Ptpn13 (NM_001100789) Rat Untagged Clone

CAT#: RN217772

Ptpn13 (untagged) - Rat protein tyrosine phosphatase, non-receptor type 13 (Ptpn13)



  "NM_001100789" in other vectors (1)

CNY 23,660.00


货期*
9周

规格
    • 10 ug

Product images

经常一起买 (3)
TurboFectin Transfection Reagent (1 mL in 1 vial)
    • 1 ml in 1 vial

CNY 4,090.00


DH5α Chemically Competent Cells (≥10^8 cfu/μg of pUC19 DNA)
    • 5 x 200 ul

CNY 1,280.00


Forward sequencing primer VP1.5, Reverse sequencing primer XL39, 100pmoles each
    • 100 pmol

CNY 480.00

Specifications

Product Data
Type Rat Untagged Clone
Tag Tag Free
Synonyms ptp; Ptp-bl
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>RN217772 representing NM_001100789
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGCATGTGTCACTAGCAGAGGCCCTGGAGGTTCGGGGTGGACCTCTGCAGGAGGAGGAAATATGGGCTG
TATTAAATCAAAGTGCTGAGAGCCTGCAAGAAGTATTCAGAAGAGTGAGCATTGCTGACCCCGCTGCTCT
TGGCTTCATCATCTCTCCGTGGTCACTGCTGTTGCTGCCGTCTGGCAGTGTGTCCTTCACAGATGAAAAT
GTCTGCAGTCAGGACCTTCGAGCATTCACCGCACCCGAGGTTCTTCAGAGCCACTCGCTGACGTCTCTCT
CAGATGTAGAAAAGGTCCATATTTATTCTCTCGGAATGACATTGTATTGGGGGGCCGACCATGAAGTACC
TCAGAGCCAGCCCATCAAGCTGGGAGACCATCTCAACAGCATTCTGCTGGGCATGTGCGAGGATGTTCTT
TATGCTCGGGTGTCCGTCCGGACCGTGCTGGACGCCTGCAGCGCCCACATCAGGAACAGCAACTGTGCGC
CCTCCTTTTCCTATGTGAAGCAGTTGGTAAAGCTGGTTCTGGGAAATATTTCTGGGACGGATCCGCTTTC
CCATAGCAGTGAAGAAAAGCCTGACCGGAGCCAGGCCATCCGAGACCGACTGAGAGGAAAAGGATTACCC
ATAGGAAGAAGCTCCACTTCTGACGCACTAGACACACACAAGGCTCCACTCTCTCAGCAGACCTTTCTTA
ACAAAGGGCTTAGTAAATCTATGGGATTTCTGTCCGTCAGAGACACACAAGAGGAGGAAGATTATTCCAA
GGAAATTCCCTCCGATAATAATTCCAGGCATGAAGACTCTGAGCCTTTCTCCTCCCCTTACCAGTTCAAA
ACTAGTAGTCCACACATTGACGTACTCTCTAAGAAGAAGACCTGGGCTTCGTCCATGGACTTGCTCTGTG
CGGCCGACAGAGACCTTTCTGGAGAGATTGGAAGGTACCAACACTGTGACCCTGAGACAGGGACGGGACG
GACGTCGATCACTTCTAGGAAGAAAGAAGGACGGTACTCTGACGGAAGCATTGCCTTGGATGTCTTCGGC
CCTCAGAAAGCAGAGCCAGTGATCCACAGCCGAGAACTGCCGGCTTCCTCCGCTGTTTCGAGCGCTTTGG
ACCGAATTCGAGAGAGACAAAAGAAACTTCAGGTTCTGAGAGAAGCCATGAATGTAGAAGAGCCAGTCCG
AAGATACAAAACTTACCACAGCGATCTGTTCAGCACTTCCAGTGAAAGCCCGTCTATTATTTCCTCGGAC
TCAGACTTCAGGCAAGTGAGAAAAAGCGAAGCTTCCAAGAGGTTTGAATCCAGCAGTGGTCTTCCCGGAG
TAGATGACACTGTCCAGTCACGACCCAGTAGACAATATGAAACATCCCTCGAAGGCAGCTTGATCAACCA
GGAGATGATGCTAAGGCGACAAGAGGAAGAAATGATGCAGCTGCAAGCCAGGATGGCTCTCAGACAGTCA
CGGCTGAGCCTGTATCCCGGGGACACCATCAAAACTTCCATGCTTGATATCTCTAGAGATCCACTAAGGG
AAATGGCCCTGGAGACAGCCATGACCCAGAGAAAGCTAAGGAATTTCTTTGGCCCCGAGTTTGTGAAGAC
GACAGTTGAGCCATTTGCGTCTTTGGATTTGCCGCGCTCCATCCTCTTGCAGACCAAGAAGGGGAAGAGT
GAGGAGCAGAGGAAGAAAGTAAACATAATGCTTTTGAGTGGGCAGAGGCTCGAGCTCACCTGCGACACCA
AGACCGTCTGCAGAGACGTCTTCGACATGGTCGTGGCTCACATCGGCCTGGTGGAGCATCACTTGTTCGC
TCTCGCCACCCTCAAAGAGAATGAATATTTCTTTGTCGATCCCGACTTAAAATTAACAAAAGTGGCCCCG
GAGGGATGGAAAGAAGAACCGAAGAGAAAGGGCAAAGCCGCTGTTGATTTTACTTTGTTTTTCCGAATTA
AATTTTTCATGGATGATGTTAGTCTGATACAACACAGCCTAACCTGCCATCAGTATTACCTTCAGCTGAG
GAAAGACCTCCTGGAGGAGAGGATCCACTGCGACGATGAGGCATCCCTGCTCCTCGCCTCCTTGGCTCTC
CAGGCCGAGTATGGAGATTATCAACCAGAGGTTCACGGCTTGTCCTACTTTCGCCTGGAGCATTATCTGC
CCGCCAGAGTGATGGAGAAGCTTGACATGTCCTACATTAAGGAGGAGCTACCCAAACTGCACAACACCTA
TGCAGGCGCCTCTGAGAAGGAGACGGAGCTCGAGTTCTTAAAGGTCTGCCAAAGGCTGACAGAGTACGGA
GTTCATTTTCACCGGGTGCACCCTGAAAAGAAGTCACAGACAGGAATACTGCTGGGAGTCTGTTCCAAAG
GTGTGCTTGTGTTTGAGGTTCACAATGGAGTTCGCGCCTTGGTCCTTCGCTTCCCATGGAGGGAAACAAA
AAAGATTTCCTTTTCAAAAAAGAAAATCACGTTACAAAATACATCAGACGGAATCAAGCACGCATTCCAG
ACAGACAGCAGCAAGGCCTGCCAATACCTGCTGCAGCTGTGCTCCTCCCAGCATAAATTCCAGCTACAGA
TGAGGGCGAGACAGAGCAACCAGGATGCCCAAGACTTAGAGAGAGCTTCGTTTAGGAGCCTGAACCTGCA
AGCAGAATCTGTTAGAGGATTTAATGTGGGCCGCGCCATCAGCACTGGCAGTCTGGCCAGCAGCACCTTC
AACAAACTTGCCGTCCGACCCCTGTCAGTGCAAGCCGAGATTCTGAAGAGGCTGTCCTGCTCAGAGTGGT
CGCTTTACCAGCCACTGCAAAACAGTTCAAAAGAGAAGAATGACAAAGCGTCCTGGGAGGAAAAGCCTAG
AGGGATGAGCAAATCGTATCACGATCTCAGTCAGGCCTCTCTCTGTCCTCATCGGAAACAGGTCATTAAC
ATGGAGTCCCTACCACAAGCCTTTGCGGAGCTGGTGGGAAAACCATTGTACCCGATGGCAAGATCTGACA
CAGAGTCACTGGCAGGACTCCCCCAGCTTAATAATTCAAAGTCTGTTGCCAGTTTAAATAGAAGCCCCGA
AAGGAGGAGCCATGAATCAGACTCGTCCGTTGAAGACCCTGGCCAAGCATATGTTGTAGGAATGAGTTTG
CCTAGTTCTGGAAAGTCTTCATCCCAAGTACCCTTTAAAGACAATGATTCATTGCACAAAAGATGGAGCA
CTGTCTCTTCACCAGAAAGGGAGATCACACTGGTGAACCTGAAGAAAGACTTGAAGCATGGCTTAGGATT
TCAGATTGTCGGTGGGGGGAAAATGGGAAGGCTGGATCTAGGAGTGTTTATCAGCGCCGTTACCCCTGGA
GGGCCTGCTGACCTGGATGGATGCCTAAAGCCTGGAGACCGTTTGATATCTGTGAACAGTGTGAGTTTGG
AAGGAGTCAGTCACCATGCTGCAGTTGACATTTTGCAGAATGCACCTGAAGATGTGACACTTGTCATCTC
CCAGCCAAAAGAAAAACCAACCAAAGTGCCTTCTACTCCTGTTCACTTTGCCAATGGAATGAAAAACTAC
ACCAAGAAACCGTCCTCCATGCAGGACAGTGCTATGGACCCATCAGAGGACCAGCCCTGGCCACGGGGCC
CTCTGAGGCACGTCCCAGAGAGTCCCTTTGGTCTCTCCTCGGGCCTGCGGGAAGGAAGCCTCAGTTCCCA
AGATTCCAGGACTGAAAGTGCCAGCTTGTCCCAGAGCCACGTCAATGGCTTCTTTACCAGCCACTTAGGT
GACCGAGGCTGGCAGGAGCCACAGCACAGCAGCCCATCACCACCTGTAACCTCCAAGATCACCGAGAAGA
CCTTCTCTGACAGTTACCGTAGCCCGGCCAGGCGGCAAGGCACCTGTGATGTGACTGAGCTCCCTGGCTG
TGCCGACTCCGACATAGACGATCCCACTTACAGCAGCAGTCAAGACCGTCAGGCACCAAAACAGGAACCT
TCCTCCCCACTGAAAGCATCCGACAAAATGAGCTTTGCAGCCTTCCCTGGGCCATCCCCTGAGCCGGGAG
ACGCGTTTGAGGTCGAGCTGGCTAAAACCGATGGCAGCTTGGGGATAAGTGTCACGGGAGGTGTGAATAC
CAGCGTCCGGCATGGTGGTATCTATGTGAAAGCCGTTATTCCCAACGGAGCGGCAGAGACAGATGGCAGA
ATTCACAAAGGTGATCGAGTGCTTGCTGTGAACGGAGTCAGTCTGGAAGGAGCGACCCACAAGCAGGCTG
TGGAAACGTTGAGAAACACGGGGCAGGTGGTCCATCTGTTGTTAGAAAAGGGGCAGTCGCCAACATCTAG
AGAACGTGATCCTGCAAGCCCACGGTGTCCCACTCCAGACCAGGATGCCCAAAGTCAAGCCCCAGAAAAG
ATGGAGAAGCAAACAGCCCATGTCAAAGACTACAGCTTTGTTACTGAAGATAATACATTTGAGGTCAAAC
TGTTTAAAAATAGCTCGGGCCTTGGGTTCAGTTTCTCTCGAGAAGATAATCTTACACCAGAGCTAATAAA
TGGCAGCATAGTAAGGGTTAAAAAGCTTTTCCCTGGACAGCCAGCTGCAGAAAGTGGGAAAATCAATGTT
GGAGATGTTATACTGAAAGTTAACGGAGCCCCCTTGAAGGGACTGTCTCAGCAGGACGTCATATCTGCTC
TCAGGGGAACAGCTCCAGAAGTGTCCTTGCTCCTCTGCAGACCCGCACCTGGTGTGCTGCCAGAAGTCAA
TACTGCACTTTTGACCCCACTGCACTCCCCAGCACACGCATTCCTAAACAGCAGGAAAGAGCATTCCCAG
CCGTCACCCTTGTCGGTGGAGCAGTGCGCCAGCTCAGACGAGAACGGGTTGTCCGGCCAAAGCAAAAGAC
AGTGCAAGCCTCCGTCCCGGAGAGAGAGTTACAGCGACCACAGCGACAGTGGAGAGGAAGAGTCCGTGAG
AGCTGCAGCGAAAATGCCGAATGTGATCCCACTGTCAGCCTTTGCACCCGAAGCACTGAGAAGCCAGGGA
GAACCCGCAAGCACCATGTTTTACCTCCCTCGGAAAATCCCCGGCAAGCCGGAGTCAGAGAGCAGCCGTC
TTCCTCATCCACTGGACGTGAGCCCGGGACAGATCCGCCAGCCCCCGGCAGAGTGTGCTCCCTCTGACTC
CCCTGGGAAACACCTTACACATCTCGCTTCTCAGCTGCACAAAGAGGAAAACATGACAGCTTTGAAGAAT
GACTTGGGAAACCACCTTGAGGATTCTGAGCTGGAAGTAGAGCTTCTCATTACCCTGGTTAAATCGGAAA
AAGGAAGTCTGGGTTTCACAGTAACCAAAGGCAGTCAGAGTATTGGCTGTTATGTCCATGATGTCATACA
GGATCCAGCCAAAGGTGATGGAAGGCTAAGGCCTGGAGACCGGCTTGTAAAGGTTAACGACGCAGATGTT
ACAAACATGACCCACACCGATGCGGTAAATCTGCTGCGAGCTGCGCCCAAAACTGTCCGACTAGTTATAG
GGCGGATTCTAGAGTTACCCAGGATGCCCGTGTTTCCCCATTTGCTGCCTGACATCACAGTCACGTGCCA
CGGAGAGGAGTTGGGATTTTCTCTCTCCGGAGGCCGTGGCAGTCCCCACGGAGTGGTGTATATCAGTGAT
ATCAACCCGAGGTCAGCTGCAGCTGTGGACTGCAGTCTCCAGCTGTTAGACATCATCCATTATGTGAACG
GAGTCAGCACACATGGAATGACCTTGGAAGAAGCAAACAGGGCCTTGGACCTCTCCCTTCCTTCAGTGGT
GCTGAAAGTAACAAGAGACGGTTGTCCCGTGGTGCCTTGTTCAACGAGATCTGCCATTTCTGCTCTCAGG
CCCCTCGAAGCCAACGGTCTTAGCAGCATGGAGCCTTATGGACAGCCCGCACTCACGCCTAAGAAATCCT
TCTCCAAGGTTAACGGGGATGGAGCGAGTGGAGCCATGTGTCCTGGAGGAAAAGGCTTGTCCTCTCCGAG
GAAGAAATCAGCAGACCTGATGGAAGCCAGAGAATCTGACTCCCGGGATGATGATGTCTATGACGATCCT
CAAGAGGCTGAAGTCATCCAGTCCCTGCTGGATGTCGTGGATGAGGAAGCCCAGAACCTCCTAAACCAGA
CGAAGGCCTCCAGAAGAGCCTGTTCTCCAGATCCACTGAGGACAAATGGGGAGGCATCAGAAGACGGAGA
AGATACTGACTGTGATGGGTCTCCGTTACCTGAGGATGTCCCTGAGTCAGTGAACGGCGGGGGAGGAAAA
GCATGCTTTGCAAGCTTAATCCAGGCATCCCAAGAAGAGAAGCCCGTCAAAGAGGAAGCCACGCAGGAAA
GCAGAGAGTCGACAACGGAGACAACAGACCGTGAGGATTCCAGCAAAGATCCCCTCTTTTTGACGAATGA
GGAGCTGGCGGCCCTGCCAGTGGTCAGAGTCCCTCCCTCTGGCAAGTACACGGGCACACAGTTGCAGGCC
ACCATCCGCACGCTTCAAGGCCTGCTTGACCAAGGGATCCCCTCTAAGGAGCTCGAGAACCTTCAAGAAT
TAAAGCCTTTGGATCAGTGTCTGATTGGGCAGACTAAGGAAAACCGCAGGAAGAACAGATACAAAAATAT
CCTTCCCTATGACACCACAAGAGTGCCTCTTGGAGATGAAGGAGGATACATCAACGCCAGTTTCATCAGG
ATCCCGGTGGGGACGCAGGAATTCGTGTACATTGCTTGCCAGGGGCCTTTGCCCACCACCGTGGGGGATT
TCTGGCAGATGGTTTGGGAGCAGAACTCCACGGTGATAGCGATGATGACGCAGGAGGTGGAAGGAGAAAA
GATCAAATGCCAGCGGTACTGGCCAAGCATCCTCGGCACAACTACCATGGCCAACGAGAGGCTGCGCCTG
GCCCTCCTGAGAATGCAGCAGCTGAAGGGCTTCGTGGTGCGGGTGATGGCCCTGGAGGATATTCAGACAG
GGGAGGTGCGACATATTTCTCATCTGAATTTCACTGCCTGGCCAGACCACGATACGCCGTCACATCCAGA
GGACCTCCTCACGTTCATCTCCTACATGAGACATATCCGTAGGTCGGGCCCGGTCATCACACACTGTAGT
GCTGGCATTGGACGATCAGGAACCCTCATTTGCATAGACGTGGTCCTAGGGCTAATCAGCCAAGATCTCG
AATTCGACATCTCTGACCTGGTGCGCTGCATGAGACTACAGAGGCACGGCATGGTGCAGACCGAGGGTCA
GTATGTCTTTTGCTATCAAGTCGTCCTCTACGTCCTGACTCACCTCCAGGCGGAAGAACAGAAGGCACAG
CCAGGGCTCCCACAGTGA


ACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGA
TTACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-NotI     
ACCN NM_001100789
Insert Size 7368 bp
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).
OTI Annotation Clone contains native stop codon, and expresses the complete ORF without any c-terminal tag.
Product Components The ORF clone is ion-exchange column purified and shipped in a 2D barcoded Matrix tube containing 10ug of transfection-ready, dried plasmid DNA (reconstitute with 100 ul of water).
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.
Note Plasmids are not sterile.  For experiments where strict sterility is required, filtration with 0.22um filter is required.
Reference Data
RefSeq NM_001100789.1, NP_001094259.1
RefSeq Size 8258 bp
RefSeq ORF 7368 bp
Locus ID 498331
*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.

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