Tenm1 (NM_011855) Mouse Untagged Clone
CAT#: MC225398
Tenm1 (untagged) - Mouse odd Oz/ten-m homolog 1 (Drosophila) (Odz1), (10ug)
CNY 43800.00
货期*
12周
规格
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Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Synonyms | Odz1; Odz2; TCAP-1; ten-1; Ten-m1 |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>MC225398 representing NM_011855
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGGAGCAAACAGACTGCAAACCTTATCAGCCTCTGTCCAAAGTCAAGCATGAAATGGATCTAGCTTATA CCAGTTCTTCTGATGAGAGTGAAGATGGGAGAAAACCAAGACAGTCATTCAACTCCAGGGAAACTCTGCA TGAGTATAACCAAGAGCTGAGGAGGAATTACAATAGCCAGAGTAGAAAGAGGAAAGATGTGGAGAAATCT ACTCAAGAGATAGAATTCTGTGAAACACCTCCTACTTTGTGCTCCGGCTACCACACAGACATGCACAGTG TTTCTCGACATGGCTACCAGCTGGAGATGGGATCTGATGTAGATACAGAGACAGAAGGAGCTGCATCACC TGACCATGCACTCAGAATGTGGATAAGAGGCATGAAATCAGAACACAGTTCCTGTCTGTCCAGTAGGGCC AACTCTGCACTGTCCTTGACCGACACTGATCATGAACGGAAGTCTGATGGGGAAAATGGTTTTAAATTCT CTCCTGTTTGTTGTGACATGGAGGCTCCAGCTGATTCGGCTCAAGACATGCAAAGCAGCCCACACAACCA GTTCACCTTCAGACCCCTCCCACCACCGCCACCTCCTCCACATGCCTGCACCTGTGCCAGGAAGCCACCT CCTACAGTGGACTCTCTACAAAGAAGATCAATGACTACCCGCAGCCAGCCCAGCCCAGCTGCTCCTGCTC CTCCAACCAGCACACAGGATTCAGTTCATCTGCATAACAGCTGGGTCTTGAACAGTAACATACCACTGGA GACCAGGCATTTCCTGTTCAAACATGGATCTGGTTCTTCTGCTATCTTCAGTGCAGCCAGTCAGAACTAC CCTCTGACATCTAATACTGTCTACTCACCACCACCCAGGCCGCTGCCTCGAAGCACCTTTTCCCGACCTG CCTTCACTTTTAACAAACCATACAGATGCTGCAATTGGAAGTGCACAGCCTTGAGCGCCACTGCAATCAC AGTGACTTTGGCCTTGTTACTAGCCTATGTAATTGCAGTACACTTGTTTGGCCTGACGTGGCAGTTGCAA CCAGTTGGACAGATCTATGCGAATGGAATTAGCAATGGGAACCCAGGGACCGAGTCCATGGATACCACTT ACTCTCCCATTGGAGGAAGAGTTTCTGACAAATCAGAGAAAAAAGTGTTCCAGAAGGGACGAGCAATTGA CACTGGGGAAGTTGACATTGGAGCCCAGGTCATGCAGACCATTCCACCTGGCTTATTCTGGCGTTTCCAG ATTACTATCCACCATCCTATATATCTGAAATTCAATATTTCTTTAGCCAAGGACTCTCTTCTGGGAATTT ATGGCAGAAGAAACATTCCACCTACACACACTCAGTTTGATTTCGTGAAATTAATGGATGGCAAACAACT GGTAAAACAGGACTCTAAGAGCTCAGATGACATTCAGCACTCCCCAAGGAATCTGATCTTAACATCACTT CAGGAGACAGGTTTCATAGAGTATATGGACCAAGGACCTTGGTATCTGGCATTTTATAATGATGGAAAAA AGATGGAGCAAGTATTTGTGCTAACTACAGCAATTGAAATAATGGATGACTGCTCAACCAATTGTAATGG AAATGGAGAGTGTATCTCTGGGCACTGTCATTGTTTCCCAGGCTTCCTTGGACCTGACTGTGCTAGAGAT TCTTGCCCTGTGCTGTGTGGTGGAAACGGAGAATACGAAAAAGGCCACTGTGTCTGCAGGAATGGCTGGA AAGGGCCTGAGTGTGATGTTCCAGAAGAACAGTGCATTGACCCAACCTGCTTTGGCCATGGTACCTGCAT CATGGGAGTTTGCATCTGTGTTCCAGGATACAAAGGAGAAATTTGTGAGGAAGAGGACTGCTTAGATCCA ATGTGTTCCAGCCATGGCATCTGTGTCAAAGGAGAATGTCATTGTTCTACTGGCTGGGGTGGAGTCAACT GCGAAACTCCACTTCCTATATGTCAAGAGCAGTGCTCCGGACATGGAACTTTTCTTCTGGACACTGGAGT TTGCAGCTGTGATCCCAAGTGGACAGGATCCGACTGCTCTACAGAGCTCTGTACCATGGAGTGTGGTAGC CATGGGGTCTGCTCAAGGGGAATATGCCAATGTGAAGAAGGCTGGGTAGGACCAACATGTGAGGAACGTT CCTGTCACTCTCACTGTGCTGAGCATGGCCAATGCAAAGATGGAAAATGTGAATGTAGCCCTGGGTGGGA GGGCGACCACTGCACAATTGCTCACTACTTAGATGCTGTTCGAGATGGATGTCCAGGGCTCTGCTTTGGA AATGGACGATGTACCCTGGATCAAAATGGTTGGCACTGTGTGTGTCAGGTTGGTTGGAGTGGAACAGGCT GCAACATCGTCATGGAAATGCTTTGTGGTGACAACTTGGACAATGATGGAGATGGTTTGACAGACTGCGT GGACCCAGATTGTTGTCAACAAAGCAACTGTTACGTGAGCCCACTCTGTCAAGGATCACCAGATCCCCTT GACCTCATCCAACAAAGCCAGCCCCTCTTCTCTCAGCACACTTCAAGACTCTTCTATGATAGAATCAAAT TTCTTATTGGCAAGGATAGTACTCATGTTGTTCCTCAAGATATCTCATTTGACAGCAGGCGTGCTTGTGT GATTCGAGGCCAAGTGGTGGCTGTAGATGGAACCCCGCTTGTGGGAGTCAATGTCAGTTTCTTGCATCAC AGTGACTATGGCTTTACCATCAGTCGGCAAGATGGAAGCTTTGATCTCGTAGCCATTGGTGGTATCTCTG TAGTCTTAATCTTTGACCGATCACCTTTCCTGTCTGAAAAGAGAACACTCTGGTTGCCCTGGAATCAGTT TATTGTGGTGGAGAAAGTGATCATGCAGAGAATTGTAGCAGACGCACCATCCTGTGATATTTCCAACTTC ATCAGCCCAAATCCTATTGTACTTCCTTCACCACTCACATCATTTGGAGGATCCTGTCCAGAAAGGGGAA CAATTGTACCCGAGCTGCAGGTTGTACAGGAGGAAATCCCCATTCCATCCAGCTTTGTGAGGCTGAGTTA CCTGAGCAGTAGAACACCTGGGTATAAAACTTTGCTACGGATCCTTTTGACACATTCAACAATTCCTGTG GGCATGATTAAAGTACACCTCACAGTTTCTGTGGAAGGGCGACTCACACAGAAGTGGTTTCCTGCTGCAA TTAATCTGGTCTATACATTTGCTTGGAACAAGACTGACATCTATGGACAGAAGGTTTGGGGCCTGGCAGA AGCTTTGGTGTCTGTGGGATATGAATATGAGATGTGCCCTGAATTTATTCTCTGGGAACAAAGGACAGTC GTTTTGCAGGGCTTTGAGATGGATGCATCTAACCTAGGAGGCTGGTCCTTGAATAAGCATCATATTTTTA ATCCTCAAAGTGGAATTATTCATAAAGGAAATGGGGAAAATATGTTCATTTCCCAGCAGCCCCCAGTCAT AGCTACCATAATGGGCAATGGACACCAAAGGAGTGTAGCCTGCACTAACTGCAATGGTCCAGCCCACAAC AACAAACTCTTTGCTCCTGTCGCCTTAGCTTCTGGTCCTGATGGTAGTGTGTATGTTGGAGACTTCAATT TTGTAAGGCGAATATTTCCTTCAGGAAACTCTGTTAGCATTTTGGAACTAAGAAACAGAGATACCAGACA TAGCACAAGCCCTGCACACAAGTACTATCTGGCTATGGACCCTATGTCTGAATCACTCTACCTATCAGAC ACCAATACTCGAAAAGTCTACAAACTGAAATCTCTCGTGGAAACAAAAGATCTCTCTAAGAATTTTGAAG TGGTAGCAGGAACAGGTGACCAGTGCCTTCCCTTTGACCAAAGTCACTGCGGAGATGGTGGAAAAGCCTC TGAAGCTTCACTGAACAGCCCTCGAGGCATCACAGTAGATAGGCATGGATTCATTTACTTCGTGGATGGG ACTATGATCCGAAGAATTGATGAGAATGCTGTGATCACAACTGTAATTGGCTCAAACGGTCTGACTTCTA CACAGCCATTGAGCTGTGACTCTGGAATGGACATCACTCAGGTGCGATTAGAGTGGCCAACAGACCTTGC AGTCAATCCCATGGACAATTCATTGTATGTCCTGGATAACAACATTGTGCTGCAAATTTCTGAGAACAGG CGTGTGCGGATCATTGCAGGGCGTCCCATTCACTGCCAGGTGCCCGGCATCGATCATTTCTTGGTCAGCA AAGTAGCAATTCACTCCACTCTGGAGTCAGCTAGGGCCATCAGCGTCTCCCACAGCGGGCTGCTCTTCAT CGCCGAAACAGACGAGAGGAAAGTGAACCGCATTCAGCAAGTGACCACCAATGGGGAGATCTCCATCATT GCTGGCGCTCCCACTGACTGCGACTGTAAAATTGATCCCAACTGTGACTGTTTTTCAGGTGATGGTGGCT ACGCCAAAGATGCAAAGATGAAAGCTCCCTCTTCCTTAGCCGTGTCACCTGATGGCACCCTCTATGTAGC AGATCTTGGCAATGTTCGAATTCGTACCATCAGCAAGAATCAAGCCCACCTGAATGACATGAACCTATAT GAGATTGCCTCTCCTGCTGACCAAGAACTCTACCAGTTCACTGTAAATGGAACGCACCTACATACCATGA ACTTGATAACAAGGGACTATGTTTATAACTTCACCTACAATGCTGAAGGTGATTTGGGTGCCATCACTAG CAGCAATGGCAATTCCGTGCATATACGCCGGGATGCAGGTGGGATGCCCCTGTGGCTTGTTGTGCCTGGC GGACAAGTCTACTGGCTTACCATAAGTAGCAATGGAGTCCTGAAAAGAGTGTCAGCCCAAGGCTACAATT TGGCCTTGATGACATACCCAGGAAACACAGGACTTCTGGCAACAAAAAGTAATGAAAATGGATGGACAAC TGTTTATGAGTATGACCCCGAGGGACATCTGACCAATGCAACTTTTCCTACTGGAGAGGTCAGCAGCTTC CACAGTGACCTGGAGAAGCTGACAAAAGTGGCACTAGACACTTCCAACCGCGAAAATGTCCTCATGTCAA CCAACTTGACAGCAACCAGTACTATCTACATTTTAAAACAAGAAAATACTCAAAGTACCTATCGGGTGAG TCCAGATGGTTCACTACGTGTCACCTTTGCCAGTGGGATGGAGATCAACCTCAGCTCGGAGCCCCACATC CTGGCAGGGGCTGTCAACCCCACTCTAGGCAAATGCAACATATCGTTGCCTGGAGAGCACAATGCAAACC TCATTGAGTGGAGACAGAGAAAGGAGCAAAACAAAGGCAACGTTTCAGCTTTTGAGAGAAGACTGAGGGC CCATAACAGAAACCTACTTTCCATTGATTTTGATCATATGACCCGCACGGGTAAGATCTATGATGACCAC CGAAAATTCACTCTTCGAATTCTTTATGACCAGACCGGGCGACCTATTCTGTGGTCTCCTGTGAGCAGAT ATAATGAAGTGAACATCACGTATTCACCTTCAGGATTAGTCACATTTATTCAAAGAGGAACCTGGAATGA AAAGATGGAGTATGACCAGAGTGGAAAAATAATCTCAAGAACTTGGGCCGATGGGAAAATTTGGAGCTAT ACCTACTTAGAAAAGTCTGTGATGCTTCTGTTACACAGTCAGCGGCGTTACATCTTTGAGTATGACCAAT CAGATTGCCTGCTGTCAGTTACCATGCCTAGCATGGTGCGCCACAGCTTACAAACCATGCTTTCAGTGGG CTACTACCGTAATATCTACACCCCACCAGACAGCAGCACCTCTTTTATCCAAGACTACAGTCGAGATGGC CGACTGTTACAGACTCTGCATCTAGGGACTGGGCGCAGAGTTTTATACAAGTACACAAAGCAAGCAAGAC TGTCTGAGATTCTCTATGACACCACTCAGGTCACATTAACATATGAAGAGTCTTCTGGAGTAATTAAGAC AATACACCTGATGCATGACGGATTCATCTGCACAATCAGATACAGGCAAACAGGACCTCTCATTGGACGT CAGATTTTCCGATTCAGTGAAGAAGGTCTTGTGAATGCACGGTTTGACTACAGTTACAACAACTTTCGTG TCACCAGCATGCAAGCTGTGATCAATGAGACCCCTTTGCCCATAGATCTGTACCGATATGTTGATGTTTC TGGTAGAACAGAACAGTTTGGAAAATTCAGTGTAATTAATTATGATTTAAATCAGGTTATAACTACAACA GTGATGAAGCACACCAAGATTTTCAATGCCAATGGACAAGTCATTGAGGTCCAATATGAGATCCTAAAGG CAATTGCCTACTGGATGACTATTCAGTATGATAATATGGGCCGGATGGTCATATGTGATATAAGGGTAGG AGTAGATGCCAATATCACAAGGTACTTCTATGAATATGATGCTGATGGGCAACTTCAAACTGTTTCTGTG AATGACAAAATCCAGTGGCGGTATAGTTATGATCTGAATGGAAACATCAACCTTTTGAGCCATGGGAATA GTGCTCGTCTTACTCCTCTCCGATATGACCTCCGAGACCGCATCACTAGACTAGGGGAAATTCAGTATAA AATGGATGAAGACGGTTTTCTGAGACAGAGGGGAAATGATATATTTGAGTATAATTCTAATGGTCTGCTG CAGAAAGCCTACAATAAAGTTTCTGGCTGGACTGTACAGTATTACTATGATGGGCTTGGGCGACGCGTTG CCAGTAAGTCCAGCCTAGGACAGCATCTCCAATTCTTTTATGCAGACCTGGCCAACCCTATAAGAGTTAC TCATCTGTACAACCACACAAGCGCAGAGATTACATCTCTTTATTATGATCTCCAAGGTCACCTTATTGCC ATGGAGCTAAGCAGTGGTGAGGAATATTATGTAGCCTGTGATAATATGGGCACTCCATTAGCTGTGTTCA GCAGTCGGGGTCAGGTCATAAAAGAGATTCTGTATACACCTTATGGTGACATCTACCATGATACATACCC TGACTTTGAGGTCATCATTGGTTTTCATGGAGGACTCTATGATTTTCTTACTAAACTAGTGCATCTAGGG CAAAGAGATTATGATGTTGTTGCTGGCAGATGGACAACGCCTAATCATCACATATGGAAACAGTTGAACC TTCTTCCTAAACCATTCAACCTCTACTCCTTTGAGAATAACTACCCAGTTGGCAAAATTCAAGATGTTGC AAAGTATACCACAGATATCGGCACCTGGCTGGAGCTCTTTGGTTTCCAGTTACATAACGTACTACCTGGA TTTCCCAAACCAGAACTTGAAAACATGGAATTAACTTATGAGCTTCTTCAACTGCAGACAAAAACCCAAG AGTGGGATCCTGGAAAGATGATCCTGGGCATTCAGTGTGAGCTCCAGAAACAACTAAGGAATTTCATTTC CTTGGATCAGCTTCCTATGACTCCTCAGTACAATGAGGGGAGGTGTCTTGAAGGAGGGAAACAGCCGAGG TTTGCTGCTGTCCCTTCTGTCTTTGGCAAAGGTATCAAATTTGCCATCAAGGAGGGCATAGTGACAGCTG ATATTATAGGAGTAGCCAATGAAGATAGCAGGCGTCTTGCTGCCATTCTCAACAATGCTCATTACCTGGA AAACCTGCATTTTACCATAGAAGGGAGGGACACTCACTACTTCATTAAGCTCGGGTCTCTGGAGGAAGAC CTGGTGCTCATCGGTAACACTGGGGGGAGGCGGATTCTGGAGAATGGTGTTAATGTCACTGTGTCTCAGA TGACGTCAGTGTTGAATGGGAGGACTAGACGGTTTGCAGATATCCAACTGCAGCACGGAGCTCTGTGCTT CAACATCCGGTATGGAACGACTGTCGAAGAGGAGAAGAACCACGTGTTGGAGATGGCCAGACAGCGCGCA GTGGCCCAGGCCTGGACTCAGGAGCAGAGGAGGCTACAGGAAGGGGAAGAAGGGACTCGGGTATGGACAG AGGGAGAAAAGCAGCAGCTTTTGGGCACCGGGAGGGTGCAGGGGTATGATGGGTATTTTGTCTTGTCTGT TGAGCAGTATTTAGAACTTTCAGACAGTGCCAACAATATTCACTTCATGAGACAGAGTGAAATAGGCAGG AGGTAA AGCGGACCGACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCC TGGATTACAAGGATGACGACGATAAGGTTTAA |
Restriction Sites | SgfI-RsrII |
ACCN | NM_011855 |
Insert Size | 8196 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). |
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_011855.4, NP_035985.2 |
RefSeq Size | 8363 bp |
RefSeq ORF | 8196 bp |
Locus ID | 23963 |
UniProt ID | Q9WTS4 |
Gene Summary | Involved in neural development, regulating the establishment of proper connectivity within the nervous system. May function as a cellular signal transducer (By similarity).[UniProtKB/Swiss-Prot Function] |
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