Stk36 (NM_175031) Mouse Untagged Clone

CAT#: MC224228

Stk36 (untagged) - Mouse serine/threonine kinase 36 (fused homolog, Drosophila) (Stk36), (10ug)


  "NM_175031" in other vectors (4)

Reconstitution Protocol

USD 1,780.00

6 Weeks*

Size
    • 10 ug

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Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Symbol Stk36
Synonyms 1700112N14Rik; B930045J24; FU; Fused; mKIAA1278
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC224228 representing NM_175031
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGGAAAAGTACCACGTTTTGGAGATGATTGGAGAAGGCTCTTTTGGGAGAGTGTATAAGGGCCGAAAAA
AATACAGTGCTCAGGTGGTGGCCTTGAAGTTCATCCCCAAACTGGGGCGCTCAGAGAAAGAGCTGAGGAA
TCTGCAACGAGAGATTGAAATCATGCGGGGTCTGTGGCATCCCAACATTGTGCATATGCTCGACAGCTTT
GAGACTGACAAAGAGGTGGTGGTGGTGACAGACTACGCTGAAGGAGAACTCTTTCAGATTCTGGAAGATG
ATGGAAAACTTCCTGAAGACCAGGTTCAGGCCATCGCTGCCCAGTTGGTGTCAGCTCTGTACTACCTGCA
TTCCCACCGCATCCTACACCGCGACATGAAACCGCAGAACATTCTTCTCGCCAAGGGTGGTGGCATTAAA
CTTTGTGACTTTGGATTCGCCCGAGCTATGAGCACCAACACCATGGTGCTGACGTCGATCAAAGGCACAC
CGCTCTATATGTCTCCAGAGCTGGTGGAGGAGCGACCATATGACCACACCGCAGACCTCTGGTCTGTGGG
CTGCATCCTGTATGAGCTGGCTGTCGGCACGCCTCCCTTCTACACCACCAGCATCTTTCAGCTGGTTAGC
CTCATTCTCAAGGACCCTGTGCGCTGGCCCTCCACCATTAGTTCCTGCTTCAAGAACTTCTTGCAGGGGC
TGCTCACCAAGGACCCCCGGCAGCGTCTGTCCTGGCCAGACCTCTTACATCACCCCTTTATTGCCGGCCG
TGTCACCATCATAACTGAACCAGCAGGCTCCGATTTGGGCACCCCATTTACTAGTCGCCTACCCCCAGAA
CTTCAGGTCCTCAAGGATGAACAGGCGCATCGGCTCGCACCCAAGGGTAACCAGTCTCGCATCCTGCGCC
AGGCCTGTAAACTCATGGCTGAAGAAGCCAAGCAGAAGGAAGACCAAAATGCAGGATCTGCCCTTGAACA
AGAAGACGGGCTCTGCAAGGTGACACCCAGCACAGCCCCCGTGCCTGGACTAAAGGCCACTCCTCAGGAG
TCAAGCCTCTTGGCTGGTATACTGGCTTCAGAAATGAAGAACAACTGGGAAGACTGGGGGGCTGGAGAAG
CACCCCGTACCTCTCGGGAAAACCACATCAACCTGGAGTGTGAACAAGGCTTCCCAGAGCCGAGGCCAGA
GGCGATGGGCCGGCAGAGCACTGATGTAGTGGATCCTGAAAATGAGGAGCCAGACAGTGATGATGAGTGG
CAACGCCTACTAGAGACCAGCGAGCCTGGGCCTGTGCAGCTGAAGTCCCCCCTCACCCTGTTGTGTAACC
CTGACTTCTGCCAGCGCATCCAGAGTCAGCTGCGCGGGACTGGCGAGCAGATCCTGAAAGGCGTTCTGGA
TGGTGTGTCCCACCTCCTTCCTGTACTCCGCATCCTGAGTAGTCTCCTATCCAGCTGCAATGACTCTGTG
CTCTTGTATTCCTTCTGCCAGGAGGCAGGACTGCCTGAGCTGCCTCTCAGCCTTCTTAGGTACAGCCAGG
AGAGTAGCAGCATCCAGCAGCAACCTTGGTATGGGGCGCTCTTACGGGACCTGGTGGCTGTGGTTCAGGC
CTACTTTTCGTGCACCTTCAATCTGGAGAGGAGCCAGACAGGTGACAGCCTACAGGTGTTTCAGGAGGCC
GCCAGCCTCTTTTTGGACCTGTTGGGGAAGCTGCTGGCCCAATCAGATGATTCCGAGCAGACATTTCGAA
GGGATAGCCTTATGTGCTTTGCTGTCTTGTGTGAAGCTGTGGACGGAAACAGCTGGGCCGTCTCCAAAGC
CTTCTACTCCAGCCTGTTGACCACACAGCGCGCTGTGTTGGATGGCCTCCTTCACGGCCTGACAGTCCCA
CAGCTTCCTTTCCACACACCACCAGGAGCCCCACAAGTGAGCCAGCCGCTGCGGGAGCAGAGTGAAGATG
TACCTGGAGCCATCTCTTCTGCCCTGGCAGCCATGTGTACTGCTCCTGTGGGGCTGCCCAGCTGTTGGGA
TGCCAAGGAGCAGGTCTCTTGGCATTTGGCCAACCAGCTAACTGAAGACAGCAGCCAACTGAGGCCATCC
CTCATCTCTGGTCTGCGACACCATGTCCTGTGCCTCCACCTTCTCAAGGTTCTCTACGCCTGCTGCTATA
TTAGTGAGCGCCTGTGCCATATTCTGGGGCAAGAGCCCCTGGCCTTGGAGTCGCTGCTGATGTTAGTCCA
GGGCAAGGTGAAAGTAGCAGATTGGGAAGAGTCCACTGAGGTGGCACTTTACCTCCTGTCCCTTCTTGTC
TTTCGGCTCCAAGATCTGCCTTCAGGGATGGAGAAGCTGGGCAGTGAGGTTGCTACTCTCTTTACCCACT
CACATGTCGTCTCTCTTGTGAATGCGGCAGCCTGTCTCTTAGGACAGCTTGGTCAGCAAGGGGTGACCTT
TGACCTCCAGCCCCGGGAATGGATTGCTGCAGCTGCACATGCCTTGTCTGCCCCTGCAGAGGTCCGGCTG
ACTCCGCCGTATAGTTGTGGCTTCTATGATGGCCTCCTCATTCTCCTGCTTCAGCTTCTTATGCAGGTAC
AGGGGAAGCCTGGCCTGATCAGGGATGTGGTTGGTTCAGAGGTGTGGACCATTCTGTGGCACCGCTTTTC
CATGGCCCTGAGGCTGCCCGAGGAGGTGTCTGCCCAGGAAGACGACCTGCTACTATCAAGTCCCTCCAGC
CTAGAGCCAGACTGGACACTGATTTCACCCCAAGGCATGGCAGCCTTGCTGAGCCTGGCCATGGCCATCT
TCACCCAGGAGTCCCAGTTATGCCTGAGCCACCTGTCCCAGCATGGCAGTGTCCTCATGCTGACCCTGAA
GCACCTGCTTTCACCCAGCTTCTTGCACCACCTGAGCCAGGCGCCGCAGGGGCCCGAGTTTCTCCCCGTT
GTGGTGCTCTCCGTGTGCAAGCTGCTCTGCTTCCCTTTTGCCCTGGATGTGGATGCTGACCTCCTTGTAG
GTGTCTTGGCTGACCTCAGGGCCTCGGAAGTGGTAGTCTGCCTGCTGCAGGTCTGCTGCCACCACCTTTC
GTTGTTACAAGCAGAGCTGCCCATTGGCCTCCTTACACGCCTGGCCCTCACGGATTCTGCCTCTCTCAAG
CAGTTTGTGAACACAGTGGCCACCTCTTCTAGAGCCATCATCTCATTCCTCTCTGTTGTTCTCCTGAGTG
ACCAGCCCCTCATGATCTCTGACCTCCTGTCCCTGCTGACACACACAGCCCGGATTCTGTCCCCCAGCCA
CTTGTCCTTTATCCAAGAGCTCCTGTCTGGCTCTGATGAATCCTATCGGCCATTGCGCAGCCTCCTAGGC
CACTCAGAGAACACTGTGCGGGTCCGTGCATATGGGCTCCTGGGACATTTATTACAGCACAGCATGGCCC
TACGTGGGGCACTACAGAGTCAGTCAGGACTGCTCAACCTTCTGCTGCTAGGGCTTGGAGACAAGGACCC
TGCCGTGCGACGCAGTGCCAGCTTTGCTGTGGGCAATGCAGCCTACCAGGCTGGGCCTTTGGGACCTGCC
TTGGCAGCTGCAGTGCCCAGTATGACCCAGCTGCTTGGAGATGCTCAGGATGGGATCCGGCGCAATGCTG
CATCAGCTCTAGGCAATCTGGGACCTGAAGGATTGGGCAAGGAGCTATTAAAGTGCCAAGTACCCCAGCG
GCTCCTAGAAATGGCATGTGGAGACCCTCAGCCAACTGTCAAAGAGGCTGCCCTCATTGCCCTTCGAAGC
CTCCAACAGGAGTCCTGTATTCATCAGGTGCTGGTGTCGCTGGGTGCCAGTGAGAAGTTAGCCTTGCTCT
CTTTGGGGAATCAGTTACTGCCGAATAGCAGCAACAGGCCTGCCTCCGTCAGACACTGCAGGAAGCTCAT
CCAACTCCTGAGGCCAACCCACAGCACATGA


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_175031
ORF Size 3951 bp
Insert Size 3951
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_175031.3, NP_778196.2
RefSeq Size 5329
RefSeq ORF 3951
Locus ID 269209

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