Ptprs (NM_011218) Mouse Untagged Clone
CAT#: MC225026
Ptprs (untagged) - Mouse protein tyrosine phosphatase, receptor type, S (Ptprs), (10ug)
"NM_011218" in other vectors (2)
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Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Symbol | Ptprs |
Synonyms | AL022616; PTP; PTP-NU3; PTPNU-3; PTPsigma; Ptpt9; R-PTP-S; RPTPsigma |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>MC225026 representing NM_011218
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGGCGCCCACCTGGAGTCCCAGCGTGGTGTCTGTGGTGGGTCCTGTGGGGCTCTTCCTCGTACTGCTGG CCAGAGGATGCTTGGCTGAAGAACCACCCAGGTTTATCAGAGAGCCCAAGGATCAGATTGGAGTGTCGGG AGGCGTGGCCTCCTTCGTGTGCCAGGCCACGGGTGATCCTAAGCCACGGGTGACCTGGAACAAGAAGGGC AAGAAAGTGAACTCACAGCGCTTCGAGACCATTGACTTTGACGAGAGCTCTGGGGCGGTCCTGAGGATCC AGCCACTTCGGACGCCTCGGGATGAGAACGTGTACGAGTGTGTGGCCCAGAACTCGGTGGGCGAAATCAC AATTCATGCAAAGCTCACCGTCCTTCGAGAGGACCAGCTGCCTCCTGGCTTCCCCAACATTGACATGGGC CCCCAGTTGAAGGTTGTAGAGCGCACACGCACAGCCACCATGCTCTGTGCTGCCAGCGGGAACCCGGACC CTGAGATCACCTGGTTTAAGGACTTCCTGCCTGTGGACCCCAGTGCCAGCAACGGGCGGATCAAGCAGCT TCGATCAGGTGCCCTGCAGATTGAGAGCAGCGAGGAGACAGACCAGGGCAAGTACGAGTGTGTGGCCACC AACAGCGCTGGGGTGCGCTACTCATCACCTGCCAACCTCTACGTGCGAGTCCGCCGTGTGGCCCCACGCT TCTCCATCCTGCCCATGAGCCACGAGATCATGCCCGGTGGGAATGTGAATATCACTTGTGTGGCCGTGGG CTCACCCATGCCCTACGTGAAATGGATGCAGGGGGCCGAGGACCTGACGCCTGAGGATGACATGCCCGTG GGTCGGAATGTTCTAGAACTCACGGATGTCAAGGACTCAGCTAACTACACTTGTGTGGCCATGTCCAGCC TGGGTGTGATCGAGGCCGTGGCCCAGATCACTGTAAAATCTCTCCCCAAAGCCCCTGGGACTCCTGTGGT GACGGAGAACACTGCCACCAGTATCACTGTCACATGGGACTCGGGCAACCCTGACCCCGTGTCCTACTAC GTAATTGAGTATAAGTCCAAAAGCCAGGATGGGCCGTATCAGATCAAAGAAGACATCACCACCACGCGCT ACAGCATCGGAGGCCTGAGCCCCAATTCTGAGTATGAGATCTGGGTGTCAGCTGTCAACTCCATTGGCCA GGGCCCTCCCAGTGAATCGGTGGTGACCCGCACAGGTGAGCAGGCACCAGCCAGCGCTCCCAGGAATGTT CAGGCCCGCATGCTCAGCGCCACCACCATGATCGTGCAGTGGGAGGAGCCTGTGGAGCCCAATGGCCTGA TCCGTGGCTACCGTGTCTACTATACCATGGAGCCGGAACACCCAGTGGGCAACTGGCAGAAACACAATGT GGACGACAGTCTCCTGACCACTGTGGGCAGCCTGCTGGAAGACGAGACCTACACCGTGCGCGTGCTCGCC TTCACGTCGGTGGGCGACGGACCACTGTCAGACCCCATCCAGGTCAAGACCCAGCAGGGAGTTCCTGGCC AGCCCATGAACTTGCGGGCTGAGGCCAAGTCAGAGACCAGCATTGGGCTCTCGTGGAGTGCACCACGACA GGAGAGTGTCATTAAGTATGAACTGCTCTTCCGGGAGGGCGACCGAGGCCGAGAGGTGGGGCGAACCTTC GACCCAACCACAGCCTTTGTGGTGGAGGACCTCAAGCCCAATACGGAGTATGCGTTCCGGCTGGCGGCGC GCTCGCCGCAGGGCCTGGGCGCCTTCACCGCGGTCGTGCGCCAGCGCACGCTGCAGGCCAAACCGTCAGC CCCCCCTCAAGACGTTAAGTGCACCAGCTTGCGCTCCACGGCCATATTGGTAAGTTGGCGCCCGCCACCG CCAGAAACTCACAACGGGGCCCTCGTGGGCTACAGCGTCCGCTACCGACCGCTGGGCTCAGAGGACCCGG ACCCCAAGGAGGTGAACAACATACCCCCGACCACCACTCAGATCCTTCTGGAAGCTTTGGAGAAATGGAC GGAGTACCGTGTCACCGCCGTGGCTTACACAGAGGTGGGACCAGGGCCCGAGAGCTCGCCCGTGGTCGTC CGCACCGATGAGGACGTGCCCAGCGCGCCCCCGCGGAAGGTGGAGGCGGAGGCGCTCAACGCCACAGCCA TCCGAGTGCTGTGGCGCTCGCCCACGCCCGGCCGGCAGCACGGGCAGATCCGCGGCTACCAGGTCCACTA TGTGCGCATGGAGGGTGCCGAGGCCCGCGGGCCACCGCGCATCAAGGACATCATGCTGGCGGATGCCCAG GAAATGGTGATAACGAACCTCCAGCCTGAGACTGCTTACTCTATCACAGTAGCCGCGTATACCATGAAAG GCGATGGCGCTCGCAGCAAACCGAAGGTGGTGGTGACCAAGGGAGCAGTGCTGGGCCGCCCCACCCTGTC GGTGCAGCAGACCCCCGAGGGCAGCCTGCTGGCGCGCTGGGAGCCCCCCGCGGACGCGGCCGAGGACCCG GTGCTTGGCTACCGCCTGCAGTTTGGGCGCGAAGACGCGGCCCCGGCCACGTTGGAGCTGGCTGCGTGGG AGCGGCGGTTCGCGGCGCCTGCACACAAGGGCGCCACCTATGTGTTCCGGCTGGCAGCGCGGGGCCGCGC GGGGTTGGGCGAGGAGGCCGCGGCAGCGCTGAGCATCCCCGAGGACGCTCCGCGCGGCTTCCCGCAGATC TTGGGCGCCGCGGGCAACGTGTCCGCGGGCTCCGTGCTACTGCGCTGGCTGCCACCCGTGCCCGCCGAGC GCAACGGCGCCATCATCAAGTACACGGTGTCCGTGCGGGAGGCCGGCGCCCCTGGGCCCGCGACCGAGAC GGAGCTGGCGGCGGCCGCCCAGCCGGGGGCCGAGACAGCGCTCACGCTGCGAGGGCTGCGGCCGGAGACG GCCTACGAGTTACGCGTGCGCGCACACACGCGTCGCGGCCCGGGCCCCTTCTCACCCCCGCTGCGCTACA GGCTCGCGCGGGACCCAGTCTCCCCAAAGAACTTCAAGGTGAAGATGATCATGAAGACTTCAGTGCTGCT GAGCTGGGAGTTCCCCGACAACTATAACTCACCCACACCCTACAAGATTCAGTACAATGGGCTCACCCTG GATGTGGACGGCCGCACGACCAAGAAGCTGATCACACACCTCAAGCCACACACCTTCTATAATTTCGTGC TCACCAACCGTGGCAGCAGCCTGGGGGGCCTGCAGCAGACGGTCACTGCCAGGACCGCCTTTAACATGCT CAGTGGCAAGCCTAGCGTCGCCCCGAAGCCCGACAATGACGGTTTCATCGTGGTCTACCTGCCTGATGGC CAGAGTCCTGTGACCGTGCAGAACTACTTCATTGTGATGGTCCCACTTCGGAAGTCTCGAGGTGGCCAGT TCCCTGTCCTACTAGGTAGTCCAGAGGACATGGATCTGGAGGAGCTCATCCAGGACATCTCCCGGCTGCA GAGGCGCAGCCTGCGCCACTCCAGACAGCTGGAGGTGCCTCGGCCCTACATCGCCGCTCGATTCTCCATC CTGCCAGCTGTCTTCCATCCTGGGAACCAGAAGCAATATGGTGGCTTTGACAACAGGGGCTTGGAGCCAG GCCACCGCTATGTCCTCTTTGTGCTTGCTGTGTTGCAGAAGAATGAGCCTACATTTGCAGCCAGTCCCTT CTCAGACCCCTTCCAGCTGGACAACCCGGACCCTCAGCCCATTGTGGACGGCGAGGAGGGCCTCATCTGG GTGATTGGGCCTGTGCTGGCCGTGGTCTTCATCATCTGCATCGTGATTGCCATCCTGCTGTACAAGAACA AACCTGACAGCAAACGCAAGGACTCAGAGCCCCGCACCAAATGCTTACTGAACAATGCCGACCTTGCCCC CCATCACCCCAAGGACCCTGTGGAAATGCGACGCATCAACTTCCAGACACCAGGTATGCTCAGCCACCCA CCCATCCCCATCACAGACATGGCGGAGCACATGGAGAGACTCAAAGCCAACGACAGCCTGAAGCTCTCCC AGGAGTACGAGTCCATTGACCCCGGGCAGCAATTCACGTGGGAACATTCGAACCTGGAGGCCAACAAGCC CAAGAACCGCTATGCCAACGTCATCGCCTATGACCACTCACGAGTCATCCTGCAGCCCCTAGAAGGCATC ATGGGTAGTGATTACATCAATGCCAACTATGTGGACGGCTACCGGCGGCAGAATGCATACATTGCCACGC AGGGGCCCCTGCCTGAGACCTTTGGGGACTTCTGGCGGATGGTGTGGGAGCAGCGATCGGCCACTGTGGT CATGATGACGCGACTGGAGGAGAAATCACGGATCAAATGTGACCAATACTGGCCTAACCGAGGCACCGAG ACATACGGCTTCATCCAGGTCACCCTACTAGATACCATGGAGCTGGCTACCTTCTGCGTCAGGACTTTTT CTCTACACAAGAATGGCTCTAGCGAGAAGCGTGAGGTGCGACATTTCCAGTTCACGGCATGGCCCGACCA CGGGGTACCTGAGTACCCCACGCCCTTCCTGGCATTCCTGCGAAGAGTCAAGACCTGCAACCCGCCTGAT GCTGGCCCCATTGTGGTCCACTGCAGCGCGGGTGTGGGGCGCACTGGCTGCTTCATCGTAATTGACGCCA TGCTAGAGCGCATCAAGACAGAGAAGACCGTGGATGTGTATGGACATGTGACACTCATGCGGTCGCAGCG CAACTACATGGTGCAGACAGAGGATCAGTATGGCTTCATCCACGAGGCGCTGCTGGAGGCTGTGGGCTGC GGCAATACCGAGGTCCCTGCTCGCAGCCTCTACACCTACATCCAGAAGCTGGCCCAGGTGGAGCCTGGCG AGCACGTCACGGGCATGGAGCTTGAGTTCAAGAGGCTCGCCAGTTCCAAGGCACACACTTCGCGCTTCAT CACCGCCAGCCTGCCTTGCAACAAGTTTAAGAACCGACTGGTGAACATCCTGCCGTACGAGAGCTCGCGT GTCTGCCTGCAGCCCATCCGCGGTGTGGAGGGCTCTGACTACATCAATGCCAGCTTTATCGACGGCTATA GACAGCAGAAAGCCTACATTGCAACACAGGGGCCACTGGCAGAGACCACAGAGGACTTCTGGCGAGCTCT GTGGGAGAACAACTCTACTATTGTCGTAATGCTCACCAAGCTCCGAGAAATGGGCCGGGAAAAGTGCCAC CAGTACTGGCCAGCCGAGCGCTCTGCCCGCTACCAGTACTTTGTGGTTGACCCGATGGCAGAGTATAACA TGCCACAGTACATTCTGCGTGAGTTTAAGGTCACAGATGCCCGGGATGGCCAGTCCCGGACCGTCCGACA GTTCCAGTTCACGGACTGGCCAGAGCAGGGTGCACCCAAGTCAGGGGAAGGCTTCATTGACTTCATCGGC CAAGTGCATAAGACCAAGGAGCAGTTTGGCCAGGACGGACCCATCTCAGTGCACTGCAGCGCCGGAGTGG GCAGGACCGGAGTGTTCATCACCCTGAGCATCGTGCTTGAGCGGATGCGCTACGAGGGCGTGGTGGACAT TTTCCAGACAGTGAAGGTGCTTCGGACCCAGAGGCCTGCCATGGTGCAGACAGAGGACGAGTACCAGTTC TGCTTCCAGGCGGCTTTGGAATACCTGGGCAGTTTTGATCATTATGCAACATAA GCTAGCGGACCGACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATG ATATCCTGGATT |
Restriction Sites | SgfI-NheI |
ACCN | NM_011218 |
ORF Size | 5724 bp |
Insert Size | 5724 |
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_011218.2, NP_035348.2 |
RefSeq Size | 6874 |
RefSeq ORF | 5724 |
Locus ID | 19280 |
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