Frmpd2 cDNA ORF clone, Mus pahari(shrew mouse)

The following Frmpd2 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Frmpd2 cDNA ORF which is encoded by the open reading frame (ORF) sequence. ORF sequences can be delivered in our standard vector, pcDNA3.1+/C-(K)DYK or the vector of your choice as an expression/transfection-ready ORF clone. Not the clone you want? Click here to find your clone.

***CloneID Accession No. Definition **Vector *Turnaround time Price (USD) Select
OMv86959 XM_029541809.1
Latest version!
Mus pahari FERM and PDZ domain containing 2 (Frmpd2), mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
OMv18525 XM_021203855.1
Latest version!
Mus pahari FERM and PDZ domain containing 2 (Frmpd2), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00

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** You may select a custom vector to replace pcDNA3.1+/C-(K)DYK after clone is added to cart.

** GenScript guarantees 100% sequence accuracy of all synthetic DNA constructs we deliver, but we do not guarantee protein expression in your experimental system. Protein expression is influenced by many factors that may vary between experiments or laboratories. In addition, please pay attention to the signal peptide, propeptide and transit peptide in target ORF, which may affect the choice of vector (N/C terminal tag vector).

***One clone ID might be correlated to multiple accession numbers, which share the same CDS sequence.

  • Reference Sequences (Refseq)
    CloneID OMv86959
    Clone ID Related Accession (Same CDS sequence) XM_029541809.1
    Accession Version XM_029541809.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3000bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-17
    Organism Mus pahari(shrew mouse)
    Product FERM and PDZ domain-containing protein 2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034597.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Mus pahari Annotation Release 101 Annotation Version :: 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    ATGCTCTTGG CAGAAGCAGA AAACTCGCAG CCAGCAACAT CTTCTCCAAG GAATTTCCTG 
    CAAAGAAAGG GAAAGTTCTC CAGACCAGAG TTCATCCTGT TGGCTGGAGA GGCCCCAGTG
    ACCCTACATT TACCTGGATC CATTGTGACC AAAAAGGGGA AATCCTTCTT GGCTCTCAGA
    GACCTCTGTG TGGTCTTGCT GAACGGACAG TGTCTGGAGG TGAAGTGTGA CATGGAGTCC
    ACAGCAGGAG CTGTCTTCAA TGCTGTCATG TCCTTTGCCA ATCTTGGGGA GACCACCTAC
    TTTGGCTTGG CTTATGTGAA AGGTGAAGAG TTCTTTTTTC TGGACAAGGA CACTAGATTG
    TGCAAAGTCG CCCCAGAAGG CTGGAGAGAG CAGCACCCGA AAGGTTCCGT GGACACTTTA
    ACACTCTTTC TGCGGATAAG GTTCTTTGTC AGTCACTACG GGCTGCTCCG GCACAGCCTG
    ACAAGGCATC AGTTTTACCT GCAGCTTCGG AAAGACATTT TAGAAGAGAA ACTGTATTGC
    AATGATGAGA CACTGCTGCA ACTGGGGGTC CTTGCCCTGC AGGCTGAGTT CGGGAGCTAT
    CCTAAGGAGC AGGTGGAGGG CAAAGCATAC TTCCGAATTC AAGATTACAT CCCGGCAAGG
    CTTATTGAGA GGATGACAGC GATCCGGGTC CAAGTAGAAG TCTCAGAAAT GCACCGGCTC
    AGTTCTGCGC CGTGGGGAGA GGATGCTGAG CTGGAGTTCT TGGAGATTGT TCAGCAACTC
    CCAGAATATG GAGTCCTGGT TCACCGTGTT TCCCCAGAGA AGAAGAGACC AGAAGGGAAA
    ATGGCTTTGG GGGTCTGCAC CAAGGGCATC ATCATCTATG AAGTCAGAGG CAGTTGCAGA
    ATTGCAACAT CCCAGTTTCC ATGGAGAGAA ACTGGGATGA TTTCAACTCA TAGAAAAAAG
    CTCACCATCA CCAGCAGCAC CACTGGGAAG AAGTACACCT TTGTCACCGA TTCAGCCAAG
    ACCTGTAGAT ACTTGCTGGG CCTCTGCTCT TCCCAGCACT GGTTTAATGC ACAGACGGGC
    TCTAAGCGTC CTTCCCATCT TTTTACTGGT CAGGATACGT TTGCACAAAT AGCCAGCTTG
    AGTTCTGCAC ACCAGACACA AGCCAATCCT ATCACTTGGA TTCAGAAACT GTCCTGCTCA
    GAAAATGAGT TGTGTGTACC CAAGTTGCAA GATGCCACAG GAGGCAAACT GGGCCCATCC
    ATGGAGAACA AGCAAGGTAG CAAGGAGCCC GGGATGGAGA GAATTGGAAG CAGCCCATAC
    ACTGGTGGAG AGCAGCTGCA CAGCATCGGT TTGAACCAGA AGCCAGCTCA TACTCTCTTC
    GGAACAGCTG GTCGCAGCAT GTGTGCAGGG TCACAGAACA GCAAGAGGAA GGGCTTTACG
    GGAGAACCCA ACCAAGATAT CGTGTGTGTG ATGCTGAAGC GGGATCCAGT TCATGGCTTT
    GGTTTTGTCA TTAACGAGGG AGAAGATGCA GAGCAAACAA GGCCCGGCAT TTTCATATCT
    TCCCTTATAC CTGGGGGACC GGCAGAAAGA GCTAAAAAGA TCAAACCAGG AGGAAAGATA
    CTAGCCTTGA ATCACATCAG CCTGGAGGGC TTCACATTCA GCATGGCTGT TCGAATGATC
    CAGAATTCTC CTGATGACAT GGAATTAATA ATTTCTCAGC CAAAAGGTGT TTGTGGGACC
    ATCTACAGTG AAGAAAAGAA TAGTACAGCA AGTTCTGGCA TGTTCTGTAC GGACATCCTG
    AGCGACAGGT GCCAGGGAAG ACAGTCAGCA CACACACATG ACCAGGACAG AAATGCTGGT
    AGCATGGGTG CTGGCTCTTG TCCTCCATCC CCTCTACAAA CCGACTCTGG TGAAATCTAC
    TTCGTGGAGC TGGTGAAAGA AGATGGAACC CTTGGATTCA GCGTGACTGG TGGCATTAAT
    ACAAGTGTGC CTCATGGAGG AATCTATGTG AAATCTATCA TTCCTGGAGG CCCAGCTGCC
    AAGGAAGGAC AGATCCGACA GGGAGATCGA CTACTGCAGG TGGATGGAGT GAGTCTATGT
    GGCCTTACTC ACAAGCAGGC TGTGCAGTGT CTCAAGGGTC CTGGGCAGGT GGCACGGCTG
    GTCTTAGAGA GAAGAGGCCC CAGGGCTGCA CCACAATGTC CTTCTGCTGA TGACAAGATG
    GGAGATGTGC ACATGGCTGT TTCCCTGGTA ACAGCCAGGC CTGGCAGACC TGCGAGCAGT
    GTCTCAATAA CAGATGGTCC TAAGTTTGAA GTCAAACTGA AGAAGAACAG CAGCGGTTTG
    GGATTCAGCT TCGTGCAGAT GGAGAGAGGA AATTGCATCC ACATGAAGAG CGACCTTGTG
    AGGATTAAGA GGCTCTTTCC CGGGCAGCCA GCTGAAGAGC ACGGAGCCAT TGCAGCTGGT
    GACATTATCC TGGCCGTGAA TGGCAAGACC ATAGAAGGCC TCGCTTTCCA GGAAGTGCTC
    CATTTATTGC GAGGGGCTCC AGAGGAAGTG ACGCTCCTCC TCTGCCGACC CCCTCCTGGG
    ATACTGCCTG AGATTGAGCC TGGATGGCAG ACCCCTGAAC TATCAGGAGA CCAAAGACTC
    ACCATGGCAA CCTGTGCTGG ATCAGAGCAG AGCCCCAGCC TGGATCAAGA AGACAACTGG
    AGGGACAGTA CCTCTCTGGA TGCAGAAGGT CTGAATCCAA GGCCAGAGTC TTTCTACAAG
    GCTGTTAGAC AGGTGAAGGG GAACAGAGAA AAAGAAAGGC CTTGGGCCAA GTCCTTGATG
    CATCCCATGG AGTCCCACCC TCATGTATGT AAACTCCACC CAGAACCAGA GACACCAGCA
    CTGGCCACCT CTTTGGAAAA GGATATGAGA CAAAACTGCT ATTCCGTGTG TGATATCAGG
    AGACTGGGAA GATTTTCCTT CTCATCTTCT CTAACAAGAT TAGCAACAGA CATTTTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_029397669.1
    CDS5..3004
    Translation

    Target ORF information:

    RefSeq Version XM_029541809.1
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari FERM and PDZ domain containing 2 (Frmpd2), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029541809.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    ATGCTCTTGG CAGAAGCAGA AAACTCGCAG CCAGCAACAT CTTCTCCAAG GAATTTCCTG 
    CAAAGAAAGG GAAAGTTCTC CAGACCAGAG TTCATCCTGT TGGCTGGAGA GGCCCCAGTG
    ACCCTACATT TACCTGGATC CATTGTGACC AAAAAGGGGA AATCCTTCTT GGCTCTCAGA
    GACCTCTGTG TGGTCTTGCT GAACGGACAG TGTCTGGAGG TGAAGTGTGA CATGGAGTCC
    ACAGCAGGAG CTGTCTTCAA TGCTGTCATG TCCTTTGCCA ATCTTGGGGA GACCACCTAC
    TTTGGCTTGG CTTATGTGAA AGGTGAAGAG TTCTTTTTTC TGGACAAGGA CACTAGATTG
    TGCAAAGTCG CCCCAGAAGG CTGGAGAGAG CAGCACCCGA AAGGTTCCGT GGACACTTTA
    ACACTCTTTC TGCGGATAAG GTTCTTTGTC AGTCACTACG GGCTGCTCCG GCACAGCCTG
    ACAAGGCATC AGTTTTACCT GCAGCTTCGG AAAGACATTT TAGAAGAGAA ACTGTATTGC
    AATGATGAGA CACTGCTGCA ACTGGGGGTC CTTGCCCTGC AGGCTGAGTT CGGGAGCTAT
    CCTAAGGAGC AGGTGGAGGG CAAAGCATAC TTCCGAATTC AAGATTACAT CCCGGCAAGG
    CTTATTGAGA GGATGACAGC GATCCGGGTC CAAGTAGAAG TCTCAGAAAT GCACCGGCTC
    AGTTCTGCGC CGTGGGGAGA GGATGCTGAG CTGGAGTTCT TGGAGATTGT TCAGCAACTC
    CCAGAATATG GAGTCCTGGT TCACCGTGTT TCCCCAGAGA AGAAGAGACC AGAAGGGAAA
    ATGGCTTTGG GGGTCTGCAC CAAGGGCATC ATCATCTATG AAGTCAGAGG CAGTTGCAGA
    ATTGCAACAT CCCAGTTTCC ATGGAGAGAA ACTGGGATGA TTTCAACTCA TAGAAAAAAG
    CTCACCATCA CCAGCAGCAC CACTGGGAAG AAGTACACCT TTGTCACCGA TTCAGCCAAG
    ACCTGTAGAT ACTTGCTGGG CCTCTGCTCT TCCCAGCACT GGTTTAATGC ACAGACGGGC
    TCTAAGCGTC CTTCCCATCT TTTTACTGGT CAGGATACGT TTGCACAAAT AGCCAGCTTG
    AGTTCTGCAC ACCAGACACA AGCCAATCCT ATCACTTGGA TTCAGAAACT GTCCTGCTCA
    GAAAATGAGT TGTGTGTACC CAAGTTGCAA GATGCCACAG GAGGCAAACT GGGCCCATCC
    ATGGAGAACA AGCAAGGTAG CAAGGAGCCC GGGATGGAGA GAATTGGAAG CAGCCCATAC
    ACTGGTGGAG AGCAGCTGCA CAGCATCGGT TTGAACCAGA AGCCAGCTCA TACTCTCTTC
    GGAACAGCTG GTCGCAGCAT GTGTGCAGGG TCACAGAACA GCAAGAGGAA GGGCTTTACG
    GGAGAACCCA ACCAAGATAT CGTGTGTGTG ATGCTGAAGC GGGATCCAGT TCATGGCTTT
    GGTTTTGTCA TTAACGAGGG AGAAGATGCA GAGCAAACAA GGCCCGGCAT TTTCATATCT
    TCCCTTATAC CTGGGGGACC GGCAGAAAGA GCTAAAAAGA TCAAACCAGG AGGAAAGATA
    CTAGCCTTGA ATCACATCAG CCTGGAGGGC TTCACATTCA GCATGGCTGT TCGAATGATC
    CAGAATTCTC CTGATGACAT GGAATTAATA ATTTCTCAGC CAAAAGGTGT TTGTGGGACC
    ATCTACAGTG AAGAAAAGAA TAGTACAGCA AGTTCTGGCA TGTTCTGTAC GGACATCCTG
    AGCGACAGGT GCCAGGGAAG ACAGTCAGCA CACACACATG ACCAGGACAG AAATGCTGGT
    AGCATGGGTG CTGGCTCTTG TCCTCCATCC CCTCTACAAA CCGACTCTGG TGAAATCTAC
    TTCGTGGAGC TGGTGAAAGA AGATGGAACC CTTGGATTCA GCGTGACTGG TGGCATTAAT
    ACAAGTGTGC CTCATGGAGG AATCTATGTG AAATCTATCA TTCCTGGAGG CCCAGCTGCC
    AAGGAAGGAC AGATCCGACA GGGAGATCGA CTACTGCAGG TGGATGGAGT GAGTCTATGT
    GGCCTTACTC ACAAGCAGGC TGTGCAGTGT CTCAAGGGTC CTGGGCAGGT GGCACGGCTG
    GTCTTAGAGA GAAGAGGCCC CAGGGCTGCA CCACAATGTC CTTCTGCTGA TGACAAGATG
    GGAGATGTGC ACATGGCTGT TTCCCTGGTA ACAGCCAGGC CTGGCAGACC TGCGAGCAGT
    GTCTCAATAA CAGATGGTCC TAAGTTTGAA GTCAAACTGA AGAAGAACAG CAGCGGTTTG
    GGATTCAGCT TCGTGCAGAT GGAGAGAGGA AATTGCATCC ACATGAAGAG CGACCTTGTG
    AGGATTAAGA GGCTCTTTCC CGGGCAGCCA GCTGAAGAGC ACGGAGCCAT TGCAGCTGGT
    GACATTATCC TGGCCGTGAA TGGCAAGACC ATAGAAGGCC TCGCTTTCCA GGAAGTGCTC
    CATTTATTGC GAGGGGCTCC AGAGGAAGTG ACGCTCCTCC TCTGCCGACC CCCTCCTGGG
    ATACTGCCTG AGATTGAGCC TGGATGGCAG ACCCCTGAAC TATCAGGAGA CCAAAGACTC
    ACCATGGCAA CCTGTGCTGG ATCAGAGCAG AGCCCCAGCC TGGATCAAGA AGACAACTGG
    AGGGACAGTA CCTCTCTGGA TGCAGAAGGT CTGAATCCAA GGCCAGAGTC TTTCTACAAG
    GCTGTTAGAC AGGTGAAGGG GAACAGAGAA AAAGAAAGGC CTTGGGCCAA GTCCTTGATG
    CATCCCATGG AGTCCCACCC TCATGTATGT AAACTCCACC CAGAACCAGA GACACCAGCA
    CTGGCCACCT CTTTGGAAAA GGATATGAGA CAAAACTGCT ATTCCGTGTG TGATATCAGG
    AGACTGGGAA GATTTTCCTT CTCATCTTCT CTAACAAGAT TAGCAACAGA CATTTTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OMv18525
    Clone ID Related Accession (Same CDS sequence) XM_021203855.1
    Accession Version XM_021203855.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3819bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-05-18
    Organism Mus pahari(shrew mouse)
    Product FERM and PDZ domain-containing protein 2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034597.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Mus pahari Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END## ##RefSeq-Attributes-START## ab initio :: 4% of CDS bases ##RefSeq-Attributes-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    ATGAGTGTGG CCTCCGTGAC ACTTGCTAGT GCCCTGCAGG TCAGAGGTGA AGCCCTGTCT 
    GAGGAGGAAA TCTGGTCCCT CTTGTCACTG GCTGCTGAGC GGCTCCTGGA AGACCTACGT
    AATGATTCCT CAGACTATGT GGTCTGCCCC TGGTCGCTCC TGCTGTCTGC AGCCGGAGAT
    CTTTCTTTCC AAGACCACGT TTCTCACATA GAGGCTACAC CATTCAAAGC TCCTGAACTG
    CTACAGGGAT CAAATGAAGA GGGGCAGCCT GATGCAGCCC AGGCGCACGT CTACTCCTTA
    GGGATGACTC TCTACTGGTC AGCGGGATTT CGTGTTCCAC CAAACCAGCC CCTGCAGCTT
    CAAGAGCCCG TACACTCCCT CCTGCTGGCC ATGTGTGAAG ACCAGCCACG GAGAAGAAAG
    CCACTACAGG CAGTTCTAGA AGCCTGCCGG ATCCATCAGG AAGAGGTGGC TGTGTACCCA
    GCCCCTGCCG GTCTCCATAT CAGTCGACTG GTGGGCTTGG TGCTGGGCAC CATCTCCGAG
    GTGGAGCGGA GAGCTGTAGA GGAAAATGCC TGTGAGCAGC AGAACAGAAG CTGCTTTCTC
    AGGAGCAGGC TGCATCAGGC TGTCAGCGAG AGCCCCAGAG CGCCAGCCGC TGATGCTCTG
    CAGCCTCGGA GAGTTTCAGA GAGAAGCACA GAGACACAGA GTTCCTTGGA GCGATGCTGG
    AGTACCACAG CGCACAGTCG CAACAGCTTT GTTAACAGCA CATTTACAGG TGCTGGTCCC
    TGTGACTGTG AGGAGAGTCC ACGGTGTGGC TCGGAGCCTA TGCTCTTGGC AGAAGCAGAA
    AACTCGCAGC CAGCAACATC TTCTCCAAGG AATTTCCTGC AAAGAAAGGG AAAGTTCTCC
    AGACCAGAGT TCATCCTGTT GGCTGGAGAG GCCCCAGTGA CCCTACATTT ACCTGGATCC
    ATTGTGACCA AAAAGGGGAA ATCCTTCTTG GCTCTCAGAG ACCTCTGTGT GGTCTTGCTG
    AACGGACAGT GTCTGGAGGT GAAGTGTGAC ATGGAGTCCA CAGCAGGAGC TGTCTTCAAT
    GCTGTCATGT CCTTTGCCAA TCTTGGGGAG ACCACCTACT TTGGCTTGGC TTATGTGAAA
    GGTGAAGAGT TCTTTTTTCT GGACAAGGAC ACTAGATTGT GCAAAGTCGC CCCAGAAGGC
    TGGAGAGAGC AGCACCCGAA AGGTTCCGTG GACACTTTAA CACTCTTTCT GCGGATAAGG
    TTCTTTGTCA GTCACTACGG GCTGCTCCGG CACAGCCTGA CAAGGCATCA GTTTTACCTG
    CAGCTTCGGA AAGACATTTT AGAAGAGAAA CTGTATTGCA ATGATGAGAC ACTGCTGCAA
    CTGGGGGTCC TTGCCCTGCA GGCTGAGTTC GGGAGCTATC CTAAGGAGCA GGTGGAGGGC
    AAAGCATACT TCCGAATTCA AGATTACATC CCGGCAAGGC TTATTGAGAG GATGACAGCG
    ATCCGGGTCC AAGTAGAAGT CTCAGAAATG CACCGGCTCA GTTCTGCGCC GTGGGGAGAG
    GATGCTGAGC TGGAGTTCTT GGAGATTGTT CAGCAACTCC CAGAATATGG AGTCCTGGTT
    CACCGTGTTT CCCCAGAGAA GAAGAGACCA GAAGGGAAAA TGGCTTTGGG GGTCTGCACC
    AAGGGCATCA TCATCTATGA AGTCAGAGGC AGTTGCAGAA TTGCAACATC CCAGTTTCCA
    TGGAGAGAAA CTGGGATGAT TTCAACTCAT AGAAAAAAGC TCACCATCAC CAGCAGCACC
    ACTGGGAAGA AGTACACCTT TGTCACCGAT TCAGCCAAGA CCTGTAGATA CTTGCTGGGC
    CTCTGCTCTT CCCAGCACTG GTTTAATGCA CAGACGGGCT CTAAGCGTCC TTCCCATCTT
    TTTACTGGTC AGGATACGTT TGCACAAATA GCCAGCTTGA GTTCTGCACA CCAGACACAA
    GCCAATCCTA TCACTTGGAT TCAGAAACTG TCCTGCTCAG AAAATGAGTT GTGTGTACCC
    AAGTTGCAAG ATGCCACAGG AGGCAAACTG GGCCCATCCA TGGAGAACAA GCAAGGTAGC
    AAGGAGCCCG GGATGGAGAG AATTGGAAGC AGCCCATACA CTGGTGGAGA GCAGCTGCAC
    AGCATCGGTT TGAACCAGAA GCCAGCTCAT ACTCTCTTCG GAACAGCTGG TCGCAGCATG
    TGTGCAGGGT CACAGAACAG CAAGAGGAAG GGCTTTACGG GAGAACCCAA CCAAGATATC
    GTGTGTGTGA TGCTGAAGCG GGATCCAGTT CATGGCTTTG GTTTTGTCAT TAACGAGGGA
    GAAGATGCAG AGCAAACAAG GCCCGGCATT TTCATATCTT CCCTTATACC TGGGGGACCG
    GCAGAAAGAG CTAAAAAGAT CAAACCAGGA GGAAAGATAC TAGCCTTGAA TCACATCAGC
    CTGGAGGGCT TCACATTCAG CATGGCTGTT CGAATGATCC AGAATTCTCC TGATGACATG
    GAATTAATAA TTTCTCAGCC AAAAGGTGTT TGTGGGACCA TCTACAGTGA AGAAAAGAAT
    AGTACAGCAA GTTCTGGCAT GTTCTGTACG GACATCCTGA GCGACAGGTG CCAGGGAAGA
    CAGTCAGCAC ACACACATGA CCAGGACAGA AATGCTGGTA GCATGGGTGC TGGCTCTTGT
    CCTCCATCCC CTCTACAAAC CGACTCTGGT GAAATCTACT TCGTGGAGCT GGTGAAAGAA
    GATGGAACCC TTGGATTCAG CGTGACTGGT GGCATTAATA CAAGTGTGCC TCATGGAGGA
    ATCTATGTGA AATCTATCAT TCCTGGAGGC CCAGCTGCCA AGGAAGGACA GATCCGACAG
    GGAGATCGAC TACTGCAGGT GGATGGAGTG AGTCTATGTG GCCTTACTCA CAAGCAGGCT
    GTGCAGTGTC TCAAGGGTCC TGGGCAGGTG GCACGGCTGG TCTTAGAGAG AAGAGGCCCC
    AGGGCTGCAC CACAATGTCC TTCTGCTGAT GACAAGATGG GAGATGTGCA CATGGCTGTT
    TCCCTGGTAA CAGCCAGGCC TGGCAGACCT GCGAGCAGTG TCTCAATAAC AGATGGTCCT
    AAGTTTGAAG TCAAACTGAA GAAGAACAGC AGCGGTTTGG GATTCAGCTT CGTGCAGATG
    GAGAGAGGAA ATTGCATCCA CATGAAGAGC GACCTTGTGA GGATTAAGAG GCTCTTTCCC
    GGGCAGCCAG CTGAAGAGCA CGGAGCCATT GCAGCTGGTG ACATTATCCT GGCCGTGAAT
    GGCAAGACCA TAGAAGGCCT CGCTTTCCAG GAAGTGCTCC ATTTATTGCG AGGGGCTCCA
    GAGGAAGTGA CGCTCCTCCT CTGCCGACCC CCTCCTGGGA TACTGCCTGA GATTGAGCCT
    GGATGGCAGA CCCCTGAACT ATCAGGAGAC CAAAGACTCA CCATGGCAAC CTGTGCTGGA
    TCAGAGCAGA GCCCCAGCCT GGATCAAGAA GACAACTGGA GGGACAGTAC CTCTCTGGAT
    GCAGAAGGTC TGAATCCAAG GCCAGAGTCT TTCTACAAGG CTGTTAGACA GGTGAAGGGG
    AACAGAGAAA AAGAAAGGCC TTGGGCCAAG TCCTTGATGC ATCCCATGGA GTCCCACCCT
    CATGTATGTA AACTCCACCC AGAACCAGAG ACACCAGCAC TGGCCACCTC TTTGGAAAAG
    GATATGAGAC AAAACTGCTA TTCCGTGTGT GATATCAGGA GACTGGGAAG ATTTTCCTTC
    TCATCTTCTC TAACAAGATT AGCAACAGAC ATTTTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021059514.1
    CDS1..3819
    Translation

    Target ORF information:

    RefSeq Version XM_021203855.1
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari FERM and PDZ domain containing 2 (Frmpd2), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021203855.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    ATGAGTGTGG CCTCCGTGAC ACTTGCTAGT GCCCTGCAGG TCAGAGGTGA AGCCCTGTCT 
    GAGGAGGAAA TCTGGTCCCT CTTGTCACTG GCTGCTGAGC GGCTCCTGGA AGACCTACGT
    AATGATTCCT CAGACTATGT GGTCTGCCCC TGGTCGCTCC TGCTGTCTGC AGCCGGAGAT
    CTTTCTTTCC AAGACCACGT TTCTCACATA GAGGCTACAC CATTCAAAGC TCCTGAACTG
    CTACAGGGAT CAAATGAAGA GGGGCAGCCT GATGCAGCCC AGGCGCACGT CTACTCCTTA
    GGGATGACTC TCTACTGGTC AGCGGGATTT CGTGTTCCAC CAAACCAGCC CCTGCAGCTT
    CAAGAGCCCG TACACTCCCT CCTGCTGGCC ATGTGTGAAG ACCAGCCACG GAGAAGAAAG
    CCACTACAGG CAGTTCTAGA AGCCTGCCGG ATCCATCAGG AAGAGGTGGC TGTGTACCCA
    GCCCCTGCCG GTCTCCATAT CAGTCGACTG GTGGGCTTGG TGCTGGGCAC CATCTCCGAG
    GTGGAGCGGA GAGCTGTAGA GGAAAATGCC TGTGAGCAGC AGAACAGAAG CTGCTTTCTC
    AGGAGCAGGC TGCATCAGGC TGTCAGCGAG AGCCCCAGAG CGCCAGCCGC TGATGCTCTG
    CAGCCTCGGA GAGTTTCAGA GAGAAGCACA GAGACACAGA GTTCCTTGGA GCGATGCTGG
    AGTACCACAG CGCACAGTCG CAACAGCTTT GTTAACAGCA CATTTACAGG TGCTGGTCCC
    TGTGACTGTG AGGAGAGTCC ACGGTGTGGC TCGGAGCCTA TGCTCTTGGC AGAAGCAGAA
    AACTCGCAGC CAGCAACATC TTCTCCAAGG AATTTCCTGC AAAGAAAGGG AAAGTTCTCC
    AGACCAGAGT TCATCCTGTT GGCTGGAGAG GCCCCAGTGA CCCTACATTT ACCTGGATCC
    ATTGTGACCA AAAAGGGGAA ATCCTTCTTG GCTCTCAGAG ACCTCTGTGT GGTCTTGCTG
    AACGGACAGT GTCTGGAGGT GAAGTGTGAC ATGGAGTCCA CAGCAGGAGC TGTCTTCAAT
    GCTGTCATGT CCTTTGCCAA TCTTGGGGAG ACCACCTACT TTGGCTTGGC TTATGTGAAA
    GGTGAAGAGT TCTTTTTTCT GGACAAGGAC ACTAGATTGT GCAAAGTCGC CCCAGAAGGC
    TGGAGAGAGC AGCACCCGAA AGGTTCCGTG GACACTTTAA CACTCTTTCT GCGGATAAGG
    TTCTTTGTCA GTCACTACGG GCTGCTCCGG CACAGCCTGA CAAGGCATCA GTTTTACCTG
    CAGCTTCGGA AAGACATTTT AGAAGAGAAA CTGTATTGCA ATGATGAGAC ACTGCTGCAA
    CTGGGGGTCC TTGCCCTGCA GGCTGAGTTC GGGAGCTATC CTAAGGAGCA GGTGGAGGGC
    AAAGCATACT TCCGAATTCA AGATTACATC CCGGCAAGGC TTATTGAGAG GATGACAGCG
    ATCCGGGTCC AAGTAGAAGT CTCAGAAATG CACCGGCTCA GTTCTGCGCC GTGGGGAGAG
    GATGCTGAGC TGGAGTTCTT GGAGATTGTT CAGCAACTCC CAGAATATGG AGTCCTGGTT
    CACCGTGTTT CCCCAGAGAA GAAGAGACCA GAAGGGAAAA TGGCTTTGGG GGTCTGCACC
    AAGGGCATCA TCATCTATGA AGTCAGAGGC AGTTGCAGAA TTGCAACATC CCAGTTTCCA
    TGGAGAGAAA CTGGGATGAT TTCAACTCAT AGAAAAAAGC TCACCATCAC CAGCAGCACC
    ACTGGGAAGA AGTACACCTT TGTCACCGAT TCAGCCAAGA CCTGTAGATA CTTGCTGGGC
    CTCTGCTCTT CCCAGCACTG GTTTAATGCA CAGACGGGCT CTAAGCGTCC TTCCCATCTT
    TTTACTGGTC AGGATACGTT TGCACAAATA GCCAGCTTGA GTTCTGCACA CCAGACACAA
    GCCAATCCTA TCACTTGGAT TCAGAAACTG TCCTGCTCAG AAAATGAGTT GTGTGTACCC
    AAGTTGCAAG ATGCCACAGG AGGCAAACTG GGCCCATCCA TGGAGAACAA GCAAGGTAGC
    AAGGAGCCCG GGATGGAGAG AATTGGAAGC AGCCCATACA CTGGTGGAGA GCAGCTGCAC
    AGCATCGGTT TGAACCAGAA GCCAGCTCAT ACTCTCTTCG GAACAGCTGG TCGCAGCATG
    TGTGCAGGGT CACAGAACAG CAAGAGGAAG GGCTTTACGG GAGAACCCAA CCAAGATATC
    GTGTGTGTGA TGCTGAAGCG GGATCCAGTT CATGGCTTTG GTTTTGTCAT TAACGAGGGA
    GAAGATGCAG AGCAAACAAG GCCCGGCATT TTCATATCTT CCCTTATACC TGGGGGACCG
    GCAGAAAGAG CTAAAAAGAT CAAACCAGGA GGAAAGATAC TAGCCTTGAA TCACATCAGC
    CTGGAGGGCT TCACATTCAG CATGGCTGTT CGAATGATCC AGAATTCTCC TGATGACATG
    GAATTAATAA TTTCTCAGCC AAAAGGTGTT TGTGGGACCA TCTACAGTGA AGAAAAGAAT
    AGTACAGCAA GTTCTGGCAT GTTCTGTACG GACATCCTGA GCGACAGGTG CCAGGGAAGA
    CAGTCAGCAC ACACACATGA CCAGGACAGA AATGCTGGTA GCATGGGTGC TGGCTCTTGT
    CCTCCATCCC CTCTACAAAC CGACTCTGGT GAAATCTACT TCGTGGAGCT GGTGAAAGAA
    GATGGAACCC TTGGATTCAG CGTGACTGGT GGCATTAATA CAAGTGTGCC TCATGGAGGA
    ATCTATGTGA AATCTATCAT TCCTGGAGGC CCAGCTGCCA AGGAAGGACA GATCCGACAG
    GGAGATCGAC TACTGCAGGT GGATGGAGTG AGTCTATGTG GCCTTACTCA CAAGCAGGCT
    GTGCAGTGTC TCAAGGGTCC TGGGCAGGTG GCACGGCTGG TCTTAGAGAG AAGAGGCCCC
    AGGGCTGCAC CACAATGTCC TTCTGCTGAT GACAAGATGG GAGATGTGCA CATGGCTGTT
    TCCCTGGTAA CAGCCAGGCC TGGCAGACCT GCGAGCAGTG TCTCAATAAC AGATGGTCCT
    AAGTTTGAAG TCAAACTGAA GAAGAACAGC AGCGGTTTGG GATTCAGCTT CGTGCAGATG
    GAGAGAGGAA ATTGCATCCA CATGAAGAGC GACCTTGTGA GGATTAAGAG GCTCTTTCCC
    GGGCAGCCAG CTGAAGAGCA CGGAGCCATT GCAGCTGGTG ACATTATCCT GGCCGTGAAT
    GGCAAGACCA TAGAAGGCCT CGCTTTCCAG GAAGTGCTCC ATTTATTGCG AGGGGCTCCA
    GAGGAAGTGA CGCTCCTCCT CTGCCGACCC CCTCCTGGGA TACTGCCTGA GATTGAGCCT
    GGATGGCAGA CCCCTGAACT ATCAGGAGAC CAAAGACTCA CCATGGCAAC CTGTGCTGGA
    TCAGAGCAGA GCCCCAGCCT GGATCAAGAA GACAACTGGA GGGACAGTAC CTCTCTGGAT
    GCAGAAGGTC TGAATCCAAG GCCAGAGTCT TTCTACAAGG CTGTTAGACA GGTGAAGGGG
    AACAGAGAAA AAGAAAGGCC TTGGGCCAAG TCCTTGATGC ATCCCATGGA GTCCCACCCT
    CATGTATGTA AACTCCACCC AGAACCAGAG ACACCAGCAC TGGCCACCTC TTTGGAAAAG
    GATATGAGAC AAAACTGCTA TTCCGTGTGT GATATCAGGA GACTGGGAAG ATTTTCCTTC
    TCATCTTCTC TAACAAGATT AGCAACAGAC ATTTTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.