Welcome to GenPrice! Check out our latest updates.

Shopping Cart (0)

Your cart is empty

Add some products to get started!

PCMV-EGFP-WASF3 (human) -Neo

Product Specifications

Applications

Protein Expression

Storage Temperature

37°C

Reference Sequence ID

NM_006646.6

Aliases

Brush-1; SCAR3; WAVE3

Plasmid Hos

Mammalian cell

Inserted Fragment Type

ORF

Inserted Fragment Species

Human

Resistance

Kan

Selection antibiotic

Neo/G418

Fluorescent labeling

Green

Competent cells

DH5a

Nucleic Acid Sequence

TagttattaatagtaatcaattacggggtcattagttcatagcccatatatggagttccgcgttacataacttacggtaaatggcccgcctggctgaccgcccaacgacccccgcccattgacgtcaataatgacgtatgttcccatagtaacgccaatagggactttccattgacgtcaatgggtggagtatttacggtaaactgcccacttggcagtacatcaagtgtatcatatgccaagtacgccccctattgacgtcaatgacggtaaatggcccgcctggcattatgcccagtacatgaccttatgggactttcctacttggcagtacatctacgtattagtcatcgctattaccatggtgatgcggttttggcagtacatcaatgggcgtggatagcggtttgactcacggggatttccaagtctccaccccattgacgtcaatgggagtttgttttggcaccaaaatcaacgggactttccaaaatgtcgtaacaactccgccccattgacgcaaatgggcggtaggcgtgtacggtgggaggtctatataagcagagctggtttagtgaaccgtcagatccgctagcgctaccggtcgccaccatggtgagcaagggcgaggagctgttcaccggggtggtgcccatcctggtcgagctggacggcgacgtaaacggccacaagttcagcgtgtccggcgagggcgagggcgatgccacctacggcaagctgaccctgaagttcatctgcaccaccggcaagctgcccgtgccctggcccaccctcgtgaccaccctgacctacggcgtgcagtgcttcagccgctaccccgaccacatgaagcagcacgacttcttcaagtccgccatgcccgaaggctacgtccaggagcgcaccatcttcttcaaggacgacggcaactacaagacccgcgccgaggtgaagttcgagggcgacaccctggtgaaccgcatcgagctgaagggcatcgacttcaaggaggacggcaacatcctggggcacaagctggagtacaactacaacagccacaacgtctatatcatggccgacaagcagaagaacggcatcaaggtgaacttcaagatccgccacaacatcgaggacggcagcgtgcagctcgccgaccactaccagcagaacacccccatcggcgacggccccgtgctgctgcccgacaaccactacctgagcacccagtccgccctgagcaaagaccccaacgagaagcgcgatcacatggtcctgctggagttcgtgaccgccgccgggatcactctcggcatggacgagctgtacaagtccggactcagatctcgagGCGGCGGAGGGAGTGGAGGAGGGGGAAGCaagcttatgcctttagtgaagaggaacattgagccccggcacttgtgccggggagctctgcctgaagggattaccagcgaacttgaatgtgtaaccaatagtactcttgccgctatcatacgccagctgagcagtctgagcaaacatgctgaagacatatttggtgagttgtttaatgaggctaacaacttctacatcagagcaaattctcttcaagacagaattgatcgccttgctgtcaaagtcacccagctggattcaacagtggaagaggtctcactacaggatatcaacatgaaaaaagctttcaaaagttccacagtccaagaccagcaagtggtttcaaagaacagcattcctaatcctgttgctgatatttacaaccagagtgataagccaccgcctctgaacatcctgacaccatacagagatgacaagaaggatgggctgaagttctatactgatccttcctatttctttgacctctggaaagaaaaaatgctacaggacacagaagacaaaaggaaagagaaaaggcgtcaaaaggagcaaaagcgtatagatggcaccacccgtgaggtgaaaaaggttagaaaagccagaaacaggcgccaggagtggaatatgatggcatatgacaaagagcttagacccgacaacaggttgtctcagagtgtgtaccatggagcgtcttccgagggatccctgtccccagatactaggtcacatgcatcggacgttacggattactcttacccggctactcccaaccattctctgcacccccagcctgtgaccccttcctatgcagctggtgacgtgccaccacacgggcctgcaagccaggctgcggagcatgagtaccggcccccatctgcctcggcgaggcacatggccctcaacagacctcagcagccgccccccccgcctccccctcaggccccagaggggtcccaggcctctgcaccgatggctccagcagactacgggatgctcccagcgcagataattgagtattacaacccatccggaccacctcctccgccacctcctcctgtgattccctcagcacaaactgccttcgtcagccctctccagatgcccatgcagcccccgttccctgcatcagccagctccacgcacgcagctcctcctcacccaccctccaccgggctcctggtcacagccccgccacccccgggcccaccacctcccccgccaggccctcctggtcccgggtcttctctttcgtcctccccaatgcatggccccccagtagctgaggcgaagcggcaagagcctgcacagccaccaatcagtgatgctcgaagcgacctcctcgctgctattcgaatgggaattcaactgaaaaaggtgcaggagcagcgggagcaggaggccaagcgggagccagtggggaatgacgtggccacgatcctgtcccggcgcattgccgtggagtacagcgactctgacgacgactcagagttcgacgagaacgactggtccgactgaggatccaccggatctagataactgatcataatcagccataccacatttgtagaggttttacttgctttaaaaaacctcccacacctccccctgaacctgaaacataaaatgaatgcaattgttgttgttaacttgtttattgcagcttataatggttacaaataaagcaatagcatcacaaatttcacaaataaagcatttttttcactgcattctagttgtggtttgtccaaactcatcaatgtatcttaacgcgtaaattgtaagcgttaatattttgttaaaattcgcgttaaatttttgttaaatcagctcattttttaaccaataggccgaaatcggcaaaatcccttataaatcaaaagaatagaccgagatagggttgagtgttgttccagtttggaacaagagtccactattaaagaacgtggactccaacgtcaaagggcgaaaaaccgtctatcagggcgatggcccactacgtgaaccatcaccctaatcaagttttttggggtcgaggtgccgtaaagcactaaatcggaaccctaaagggagcccccgatttagagcttgacggggaaagccggcgaacgtggcgagaaaggaagggaagaaagcgaaaggagcgggcgctagggcgctggcaagtgtagcggtcacgctgcgcgtaaccaccacacccgccgcgcttaatgcgccgctacagggcgcgtcaggtggcacttttcggggaaatgtgcgcggaacccctatttgtttatttttctaaatacattcaaatatgtatccgctcatgagacaataaccctgataaatgcttcaataatattgaaaaaggaagagtcctgaggcggaaagaaccagctgtggaatgtgtgtcagttagggtgtggaaagtccccaggctccccagcaggcagaagtatgcaaagcatgcatctcaattagtcagcaaccaggtgtggaaagtccccaggctccccagcaggcagaagtatgcaaagcatgcatctcaattagtcagcaaccatagtcccgcccctaactccgcccatcccgcccctaactccgcccagttccgcccattctccgccccatggctgactaattttttttatttatgcagaggccgaggccgcctcggcctctgagctattccagaagtagtgaggaggcttttttggaggcctaggcttttgcaaagatcgatcaagagacaggatgaggatcgtttcgcatgattgaacaagatggattgcacgcaggttctccggccgcttgggtggagaggctattcggctatgactgggcacaacagacaatcggctgctctgatgccgccgtgttccggctgtcagcgcaggggcgcccggttctttttgtcaagaccgacctgtccggtgccctgaatgaactgcaagacgaggcagcgcggctatcgtggctggccacgacgggcgttccttgcgcagctgtgctcgacgttgtcactgaagcgggaagggactggctgctattgggcgaagtgccggggcaggatctcctgtcatctcaccttgctcctgccgagaaagtatccatcatggctgatgcaatgcggcggctgcatacgcttgatccggctacctgcccattcgaccaccaagcgaaacatcgcatcgagcgagcacgtactcggatggaagccggtcttgtcgatcaggatgatctggacgaagagcatcaggggctcgcgccagccgaactgttcgccaggctcaaggcgagcatgcccgacggcgaggatctcgtcgtgacccatggcgatgcctgcttgccgaatatcatggtggaaaatggccgcttttctggattcatcgactgtggccggctgggtgtggcggaccgctatcaggacatagcgttggctacccgtgatattgctgaagagcttggcggcgaatgggctgaccgcttcctcgtgctttacggtatcgccgctcccgattcgcagcgcatcgccttctatcgccttcttgacgagttcttctgagcgggactctggggttcgaaatgaccgaccaagcgacgcccaacctgccatcacgagatttcgattccaccgccgccttctatgaaaggttgggcttcggaatcgttttccgggacgccggctggatgatcctccagcgcggggatctcatgctggagttcttcgcccaccctagggggaggctaactgaaacacggaaggagacaataccggaaggaacccgcgctatgacggcaataaaaagacagaataaaacgcacggtgttgggtcgtttgttcataaacgcggggttcggtcccagggctggcactctgtcgataccccaccgagaccccattggggccaatacgcccgcgtttcttccttttccccaccccaccccccaagttcgggtgaaggcccagggctcgcagccaacgtcggggcggcaggccctgccatagcctcaggttactcatatatactttagattgatttaaaacttcatttttaatttaaaaggatctaggtgaagatcctttttgataatctcatgaccaaaatcccttaacgtgagttttcgttccactgagcgtcagaccccgtagaaaagatcaaaggatcttcttgagatcctttttttctgcgcgtaatctgctgcttgcaaacaaaaaaaccaccgctaccagcggtggtttgtttgccggatcaagagctaccaactctttttccgaaggtaactggcttcagcagagcgcagataccaaatactgtccttctagtgtagccgtagttaggccaccacttcaagaactctgtagcaccgcctacatacctcgctctgctaatcctgttaccagtggctgctgccagtggcgataagtcgtgtcttaccgggttggactcaagacgatagttaccggataaggcgcagcggtcgggctgaacggggggttcgtgcacacagcccagcttggagcgaacgacctacaccgaactgagatacctacagcgtgagctatgagaaagcgccacgcttcccgaagggagaaaggcggacaggtatccggtaagcggcagggtcggaacaggagagcgcacgagggagcttccagggggaaacgcctggtatctttatagtcctgtcgggtttcgccacctctgacttgagcgtcgatttttgtgatgctcgtcaggggggcggagcctatggaaaaacgccagcaacgcggcctttttacggttcctggccttttgctggccttttgctcacatgttctttcctgcgttatcccctgattctgtggataaccgtattaccgccatgcat

Gene Length

6234

Frequently Asked Questions

More Discoveries

Explore Other Products

Browse additional items from our catalog

MCM5 Rabbit Polyclonal Antibody
AP06217PU-N 100 µg

MCM5 Rabbit Polyclonal Antibody

Sign In for Pricing
View Details
CSPP1 (N-term) Rabbit Polyclonal Antibody
AP51103PU-N 400 µL

CSPP1 (N-term) Rabbit Polyclonal Antibody

Sign In for Pricing
View Details
Agrp (NM_007427) Mouse Tagged ORF Clone
MG200748 10 µg

Agrp (NM_007427) Mouse Tagged ORF Clone

Sign In for Pricing
View Details
GTP cyclohydrolase 1 (GCH1) Mouse Monoclonal Antibody [Clone ID: OTI5A1]
CF810265 100 µg

GTP cyclohydrolase 1 (GCH1) Mouse Monoclonal Antibody [Clone ID: OTI5A1]

Sign In for Pricing
View Details
SH3BGR Mouse Monoclonal Antibody [Clone ID: OTI1G7]
CF812032 100 µg

SH3BGR Mouse Monoclonal Antibody [Clone ID: OTI1G7]

Sign In for Pricing
View Details
Topoisomerase I, Mitochondrial (TOP1MT) (TOP1MT/2883R), CF594 conjugate, 0.1mg/mL
BNC942883-500 1x 500 µL

Topoisomerase I, Mitochondrial (TOP1MT) (TOP1MT/2883R), CF594 conjugate, 0.1mg/mL

Sign In for Pricing
View Details