCCCAAAAAACTTGATTAGGGTGATGGTTCACGTAGTGGGCCATCGCCCTGATAGACGGTTTTTCGCCCTTTGACGTTGGAGTCCACGTTCTTTAATAGTGGACTCTTGTTCCAAACTGGAACAACACTCAACCCTATCTCGGTCTATTCTTTTGATTTATAAGGGATTTTGCCGATTTCGGCCTATTGGTTAAAAAATGAGCTGATTTAACAAAAATTTAACGCGAATTTT

Gene Length

6165

Frequently Asked Questions

More Discoveries

Explore Other Products

Browse additional items from our catalog

SH3MD2 (SH3RF1, Putative E3 Ubiquitin-protein Ligase SH3RF1, SH3 Domain-containing RING Finger Protein 1, Plenty of SH3s, Protein POSH, SH3 Multiple Domains Protein 2, RING Finger Protein 142, KIAA1494, POSH, RNF142) (MaxLight 650)
133311-ML650 100 µL

SH3MD2 (SH3RF1, Putative E3 Ubiquitin-protein Ligase SH3RF1, SH3 Domain-containing RING Finger Protein 1, Plenty of SH3s, Protein POSH, SH3 Multiple Domains Protein 2, RING Finger Protein 142, KIAA1494, POSH, RNF142) (MaxLight 650)

Sign In for Pricing
View Details
Mrps10 3'UTR GFP Stable Cell Line
TU263431 1.0 mL

Mrps10 3'UTR GFP Stable Cell Line

Sign In for Pricing
View Details
Anti-TRMT1 Polyclonal Antibody
TMAB-13823-01 50 μL

Anti-TRMT1 Polyclonal Antibody

Sign In for Pricing
View Details
Anti-TRMT1 Polyclonal Antibody
TMAB-13823-02 100 µL

Anti-TRMT1 Polyclonal Antibody

Sign In for Pricing
View Details
Anti-TRMT1 Polyclonal Antibody
TMAB-13823-03 200 µL

Anti-TRMT1 Polyclonal Antibody

Sign In for Pricing
View Details
Lentiviral human ADAM15 sgRNA gene knockout kit - Lentiviral human ADAM15 sgRNA gene knockout kit (plasmid)
GTR15379469 1 Vial

Lentiviral human ADAM15 sgRNA gene knockout kit - Lentiviral human ADAM15 sgRNA gene knockout kit (plasmid)

Sign In for Pricing
View Details