Notch4 (NM_010929) Mouse Untagged Clone

CAT#: MC225086

Notch4 (untagged) - Mouse Notch gene homolog 4 (Drosophila) (Notch4), (10ug)


  "NM_010929" in other vectors (2)

Reconstitution Protocol

USD 3,330.00

10 Weeks*

Size
    • 10 ug

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Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Symbol Notch4
Synonyms Int-3; Int3; N4
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC225086 representing NM_010929
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGCAGCCCCAGTTGCTGCTGCTGCTGCTCTTGCCACTCAATTTCCCTGTCATCCTGACCAGAGAGCTTC
TGTGTGGAGGATCCCCAGAGCCCTGTGCCAACGGAGGCACCTGCCTGAGGCTATCTCGGGGACAAGGGAT
CTGCCAGTGTGCCCCTGGATTTCTGGGTGAGACTTGCCAGTTTCCTGACCCCTGCAGGGATACCCAACTC
TGCAAGAATGGTGGCAGCTGCCAAGCCCTGCTCCCCACACCCCCAAGCTCCCGTAGTCCTACTTCTCCAC
TGACCCCTCACTTCTCCTGCACCTGCCCCTCTGGCTTCACCGGTGATCGATGCCAAACCCATCTGGAAGA
GCTCTGTCCACCTTCTTTCTGTTCCAACGGGGGTCACTGCTATGTTCAGGCCTCAGGCCGCCCACAGTGC
TCCTGCGAGCCTGGGTGGACAGGTGAGCAATGCCAGCTCCGAGACTTCTGCTCAGCCAACCCCTGTGCCA
ACGGAGGCGTGTGCCTGGCCACATACCCCCAGATCCAGTGCCGCTGTCCACCTGGGTTCGAGGGTCACAC
CTGTGAACGCGACATCAACGAGTGCTTCCTGGAGCCGGGACCCTGCCCTCAGGGCACCTCCTGCCATAAC
ACCTTGGGTTCCTACCAGTGTCTCTGCCCTGTGGGGCAGGAAGGTCCCCAGTGCAAGCTCAGGAAGGGAG
CCTGCCCTCCTGGAAGCTGTCTCAATGGGGGCACCTGCCAGCTGGTCCCAGAGGGACACTCCACCTTTCA
TCTCTGCCTCTGTCCCCCAGGTTTCACGGGGCTGGACTGTGAGATGAACCCAGATGACTGTGTCAGGCAC
CAGTGTCAGAACGGGGCCACCTGTCTGGATGGGCTGGACACCTACACCTGCCTCTGCCCCAAGACATGGA
AGGGCTGGGACTGCTCTGAAGATATAGATGAATGTGAAGCCCGGGGTCCCCCTCGCTGCAGGAACGGTGG
CACCTGCCAGAACACAGCTGGCAGCTTTCACTGTGTGTGCGTGAGTGGCTGGGGAGGCGCAGGCTGTGAG
GAGAACCTGGATGACTGTGCAGCTGCCACCTGTGCCCCGGGATCCACCTGCATCGACCGTGTGGGCTCCT
TCTCCTGCCTCTGCCCACCTGGACGCACAGGCCTCCTGTGCCACCTGGAAGACATGTGTTTGAGTCAGCC
GTGCCACGTGAATGCCCAGTGCAGCACCAACCCTCTGACAGGCTCCACCCTCTGCATATGCCAGCCTGGC
TACTCAGGATCCACCTGTCACCAAGATCTGGATGAGTGCCAAATGGCCCAGCAAGGACCCAGTCCCTGCG
AACATGGCGGCTCCTGCATCAACACCCCTGGCTCCTTCAACTGCCTCTGCCTGCCTGGTTACACGGGCTC
CCGCTGTGAAGCTGACCACAATGAGTGCCTGTCACAGCCCTGCCACCCAGGCAGCACCTGCCTGGACCTG
CTTGCAACCTTCCACTGCCTCTGCCCACCAGGCTTGGAAGGGAGGCTCTGTGAGGTGGAGGTCAATGAGT
GCACCTCTAATCCCTGCCTGAACCAAGCTGCCTGCCATGACCTGCTCAACGGCTTCCAGTGCCTCTGCCT
TCCTGGATTCACCGGCGCCCGATGTGAGAAAGACATGGACGAGTGTAGCAGCACCCCCTGTGCCAATGGG
GGGCGCTGCCGAGACCAGCCTGGAGCCTTCTACTGCGAGTGTCTCCCAGGCTTTGAAGGGCCACACTGTG
AGAAAGAAGTGGACGAATGTCTGAGTGACCCCTGCCCCGTGGGAGCCAGCTGCCTTGATCTCCCCGGAGC
ATTCTTCTGCCTCTGCCGTCCTGGTTTCACAGGTCAACTTTGTGAGGTTCCCTTGTGCACCCCCAACATG
TGCCAACCTGGACAGCAATGCCAAGGTCAGGAACACAGAGCCCCCTGCCTCTGCCCTGACGGAAGTCCTG
GCTGTGTTCCTGCCGAGGACAACTGCCCCTGTCACCATGGCCATTGCCAGAGATCCTTGTGTGTGTGTGA
TGAGGGCTGGACTGGACCAGAATGCGAGACAGAACTGGGTGGCTGCATCTCCACACCCTGTGCCCATGGG
GGGACCTGCCACCCACAGCCATCTGGCTACAACTGTACCTGCCCTGCAGGCTACATGGGGTTGACCTGTA
GTGAGGAGGTGACAGCTTGTCACTCAGGGCCCTGTCTCAATGGTGGCTCCTGCAGCATCCGTCCTGAGGG
CTATTCCTGCACCTGCCTTCCAAGTCACACAGGTCGCCACTGCCAGACTGCCGTGGACCACTGTGTGTCT
GCCTCGTGCCTCAATGGGGGTACCTGTGTGAACAAGCCTGGCACTTTCTTCTGCCTCTGTGCCACTGGCT
TCCAGGGGCTGCACTGTGAGGAGAAGACTAACCCCAGCTGTGCAGACAGCCCCTGCAGGAACAAGGCAAC
CTGCCAAGACACACCTCGAGGGGCCCGCTGCCTCTGCAGCCCTGGCTATACAGGAAGCAGCTGCCAGACT
CTGATAGACTTGTGTGCCCGGAAGCCCTGTCCACACACTGCTCGATGCCTCCAGAGTGGGCCCTCGTTCC
AGTGCCTGTGCCTCCAGGGATGGACAGGGGCTCTCTGTGACTTCCCACTGTCCTGCCAGAAGGCCGCGAT
GAGCCAAGGCATAGAGATCTCTGGCCTGTGCCAGAATGGAGGCCTCTGTATTGACACGGGCTCCTCCTAT
TTCTGCCGCTGCCCTCCTGGATTCCAAGGCAAGTTATGCCAGGATAATGTGAACCCCTGTGAGCCCAATC
CCTGCCATCACGGGTCTACCTGTGTGCCTCAGCCCAGTGGCTATGTCTGCCAGTGTGCCCCAGGCTATGA
GGGACAGAACTGCTCAAAAGTACTTGACGCTTGTCAGTCCCAGCCCTGCCACAACCACGGAACCTGTACC
TCCAGGCCTGGAGGCTTCCACTGTGCCTGCCCTCCAGGCTTCGTGGGACTGCGCTGTGAGGGAGATGTGG
ATGAGTGTCTGGACCGGCCCTGTCACCCCTCGGGCACTGCAGCTTGCCACTCTTTAGCCAACGCCTTCTA
CTGCCAGTGTCTGCCTGGGCACACAGGCCAGCGGTGTGAGGTGGAGATGGACCTCTGTCAGAGCCAACCC
TGCTCCAATGGAGGATCCTGTGAGATCACAACAGGGCCACCCCCTGGCTTCACCTGTCACTGCCCCAAGG
GTTTTGAAGGCCCCACCTGCAGCCACAAAGCCCTTTCCTGCGGCATCCATCACTGCCACAATGGAGGCCT
ATGTCTGCCCTCCCCTAAGCCAGGGTCACCACCACTCTGTGCCTGCCTCAGTGGTTTTGGGGGCCCTGAC
TGTCTGACACCTCCAGCTCCACCGGGCTGCGGTCCCCCCTCACCCTGCCTGCACAATGGTACCTGCACTG
AGACCCCTGGGTTGGGCAACCCGGGCTTTCAATGCACCTGCCCTCCTGACTCTCCAGGGCCCCGGTGTCA
AAGGCCAGGGGCAAGTGGGTGTGAGGGCCGAGGTGGTGATGGGACCTGCGATGCTGGCTGCAGTGGCCCA
GGAGGAGACTGGGATGGAGGGGACTGTTCCCTGGGGGTCCCAGACCCCTGGAAGGGCTGTCCCCCGCATT
CCCAGTGCTGGCTTCTGTTCCGGGACGGACGGTGTCACCCGCAGTGTGACTCTGAGGAGTGTCTCTTTGA
TGGCTACGACTGTGAAATCCCTCTAACCTGCATCCCAGCCTATGACCAGTACTGCCGAGATCACTTCCAC
AACGGGCACTGTGAGAAAGGCTGCAATAACGCTGAATGTGGCTGGGACGGGGGAGACTGCAGACCAGAAG
GGGAAGACTCAGAGGGGAGGCCCTCCCTGGCCCTGCTGGTGGTGCTGAGGCCCCCAGCCCTGGATCAGCA
GCTGCTTGCCCTGGCACGAGTGCTGTCCCTGACTCTGAGGGTCGGTCTCTGGGTGAGGAAGGACAGTGAA
GGCAGGAACATGGTGTTCCCCTATCCTGGGACCCGGGCCAAAGAGGAGCTGAGTGGAGCTAGGGATTCCT
CTTCATGGGAAAGACAAGCCCCTCCCACTCAGCCCCTGGGCAAGGAGACAGAGTCTCTTGGTGCAGGGTT
TGTGGTAGTGATGGGAGTGGATCTGTCCCGCTGTGGTCCGGAACATCCTGCGTCCCGCTGCCCCTGGGAC
TCTGGACTCCTGCTGCGCTTCCTTGCAGCAATGGCAGCAGTGGGAGCTCTGGAGCCCCTGCTGCCTGGAC
CCTTGCTGGCGGCTCACCCTCAAGCAGGGACCAGGCCCTCTGCCAACCAGCTTCCCTGGCCCATTCTATG
TTCACCAGTGGTTGGGGTGCTTCTCCTGGCCCTTGGGGCCCTTCTCGTCCTCCAGCTCATTCGGCGACGG
CGACGAGAACATGGGGCCCTGTGGCTGCCCCCTGGTTTCATTCGAAGGCCTCAGACACAGCAGGCACCCC
ACCGGCGGAGGCCCCCACTGGGCGAGGACAACATTGGTCTTAAGGCACTGAAGCCAGAGGCCGAAGTGGA
TGAGGATGGAGTGGCCATGTGCTCGGGCCCTGAAGAGGGAGAGGCTGAAGAAACAGCCTCAGCCTCCAGG
TGCCAGCTTTGGCCGCTCAACAGCGGCTGTGGAGAGCTCCCCCAGGCAGCCATGCTGACCCCTCCTCAGG
AGTGTGAATCGGAGGTTCTGGATGTGGACACCTGTGGACCTGATGGGGTGACACCCCTGATGTCAGCCGT
CTTCTGTGGGGGAGTGCAGTCCACGACTGGGGCTAGTCCACAGAGACTGGGGCTAGGAAATCTGGAACCC
TGGGAACCACTGCTGGATAGAGGGGCCTGCCCCCAGGCTCACACTGTGGGCACTGGAGAGACGCCTCTGC
ACCTAGCTGCCAGATTCTCTCGGCCAACCGCTGCCCGCCGCCTCCTTGAGGCTGGAGCCAACCCCAACCA
GCCAGACCGCGCTGGGCGCACCCCACTTCACACTGCTGTGGCTGCCGACGCTCGGGAGGTTTGCCAGCTC
CTATTGGCCAGCAGACAGACTACGGTGGACGCCCGCACAGAGGACGGGACTACACCTTTGATGCTGGCTG
CCAGGCTGGCCGTGGAGGACCTGGTTGAAGAATTGATCGCAGCCCGAGCAGATGTAGGAGCCAGGGATAA
AAGGGGAAAAACTGCACTGCACTGGGCCGCTGCTGTGAACAACGCCCGAGCCGCCCGCTCTCTCCTCCAG
GCTGGAGCGGATAAAGATGCCCAGGACAGTAGGGAACAGACGCCGCTTTTCCTGGCAGCGCGCGAAGGAG
CCGTGGAGGTGGCGCAGCTGTTGCTGGAGCTCGGGGCGGCCCGGGGACTGCGAGACCAGGCCGGGCTGGC
CCCAGGAGATGTGGCCCGCCAGCGCAGTCACTGGGACCTGCTAACGCTGCTGGAAGGGGCTGGACCGACT
ACGCAGGAGGCCCGTGCGCACGCACGCACCACGCCGGGGGGCGGGGCCGCGCCGCGCTGCCGGACGCTGT
CTGCGGGAGCGCGCCCGCGCGGGGGCGGAGCCTGTCTGCAGGCTCGCACTTGGTCGGTGGACTTGGGAGC
GCGCGGAGGGAAGGTGTATGCTCGCTGCCGGAGCCGATCTGGAAGCTGCGGAGGCCCCACCACGCGCGGC
CGCAGGTTCTCCGCGGGCTCCCGTGGACGACGCGGGGCTAGGGCATCACAGGATGACTGGCCTCGCGACT
GGGTGGCCCTGGAAGCCTGCGGCTCCGCCTGCAGTGCGCCGATCCCGCCTCCCAGCCTGACCCCGTCCCC
AGAACGTGGATCCCCTCAAGTTGCCTGGGGTCTTCCAGTTCACCAAGAGATTCCCTTAAACTCGGTTGTA
AGAAATCTGAACTAG


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_010929
ORF Size 5895 bp
Insert Size 5895
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).
Reference Data
RefSeq NM_010929.2, NP_035059.2
RefSeq Size 6604
RefSeq ORF 5895
Locus ID 18132

Other Versions

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