PTPN13 (NM_080685) Human Untagged Clone

CAT#: SC309080

PTPN13 (untagged)-Human protein tyrosine phosphatase, non-receptor type 13 (APO-1/CD95 (Fas)-associated phosphatase) (PTPN13), transcript variant 4


  "NM_080685" in other vectors (2)

Reconstitution Protocol

USD 5,040.00

10 Weeks*

Size
    • 10 ug

Product Images

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Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Symbol PTPN13
Synonyms FAP-1; hPTP1E; PNP1; PTP-BAS; PTP-BL; PTP1E; PTPL1; PTPLE
Vector pCMV6 series
Sequence Data
>NCBI ORF sequence for NM_080685, the custom clone sequence may differ by one or more nucleotides
ATGCACGTGTCACTAGCTGAGGCCCTGGAGGTTCGGGGTGGACCACTTCAGGAGGAAGAA
ATATGGGCTGTATTAAATCAAAGTGCTGAAAGTCTCCAAGAATTATTCAGAAAAGTAAGC
CTAGCTGATCCTGCTGCCCTTGGCTTCATCATTTCTCCATGGTCTCTGCTGTTGCTGCCA
TCTGGTAGTGTGTCATTTACAGATGAAAATATTTCCAATCAGGATCTTCGAGCATTCACT
GCACCAGAGGTTCTTCAAAATCAGTCACTAACTTCTCTCTCAGATGTTGAAAAGATCCAC
ATTTATTCTCTTGGAATGACACTGTATTGGGGGGCTGATTATGAAGTGCCTCAGAGCCAA
CCTATTAAGCTTGGAGATCATCTCAACAGCATACTGCTTGGAATGTGTGAGGATGTTATT
TACGCTCGAGTTTCTGTTCGGACTGTGCTGGATGCTTGCAGTGCCCACATTAGGAATAGC
AATTGTGCACCCTCATTTTCCTACGTGAAACACTTGGTAAAACTGGTTCTGGGAAATCTT
TCTGGGACAGATCAGCTTTCCTGTAACAGTGAACAAAAGCCTGATCGAAGCCAGGCTATT
CGAGATCGATTGCGAGGAAAAGGATTACCAACAGGAAGAAGCTCTACTTCTGATGTACTA
GACATACAAAAGCCTCCACTCTCTCATCAGACCTTTCTTAACAAAGGGCTTAGTAAATCT
ATGGGATTTCTGTCCATCAAAGATACACAAGATGAGAATTATTTCAAGGACATTTTATCA
GATAATTCTGGACGTGAAGATTCTGAAAATACATTCTCCCCTTACCAGTTCAAAACTAGT
GGCCCAGAAAAAAAACCCATCCCTGGCATTGATGTGCTTTCTAAGAAGAAGATCTGGGCT
TCATCCATGGACTTGCTTTGTACAGCTGACAGAGACTTCTCTTCAGGAGAGACTGCCACA
TATCGTCGTTGTCACCCTGAGGCAGTAACAGTGCGGACTTCAACTACTCCTAGAAAAAAG
GAGGCAAGATACTCAGATGGAAGTATAGCCTTGGATATCTTTGGCCCTCAGAAAATGGAT
CCAATATATCACACTCGAGAATTGCCCACCTCCTCAGCAATATCAAGTGCTTTGGACCGA
ATCCGAGAGAGACAAAAGAAACTTCAGGTTCTGAGGGAAGCCATGAATGTAGAAGAACCA
GTTCGAAGATACAAAACTTATCATGGTGATGTCTTTAGTACCTCCAGTGAAAGTCCATCT
ATTATTTCCTCTGAATCAGATTTCAGACAAGTGAGAAGAAGTGAAGCCTCAAAGAGGTTT
GAATCCAGCAGTGGTCTCCCAGGGGTAGATGAAACCTTAAGTCAAGGCCAGTCACAGAGA
CCGAGCAGACAATATGAAACACCCTTTGAAGGCAACTTAATTAATCAAGAGATCATGCTA
AAACGGCAAGAGGAAGAACTGATGCAGCTACAAGCCAAAATGGCCCTTAGACAGTCTCGG
TTGAGCCTATATCCAGGAGACACAATCAAAGCGTCCATGCTTGACATCACCAGGGATCCG
TTAAGAGAAATTGCCCTAGAAACAGCCATGACTCAAAGAAAACTGAGGAATTTCTTTGGC
CCTGAGTTTGTGAAAATGACAATTGAACCATTTATATCTTTGGATTTGCCACGGTCTATT
CTTACTAAGAAAGGGAAGAATGAGGATAACCGAAGGAAAGTAAACATAATGCTTCTGAAC
GGGCAAAGACTGGAACTGACCTGTGATACCAAAACTATATGTAAAGATGTGTTTGATATG
GTTGTGGCACATATTGGCTTAGTAGAGCATCATTTGTTTGCTTTAGCTACCCTCAAAGAT
AATGAATATTTCTTTGTTGATCCTGACTTAAAATTAACCAAAGTGGCCCCAGAGGGATGG
AAAGAAGAACCAAAGAAAAAGACCAAAGCCACTGTTAATTTTACTTTGTTTTTCAGAATT
AAATTTTTTATGGATGATGTTAGTCTAATACAACATACTCTGACGTGTCATCAGTATTAC
CTTCAGCTTCGAAAAGATATTTTGGAGGAAAGGATGCACTGTGATGATGAGACTTCCTTA
TTGCTGGCATCCTTGGCTCTCCAGGCTGAGTATGGAGATTATCAACCAGAGGTTCATGGT
GTGTCTTACTTTAGAATGGAGCACTATTTGCCCGCCAGAGTGATGGAGAAACTTGATTTA
TCCTATATCAAAGAAGAGTTACCCAAATTGCATAATACCTATGTGGGAGCTTCTGAAAAA
GAGACAGAGTTAGAATTTTTAAAGGTCTGCCAAAGACTGACAGAATATGGAGTTCATTTT
CACCGAGTGCACCCTGAGAAGAAGTCACAAACAGGAATATTGCTTGGAGTCTGTTCTAAA
GGTGTCCTTGTGTTTGAAGTTCACAATGGAGTGCGCACATTGGTCCTTCGCTTTCCATGG
AGGGAAACCAAGAAAATATCTTTTTCTAAAAAGAAAATCACATTGCAAAATACATCAGAT
GGAATAAAACATGGCTTCCAGACAGACAACAGTAAGATATGCCAGTACCTGCTGCACCTC
TGCTCTTACCAGCATAAGTTCCAGCTACAGATGAGAGCAAGACAGAGCAACCAAGATGCC
CAAGATATTGAGAGAGCTTCGTTTAGGAGCCTGAATCTCCAAGCAGAGTCTGTTAGAGGA
TTTAATATGGGACGAGCAATCAGCACTGGCAGTCTGGCCAGCAGCACCCTCAACAAACTT
GCTGTTCGACCTTTATCAGTTCAAGCTGAGATTCTGAAGAGGCTATCCTGCTCAGAGCTG
TCGCTTTACCAGCCATTGCAAAACAGTTCAAAAGAGAAGAATGACAAAGCTTCATGGGAG
GAAAAGCCTAGAGAGATGAGTAAATCATACCATGATCTCAGTCAGGCCTCTCTCTATCCA
CATCGGAAAAATGTCATTGTTAACATGGAACCCCCACCACAAACCGTTGCAGAGTTGGTG
GGAAAACCTTCTCACCAGATGTCAAGATCTGATGCAGAATCTTTGGCAGGAGTGACAAAA
CTTAATAATTCAAAGTCTGTTGCGAGTTTAAATAGAAGTCCTGAAAGGAGGAAACATGAA
TCAGACTCCTCATCCATTGAAGACCCTGGGCAAGCATATGTTCTAGGAATGACTATGCAT
AGTTCTGGAAACTCTTCATCCCAAGTACCCTTAAAAGAAAATGATGTGCTACACAAAAGA
TGGAGCATAGTATCTTCACCAGAAAGGGAGATCACCTTAGTGAACCTGAAAAAAGATGCA
AAGTATGGCTTGGGATTTCAAATTATTGGTGGGGAGAAGATGGGAAGACTGGACCTAGGC
ATATTTATCAGTTCAGTTGCCCCTGGAGGACCAGCTGACTTGGATGGATGCTTGAAGCCA
GGAGACCGTTTGATATCTGTGAATAGTGTGAGTCTGGAGGGAGTCAGCCACCATGCTGCA
ATTGAAATTTTGCAAAATGCACCTGAAGATGTGACACTTGTTATCTCTCAGCCAAAAGAA
AAGATATCCAAAGTGCCTTCTACTCCTGTGCATCTCACCAATGAGATGAAAAACTACATG
AAGAAATCTTCCTACATGCAAGACAGTGCTATAGATTCTTCTTCCAAGGATCACCACTGG
TCACGTGGTACCCTGAGGCACATCTCGGAGAACTCCTTTGGGCCATCTGGGGGCCTGCGG
GAAGGAAGCCTGAGTTCTCAAGATTCCAGGACTGAGAGTGCCAGCTTGTCTCAAAGCCAG
GTCAATGGTTTCTTTGCCAGCCATTTAGGTGACCAAACCTGGCAGGAATCACAGCATGGC
AGCCCTTCCCCATCTGTAATATCCAAAGCCACCGAGAAAGAGACTTTCACTGATAGTAAC
CAAAGCAAAACTAAAAAGCCAGGCATTTCTGATGTAACTGATTACTCAGACCGTGGAGAT
TCAGACATGGATGAAGCCACTTACTCCAGCAGTCAGGATCATCAAACACCAAAACAGGAA
TCTTCCTCTTCAGTGAATACATCCAACAAGATGAATTTTAAAACTTTTTCTTCATCACCT
CCTAAGCCTGGAGATATCTTTGAGGTTGAACTGGCTAAAAATGATAACAGCTTGGGGATA
AGTGTCACGGTACTGTTTGACAAGGGAGGTGTGAATACGAGTGTCAGACATGGTGGCATT
TATGTGAAAGCTGTTATTCCCCAGGGAGCAGCAGAGTCTGATGGTAGAATTCACAAAGGT
GATCGCGTCCTAGCTGTCAATGGAGTTAGTCTAGAAGGAGCCACCCATAAGCAAGCTGTG
GAAACACTGAGAAATACAGGACAGGTGGTTCATCTGTTATTAGAAAAGGGACAATCTCCA
ACATCTAAAGAACATGTCCCGGTAACCCCACAGTGTACCCTTTCAGATCAGAATGCCCAA
GGTCAAGGCCCAGAAAAAGTGAAGAAAACAACTCAGGTCAAAGACTACAGCTTTGTCACT
GAAGAAAATACATTTGAGGTAAAATTATTTAAAAATAGCTCAGGTCTAGGATTCAGTTTT
TCTCGAGAAGATAATCTTATACCGGAGCAAATTAATGCCAGCATAGTAAGGGTTAAAAAG
CTCTTTCCTGGACAGCCAGCAGCAGAAAGTGGAAAAATTGATGTAGGAGATGTTATCTTG
AAAGTGAATGGAGCCTCTTTGAAAGGACTATCTCAGCAGGAAGTCATATCTGCTCTCAGG
GGAACTGCTCCAGAAGTATTCTTGCTTCTCTGCAGACCTCCACCTGGTGTGCTACCGGAA
ATTGATACTGCGCTTTTGACCCCACTTCAGTCTCCAGCACAAGTACTTCCAAACAGCAGT
AAAGACTCTTCTCAGCCATCATGTGTGGAGCAAAGCACCAGCTCAGATGAAAATGAAATG
TCAGACAAAAGCAAAAAACAGTGCAAGTCCCCATCCAGAAGAGACAGTTACAGTGACAGC
AGTGGGAGTGGAGAAGATGACTTAGTGACAGCTCCAGCAAACATATCAAATTCGACCTGG
AGTTCAGCTTTGCATCAGACTCTAAGCAACATGGTATCACAGGCACAGAGTCATCATGAA
GCACCCAAGAGTCAAGAAGATACCATTTGTACCATGTTTTACTATCCTCAGAAAATTCCC
AATAAACCAGAGTTTGAGGACAGTAATCCTTCCCCTCTACCACCGGATATGGCTCCTGGG
CAGAGTTATCAACCCCAATCAGAATCTGCTTCCTCTAGTTCGATGGATAAGTATCATATA
CATCACATTTCTGAACCAACTAGACAAGAAAACTGGACACCTTTGAAAAATGACTTGGAA
AATCACCTTGAAGACTTTGAACTGGAAGTAGAACTCCTCATTACCCTAATTAAATCAGAA
AAAGGAAGCCTGGGTTTTACAGTAACCAAAGGCAATCAGAGAATTGGTTGTTATGTTCAT
GATGTCATACAGGATCCAGCCAAAAGTGATGGAAGGCTAAAACCTGGGGACCGGCTCATA
AAGGTTAATGATACAGATGTTACTAATATGACTCATACAGATGCAGTTAATCTGCTCCGG
GCTGCATCCAAAACAGTCAGATTAGTTATTGGACGAGTTCTAGAATTACCCAGAATACCA
ATGTTGCCTCATTTGCTACCGGACATAACACTAACGTGCAACAAAGAGGAGTTGGGTTTT
TCCTTATGTGGAGGTCATGACAGCCTTTATCAAGTGGTATATATTAGTGATATTAATCCA
AGGTCCGTCGCAGCCATTGAGGGTAATCTCCAGCTATTAGATGTCATCCATTATGTGAAC
GGAGTCAGCACACAAGGAATGACCTTGGAGGAAGTTAACAGAGCATTAGACATGTCACTT
CCTTCATTGGTATTGAAAGCAACAAGAAATGATCTTCCAGTGGTCCCCAGCTCAAAGAGG
TCTGCTGTTTCAGCTCCAAAGTCAACCAAAGGCAATGGTTCCTACAGTGTGGGGTCTTGC
AGCCAGCCTGCCCTCACTCCTAATGATTCATTCTCCACGGTTGCTGGGGAAGAAATAAAT
GAAATATCGTACCCCAAAGGAAAATGTTCTACTTATCAGATAAAGGGATCACCAAACTTG
ACTCTGCCCAAAGAATCTTATATACAAGAAGATGACATTTATGATGATTCCCAAGAAGCT
GAAGTTATCCAGTCTCTGCTGGATGTTGTGGATGAGGAAGCCCAGAATCTTTTAAACGAA
AATAATGCAGCAGGATACTCCTGTGGTCCAGGTACATTAAAGATGAATGGGAAGTTATCA
GAAGAGAGAACAGAAGATACAGACTGCGATGGTTCACCTTTACCTGAGTATTTTACTGAG
GCCACCAAAATGAATGGCTGTGAAGAATATTGTGAAGAAAAAGTAAAAAGTGAAAGCTTA
ATTCAGAAGCCACAAGAAAAGAAGACTGATGATGATGAAATAACATGGGGAAATGATGAG
TTGCCAATAGAGAGAACAAACCATGAAGATTCTGATAAAGATCATTCCTTTCTGACAAAC
GATGAGCTCGCTGTACTCCCTGTCGTCAAAGTGCTTCCCTCTGGTAAATACACGGGTGCC
AACTTAAAATCAGTCATTCGAGTCCTGCGGGGTTTGCTAGATCAAGGAATTCCTTCTAAG
GAGCTGGAGAATCTTCAAGAATTAAAACCTTTGGATCAGTGTCTAATTGGGCAAACTAAG
GAAAACAGAAGGAAGAACAGATATAAAAATATACTTCCCTATGATGCTACAAGAGTGCCT
CTTGGAGATGAAGGTGGCTATATCAATGCCAGCTTCATTAAGATACCAGTTGGGAAAGAA
GAGTTCGTTTACATTGCCTGCCAAGGACCACTGCCTACAACTGTTGGAGACTTCTGGCAG
ATGATTTGGGAGCAAAAATCCACAGTGATAGCCATGATGACTCAAGAAGTAGAAGGAGAA
AAAATCAAATGCCAGCGCTATTGGCCCAACATCCTAGGCAAAACAACAATGGTCAGCAAC
AGACTTCGACTGGCTCTTGTGAGAATGCAGCAGCTGAAGGGCTTTGTGGTGAGGGCAATG
ACCCTTGAAGATATTCAGACCAGAGAGGTGCGCCATATTTCTCATCTGAATTTCACTGCC
TGGCCAGACCATGATACACCTTCTCAACCAGATGATCTGCTTACTTTTATCTCCTACATG
AGACACATCCACAGATCAGGCCCAATCATTACGCACTGCAGTGCTGGCATTGGACGTTCA
GGGACCCTGATTTGCATAGATGTGGTTCTGGGATTAATCAGTCAGGATCTTGATTTTGAC
ATCTCTGATTTGGTGCGCTGCATGAGACTACAAAGACACGGAATGGTTCAGACAGAGGAT
CAATATATTTTCTGCTATCAAGTCATCCTTTATGTCCTGACACGTCTTCAAGCAGAAGAA
GAGCAAAAACAGCAGCCTCAGCTTCTGAAGTGA
Restriction Sites Please inquire     
ACCN NM_080685
OTI Disclaimer Due to the inherent nature of this plasmid, standard methods to replicate additional amounts of DNA in E. coli are highly likely to result in mutations and/or rearrangements. Therefore, OriGene does not guarantee the capability to replicate this plasmid DNA. Additional amounts of DNA can be purchased from OriGene with batch-specific, full-sequence verification at a reduced cost. Please contact our customer care team at custsupport@origene.com or by calling 301.340.3188 option 3 for pricing and delivery.

The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info
OTI Annotation This TrueClone is provided through our Custom Cloning Process that includes sub-cloning into OriGene's pCMV6 vector and full sequencing to provide a non-variant match to the expected reference without frameshifts, and is delivered as lyophilized plasmid DNA.
Product Components The cDNA clone is shipped in a 2-D bar-coded Matrix tube as dried plasmid DNA. The package also includes 100 pmols of both the corresponding 5' and 3' vector primers in separate vials. Every lot of primer is tested to provide clean sequencing of OriGene TrueClones.
Reconstitution 1. Centrifuge at 5,000xg for 5min.
2. Carefully open the tube and add 100ul of sterile water to dissolve the DNA.
3. Close the tube and incubate for 10 minutes at room temperature.
4. Briefly vortex the tube and then do a quick spin (less than 5000xg) to concentrate the liquid at the bottom.
5. Store the suspended plasmid at -20°C. The DNA is stable for at least one year from date of shipping when stored at -20°C.
Reference Data
RefSeq NM_080685.1, NP_542416.1
RefSeq Size 8133 bp
RefSeq ORF 7473 bp
Locus ID 5783
Cytogenetics 4q21.3
Protein Families Druggable Genome, Phosphatase
Gene Summary 'The protein encoded by this gene is a member of the protein tyrosine phosphatase (PTP) family. PTPs are signaling molecules that regulate a variety of cellular processes including cell growth, differentiation, mitotic cycle, and oncogenic transformation. This PTP is a large intracellular protein. It has a catalytic PTP domain at its C-terminus and two major structural domains: a region with five PDZ domains and a FERM domain that binds to plasma membrane and cytoskeletal elements. This PTP was found to interact with, and dephosphorylate, Fas receptor and IkappaBalpha through the PDZ domains. This suggests it has a role in Fas mediated programmed cell death. This PTP was also shown to interact with GTPase-activating protein, and thus may function as a regulator of Rho signaling pathways. Four alternatively spliced transcript variants, which encode distinct proteins, have been reported. [provided by RefSeq, Oct 2008]'
Transcript Variant: This variant (4) encodes the longest isoform (4).

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