Reelin (RELN) (NM_005045) Human Untagged Clone

CAT#: SC303566

RELN (untagged)-Human reelin (RELN), transcript variant 1



  "NM_005045" in other vectors (3)

CNY 33,024.00


货期*
现货

规格
    • 10 ug

Product images

经常一起买 (3)
RELN Rabbit polyclonal Antibody
    • 100 ul

CNY 1,999.00
CNY 3,280.00


TurboFectin Transfection Reagent (1 mL in 1 vial)
    • 1 ml in 1 vial

CNY 4,090.00


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

CNY 480.00

Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Synonyms ETL7; LIS2; PRO1598; RL
Vector pCMV6-XL5
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>OriGene sequence for NM_005045 edited
GCATGGAGCGCAGTGGCTGGGCCCGGCAGACTTTCCTCCTAGCGCTGTTGCTGGGGGCGA
CGCTGAGGGCGCGCGCGGCGGCTGGCTATTACCCCCGCTTTTCGCCCTTCTTTTTCCTGT
GCACCCACCACGGGGAGCTGGAAGGGGATGGGGAGCAGGGCGAGGTGCTCATTTCCCTGC
ATATTGCGGGCAACCCCACCTACTACGTTCCGGGACAAGAATACCATGTGACAATTTCAA
CAAGCACCTTTTTTGACGGCTTGCTGGTGACAGGACTATACACATCTACAAGTGTTCAGG
CATCACAGAGCATTGGAGGTTCCAGTGCTTTCGGATTTGGGATCATGTCTGACCACCAGT
TTGGTAACCAGTTTATGTGCAGTGTGGTAGCCTCTCACGTGAGTCACCTGCCCACAACCA
ACCTCAGTTTCATCTGGATTGCTCCACCTGCGGGCACAGGCTGTGTGAATTTCATGGCTA
CAGCAACACACCGGGGCCAGGTTATTTTCAAAGATGCTTTAGCCCAGCAGTTGTGTGAAC
AAGGAGCTCCAACAGATGTCACTGTGCACCCACATCTAGCTGAAATACATAGTGACAGCA
TTATCCTGAGAGATGACTTTGACTCCTACCACCAACTGCAATTAAATCCAAATATATGGG
TTGAATGTAACAACTGTGAGACTGGAGAACAGTGTGGCGCGATTATGCATGGCAATGCCG
TCACCTTCTGTGAACCATATGGCCCACGAGAACTGATTACCACAGGCCTTAATACAACAA
CAGCTTCTGTCCTCCAATTTTCCATTGGGTCAGGTTCATGTCGCTTTAGTTATTCAGACC
CCAGCATCATCGTGTTATATGCCAAGAATAACTCTGCGGACTGGATTCAGCTAGAGAAAA
TTAGAGCCCCTTCCAATGTCAGCACAATCATCCATATCCTCTACCTTCCTGAGGACGCCA
AAGGGGAGAATGTCCAATTTCAGTGGAAGCAGGAAAATCTTCGTGTAGGTGAAGTGTATG
AAGCCTGCTGGGCCTTAGATAACATCTTGATCATCAATTCAGCTCACAGACAAGTCGTTT
TAGAAGATAGTCTCGACCCAGTGGACACAGGCAACTGGCTTTTCTTCCCAGGAGCTACAG
TTAAGCATAGCTGTCAGTCAGATGGGAACTCCATTTATTTCCATGGAAATGAAGGCAGCG
AGTTCAATTTTGCCACCACCAGGGATGTAGATCTTTCCACAGAAGATATTCAAGAGCAAT
GGTCAGAAGAATTTGAGAGCCAGCCTACAGGATGGGATGTCTTGGGAGCTGTCATTGGTA
CAGAATGTGGAACGATAGAATCAGGCTTATCAATGGTCTTCCTCAAAGATGGAGAGAGGA
AATTATGCACTCCATCCATGGACACTACCGGTTATGGGAACCTGAGGTTTTACTTTGTGA
TGGGAGGAATTTGTGACCCTGGAAATTCTCATGAAAATGACATAATCCTGTATGCAAAAA
TTGAAGGAAGAAAAGAGCATATAACACTGGATACCCTTTCCTATTCCTCATATAAGGTTC
CGTCTTTGGTTTCTGTGGTCATCAATCCTGAACTTCAGACTCCTGCTACCAAATTTTGTC
TCAGGCAAAAGAACCATCAAGGACATAATAGGAATGTCTGGGCTGTAGACTTTTTCCATG
TCTTGCCTGTTCTCCCTTCTACAATGTCTCACATGATACAGTTTTCCATCAATCTGGGAT
GTGGAACGCATCAGCCTGGTAACAGTGTCAGCTTGGAATTTTCTACCAACCATGGGCGCT
CCTGGTCCCTCCTTCACACTGAATGCTTACCTGAGATCTGTGCTGGACCCCACCTCCCCC
ACAGCACTGTCTACTCCTCTGAAAACTACAGTGGGTGGAACCGAATAACAATTCCCCTTC
CTAACGCAGCACTAACCCGGAACACCAGGATTCGCTGGAGACAAACAGGACCAATCCTTG
GAAACATGTGGGCAATTGATAATGTTTATATTGGCCCGTCATGTCTCAAATTCTGTTCTG
GCAGAGGACAGTGCACTAGACATGGTTGCAAGTGTGACCCTGGATTTTCTGGCCCAGCTT
GTGAGATGGCATCCCAGACATTCCCAATGTTTATTTCTGAAAGCTTTGGCAGTTCCAGGC
TCTCCTCTTACCATAACTTTTACTCTATCCGTGGTGCTGAAGTCAGCTTTGGTTGTGGTG
TCTTGGCCAGTGGTAAGGCCCTGGTTTTCAACAAAGATGGGCGGCGTCAGCTAATTACAT
CTTTCCTTGACAGCTCACAATCCAGGTTTCTCCAGTTCACACTGAGACTGGGGAGCAAAT
CTGTTCTGAGCACGTGCAGAGCCCCTGATCAGCCTGGTGAAGGAGTTTTGTTGCATTATT
CTTATGATAATGGGATAACTTGGAAACTCCTGGAGCATTATTCATATCTCAGCTATCATG
AGCCCAGAATAATCTCCGTAGAACTACCAGGTGATGCAAAGCAGTTTGGAATTCAGTTCA
GATGGTGGCAACCGTATCATTCTTCCCAGAGAGAAGATGTATGGGCTATTGATGAGATTA
TCATGACATCTGTGCTTTTCAACAGCATTAGTCTTGACTTTACCAATCTTGTGGAGGTCA
CTCAGTCTCTGGGATTCTACCTTGGAAATGTTCAGCCATACTGTGGCCACGACTGGACCC
TTTGTTTTACAGGAGATTCTAAACTTGCCTCAAGTATGCGCTATGTGGAAACACAATCAA
TGCAGATAGGAGCATCCTATATGATTCAGTTCAGTTTGGTGATGGGATGTGGCCAGAAAT
ACACCCCACACATGGACAACCAGGTGAAGCTGGAGTACTCAACCAACCACGGCCTTACCT
GGCACCTCGTCCAAGAAGAATGCCTTCCAAGTATGCCAAGTTGTCAGGAATTTACATCAG
CAAGTATTTACCATGCCAGTGAGTTTACACAGTGGAGGAGAGTCATAGTGCTTCTTCCCC
AGAAAACTTGGTCCAGTGCTACCCGTTTCCGCTGGAGCCAGAGCTATTACACAGCTCAAG
ACGAGTGGGCTTTGGACAGCATTTACATTGGGCAGCAGTGCCCCAACATGTGCAGTGGGC
ATGGCTCATGCGATCATGGCATATGCAGGTGTGACCAGGGGTACCAAGGCACTGAATGCC
ACCCAGAAGCTGCCCTTCCGTCCACAATTATGTCAGATTTTGAGAACCAGAATGGCTGGG
AGTCTGACTGGCAAGAAGTTATTGGGGGAGAAATTGTAAAACCAGAACAAGGGTGTGGTG
TCATCTCTTCTGGATCATCTCTGTACTTCAGCAAGGCTGGGAAAAGACAGCTGGTGAGTT
GGGACCTGGATACTTCTTGGGTGGACTTTGTCCAGTTCTACATCCAGATAGGCGGAGAGA
GTGCTTCATGCAACAAGCCTGACAGCAGAGAGGAGGGCGTCCTCCTTCAGTACAGCAACA
ATGGGGGCATCCAGTGGCACCTGCTAGCAGAGATGTACTTTTCAGACTTCAGCAAACCCA
GATTTGTCTATCTGGAGCTTCCAGCTGCTGCCAAGACCCCTTGCACCAGGTTCCGCTGGT
GGCAGCCCGTGTTCTCAGGGGAGGACTATGACCAGTGGGCAGTCGATGACATCATCATTC
TGTCCGAGAAGCAGAAGCAGATCATCCCAGTTATCAATCCAACTTTACCTCAGAACTTTT
ATGAGAAGCCAGCTTTTGATTACCCTATGAATCAGATGAGTGTGTGGTTGATGTTGGCTA
ATGAAGGAATGGTTAAAAATGAAACCTTCTGTGCTGCCACACCATCAGCAATGATATTTG
GAAAATCAGATGGAGATCGATTTGCAGTAACTCGAGATTTGACCCTGAAACCTGGATATG
TGCTACAGTTCAAGCTAAACATAGGTTGTGCCAATCAATTCAGCAGTACTGCTCCAGTTC
TTCTTCAGTACTCTCATGATGCTGGTATGTCCTGGTTTCTGGTGAAAGAAGGCTGTTACC
CGGCTTCTGCAGGCAAAGGATGCGAAGGAAACTCCAGAGAACTAAGTGAGCCCACCATGT
ATCACACAGGGGACTTTGAAGAATGGACAAGAATCACCATTGTTATTCCAAGGTCTCTTG
CATCCAGCAAGACCAGATTCCGATGGATCCAGGAGAGCAGCTCACAGAAAAACGTGCCTC
CATTTGGTTTAGATGGAGTGTACATATCCGAGCCTTGTCCCAGTTACTGCAGTGGCCATG
GGGACTGCATTTCAGGAGTGTGTTTCTGTGACCTGGGATATACTGCTGCACAAGGAACCT
GTGTGTCAAATGTCCCCAATCACAATGAGATGTTCGATAGGTTTGAGGGGAAGCTCAGCC
CTCTGTGGTACAAGATAACAGGTGCCCAGGTTGGAACTGGCTGTGGAACACTTAACGATG
GCAAATCTCTCTACTTCAATGGCCCTGGGAAAAGGGAAGCCCGGACGGTCCCTCTGGACA
CCAGGAATATCAGACTTGTTCAATTTTATATACAAATTGGAAGCAAAACTTCAGGCATTA
CCTGCATCAAACCAAGAACTAGAAATGAAGGGCTTATTGTTCAGTATTCAAATGACAATG
GGATACTCTGGCATTTGCTTCGAGAGTTGGACTTCATGTCCTTCCTGGAACCACAGATCA
TTTCCATTGACCTGCCACAGGACGCGAAGACACCTGCAACGGCATTTCGATGGTGGCAAC
CGCAACATGGGAAGCATTCAGCCCAGTGGGCTTTGGATGATGTTCTTATAGGAATGAATG
ACAGCTCTCAAACTGGATTTCAAGACAAATTTGATGGCTCTATAGATTTGCAAGCCAACT
GGTATCGAATCCAAGGAGGTCAAGTTGATATTGACTGTCTCTCTATGGATACTGCTCTGA
TATTCACTGAAAACATAGGAAAACCTCGTTATGCTGAGACCTGGGATTTTCATGTGTCAG
CATCTACCTTTTTGCAGTTTGAAATGAGCATGGGCTGTAGCAAGCCCTTCAGCAACTCCC
ACAGTGTACAGCTCCAGTATTCTCTGAACAATGGCAAGGACTGGCATCTTGTCACCGAAG
AGTGTGTTCCTCCAACCATTGGCTGTCTGCATTACACGGAAAGTTCAATTTACACCTCGG
AAAGATTCCAGAATTGGAAGCGGATCACTGTCTACCTTCCACTCTCCACCATTTCTCCCA
GGACCCGGTTCAGATGGATTCAGGCCAACTACACTGTGGGGGCTGATTCCTGGGCGATTG
ATAATGTTGTACTGGCCTCAGGGTGCCCTTGGATGTGCTCAGGACGAGGGATTTGTGATG
CTGGACGCTGTGTGTGTGACCGGGGCTTTGGTGGACCCTATTGTGTTCCTGTTGTTCCTC
TGCCCTCGATTCTTAAAGACGATTTCAATGGGAATTTACATCCTGACCTTTGGCCTGAAG
TGTATGGTGCAGAGAGGGGGAATCTGAATGGTGAAACCATCAAATCTGGAACATCTCTAA
TTTTTAAAGGGGAAGGACTAAGGATGCTTATTTCAAGAGATCTAGATTGTACAAATACAA
TGTATGTCCAGTTTTCACTTAGATTTATAGCAAAAAGTACCCCAGAGAGATCTCACTCTA
TTCTGTTACAATTCTCCATCAGTGGAGGAATCACTTGGCACCTGATGGATGAATTTTACT
TTCCTCAAACAACGAATATACTTTTCATCAATGTTCCCTTGCCATACACTGCCCAAACCA
ATGCTACAAGATTCAGACTCTGGCAACCTTATAATAACGGTAAGAAAGAAGAAATCTGGA
TTGTTGATGACTTCATTATCGATGGAAATAATGTAAACAACCCTGTGATGCTCTTGGATA
CATTTGATTTTGGGCCCAGAGAAGACAATTGGTTTTTCTATCCTGGTGGTAACATCGGTC
TTTATTGTCCATATTCTTCAAAGGGGGCACCTGAAGAAGATTCAGCTATGGTGTTTGTTT
CAAATGAAGTTGGTGAGCATTCCATTACCACCCGTGACCTAAATGTGAATGAGAACACCA
TCATACAATTTGAGATCAACGTTGGCTGTTCGACTGATAGCTCATCCGCGGATCCAGTGA
GACTGGAATTTTCAAGGGACTTCGGGGCGACCTGGCACCTTCTGCTGCCCCTCTGCTACC
ACAGCAGCAGCCACGTCAGCTCTTTATGCTCCACCGAGCACCACCCCAGCAGCACCTACT
ACGCAGGAACCATGCAGGGCTGGAGGAGGGAGGTCGTGCACTTTGGGAAGCTGCACCTTT
GTGGATCTGTCCGTTTCAGATGGTACCAGGGATTTTACCCTGCCGGCTCTCAGCCAGTGA
CATGGGCCATTGATAATGTCTACATCGGTCCCCAGTGTGAGGAGATGTGTAATGGACAGG
GGAGCTGTATCAATGGAACCAAATGTATATGTGACCCTGGCTACTCAGGTCCAACCTGTA
AAATAAGCACCAAAAATCCTGATTTTCTCAAAGATGATTTCGAAGGTCAGCTAGAATCTG
ATAGATTCTTATTAATGAGTGGTGGGAAACCATCTCGAAAGTGTGGAATCCTTTCTAGTG
GAAACAACCTCTTTTTCAATGAAGATGGCTTGCGCATGTTGATGACACGAGACCTGGATT
TATCACATGCTAGATTTGTGCAGTTCTTCATGAGACTGGGATGTGGTAAAGGCGTTCCTG
ACCCCAGGAGTCAACCCGTGCTCCTACAGTATTCTCTCAACGGTGGCCTCTCGTGGAGTC
TTCTTCAGGAGTTCCTTTTCAGCAATTCCAGCAATGTGGGCAGGTACATTGCCCTGGAGA
TACCCTTGAAAGCCCGTTCTGGTTCTACTCGCCTTCGCTGGTGGCAACCGTCTGAGAATG
GGCACTTCTACAGCCCCTGGGTTATCGATCAGATTCTTATTGGAGGAAATATTTCTGGTA
ATATGGTCTTGGAAGATGATTTCACAACCCTTGATAGTAGGAAATGGCTGCTTCACCCAG
GAGGCACCAAGATGCCCGTGTGTGGCTCTACTGGTGATGCCCTGGTCTTCATTGAAAAGG
CCAGCACCCGTTACGTGGTCAGCACAGACGTCGCCGTGAATGAGGATTCCTTCCTACAGA
TAGACTTCGCTGTCTCCTGCTCAGTCACAGACTCTTGTTATGCGATTGAATTGGAATACT
CAGTAGATCTTGGATTGTCATGGCACCCATTGGTAAGGGACTGTCTGCCTACCAATGTGG
AATGCAGTCGCTATCATCTGCAACGGATCCTGGTGTCAGACACTTTCAACAAGTGGACTA
GAATCACTCTGCCTCTCCCTCCTTATACCAGGTCCCAAGCCACTCGTTTCCGTTGGCATC
AACCAGCTCCTTTTGACAAGCAGCAGACATGGGCAATAGATAATGTCTATATCGGGGATG
GCTGCATAGACATGTGCAGTGGCCATGGGAGATGCATCCAGGGAAACTGCGTCTGTGATG
AACAGTGGGGTGGCCTGTACTGTGATGACCCCGAGACCTCTCTTCCAACCCAACTCAAAG
ACAACTTCAATCGAGCTCCATCCAGTCAGAACTGGCTGACTGTGAACGGAGGGAAATTGA
GTACAGTGTGTGGAGCCGTGGCGTCGGGAATGGCTCTCCATTTCAGTGGGGGTTGTAGTC
GATTATTAGTCACTGTGGATCTAAACCTCACTAATGCTGAGTTCATCCAATTTTACTTCA
TGTATGGGTGCCTGATTACACCAAACAACCGTAACCAAGGTGTTCTCTTGGAATATTCTG
TCAATGGAGGCATTACCTGGAACCTGCTCATGGAGATTTTCTATGACCAGTACAGTAAGC
CCGGGTTTGTGAATATCCTTCTCCCTCCTGATGCTAAAGAGATTGCCACTCGCTTCCGCT
GGTGGCAGCCAAGACATGACGGCCTGGATCAGAACGACTGGGCCATTGACAATGTCCTCA
TCTCAGGCTCTGCTGACCAAAGGACCGTTATGCTGGACACCTTCAGCAGCGCCCCAGTAC
CCCAGCACGAGCGCTCCCCTGCAGATGCCGGCCCTGTCGGGAGGATCGCCTTTGACATGT
TTATGGAAGACAAAACTTCAGTGAATGAGCACTGGCTGTTCCATGATGATTGTACAGTAG
AAAGATTCTGTGACTCCCCTGATGGTGTGATGCTCTGTGGCAGTCATGATGGACGGGAGG
TGTATGCAGTGACCCATGACCTGACTCCCACTGAAGGCTGGATTATGCAATTCAAGATCT
CAGTTGGATGTAAGGTGTCTGAAAAAATTGCCCAGAATCAAATTCATGTGCAGTATTCTA
CTGACTTCGGTGTGAGTTGGAATTATCTGGTCCCTCAGTGCTTGCCTGCTGACCCAAAAT
GCTCTGGAAGTGTTTCTCAGCCATCTGTATTCTTTCCAACTAAAGGGTGGAAAAGGATCA
CCTACCCACTTCCTGAAAGCTTAGTGGGAAATCCGGTAAGGTTTAGGTTCTATCAGAAGT
ACTCAGACATGCAGTGGGCAATCGATAATTTCTACCTGGGCCCTGGATGCTTGGACAACT
GCAGGGGCCATGGAGATTGCTTAAGGGAACAGTGCATCTGTGATCCGGGATACTCAGGGC
CAAACTGCTACTTGACCCACACTCTGAAGACTTTCCTGAAGGAACGCTTTGACAGTGAAG
AAATCAAACCTGACTTATGGATGTCCTTAGAAGGTGGAAGTACTTGCACTGAGTGTGGAA
TTCTTGCCGAGGACACTGCACTCTATTTTGGGGGATCCACTGTGAGACAAGCGGTTACAC
AAGATTTGGATCTTCGAGGTGCAAAGTTCCTGCAATACTGGGGGCGCATCGGTAGTGAGA
ACAACATGACCTCTTGCCATCGTCCCATCTGCCGGAAGGAAGGCGTGCTGTTGGACTACT
CTACCGATGGAGGAATTACCTGGACTTTGCTCCATGAGATGGATTACCAGAAATACATTT
CTGTTAGACACGACTACATACTTCTTCCTGAAGATGCCCTCACCAACACAACTCGACTTC
GCTGGTGGCAGCCTTTTGTGATCAGCAATGGAATTGTGGTCTCTGGGGTGGAGCGTGCTC
AGTGGGCACTGGACAACATTTTGATTGGTGGAGCAGAAATCAATCCCAGCCAATTGGTGG
ACACTTTTGATGATGAAGGCACTTCCCATGAAGAAAACTGGAGTTTTTACCCTAATGCTG
TAAGGACAGCAGGATTTTGTGGCAATCCATCCTTTCACCTCTATTGGCCAAATAAAAAGA
AGGACAAGACTCACAATGCTCTCTCCTCCCGAGAACTCATTATACAGCCAGGATACATGA
TGCAGTTTAAAATTGTGGTGGGTTGTGAAGCCACTTCTTGTGGTGACCTTCATTCCGTAA
TGCTGGAATACACTAAGGATGCAAGATCGGATTCCTGGCAGCTCGTACAGACCCAGTGCC
TTCCTTCCTCTTCTAACAGCATTGGCTGCTCCCCTTTCCAGTTCCATGAAGCCACCATCT
ACAACTCTGTCAACAGCTCAAGCTGGAAAAGAATCACCATCCAGCTGCCTGACCATGTCT
CCTCTAGTGCAACACAGTTCCGCTGGATCCAGAAGGGAGAAGAAACTGAGAAGCAAAGCT
GGGCAATTGACCACGTGTACATTGGAGAGGCTTGCCCCAAGCTCTGCAGCGGGCACGGAT
ACTGCACGACCGGTGCCATCTGCATCTGCGACGAGAGCTTCCAAGGTGATGACTGCTCTG
TTTTCAGTCACGACCTTCCCAGTTATATTAAAGATAATTTTGAGTCCGCAAGAGTCACCG
AGGCAAACTGGGAGACCATTCAAGGTGGAGTCATAGGAAGTGGCTGTGGGCAGCTGGCCC
CCTACGCCCATGGAGACTCACTGTACTTTAATGGCTGTCAGATCAGGCAAGCAGCTACCA
AGCCTCTGGATCTCACTCGAGCAAGCAAAATCATGTTTGTTTTGCAAATTGGGAGCATGT
CGCAGACGGACAGCTGCAACAGTGACCTGAGTGGCCCCCACGCTGTGGACAAGGCGGTGC
TGCTGCAATACAGCGTCAACAACGGGATCACCTGGCATGTCATCGCCCAGCACCAGCCAA
AGGACTTCACACAAGCTCAGAGAGTGTCTTACAATGTCCCCCTGGAGGCACGGATGAAAG
GAGTCTTACTGCGCTGGTGGCAACCACGCCACAATGGAACAGGTCATGATCAATGGGCTT
TGGACCATGTGGAGGTCGTCCTAGTAAGCACTCGCAAACAAAATTACATGATGAATTTTT
CACGACAACATGGGCTCAGACATTTCTACAACAGAAGACGAAGGTCACTTAGGCGATACC
CATGAAGAATCAAAAAGTTTATTTTTTTTCTTCCAACATGTGATGTGTTGCTCTCCATTC
TTTTAAATCTCGCACTACATCTGATATCAGGAAATATCTGTGAAGGACTTGGTGATTACC
TGAAAGCCCTTCTCAAGACCGAGTGTACACCACTTTCCCACACTGTGAACTAATGACAAG
TGACTTATTTGCTCATAAGTAAATGTCTTCATGTTGATGTGTCCGTGAAAGTTGTGATCT
GTTGTAATATCAGTTACAGTGGCAGTATTGACAATAAGAAACAGTTTAACAGAAAAATGA
AATTTAAGCACAAAAAATTTAAGAGATTTTATGTTTAAAATGGCATTTAGCACAGTATTT
AACATTCTTGGTCACAAAGCTATTTAAGTGGACTGTATTTCRGCTATGTCTCATGTTTTA
TATGATTAAATTATCATTGTTTGTCCTTTATGTATTCTCTTCTACAATACAACACATTGA
AACTGTATTTACTTGTTATGTTGTAATATTTTGCTGCTGAATTTGGGGCTACTTATATTC
TGCAGAAAATTAATTGAAATACCTATTCAAGAAGATAGTTGTAAAGATATTGTATCTCCT
TTAATATACTCCTTAAAAATGTATGTTGGTTTAGCGTTGTTTTGTGGATAAGAAAAATGC
TTGACCCTGAAATATTTTCTACTTTAAATTGTGGATGAAGACCCTATCTCCCACAAATAA
GTTCCCATTTCCTTGTCTAAAGATCTTTTTTTAAGTGTTCTGTGGCTGATTTACTAACAG
TAACTGCCATTTTTTGTCTGTGATAACAGAGTGATTTGTAAAACAGTGGTTGTTTTTTCA
TTGTGTTTTCTTCGTGGATTGTTTTTTCTGCGGGTCATATTCATACCTTCTGATGAAGTT
GTACAACACCAGCAACATTATAATGGCCCTGTAGCTCTGAATGCTATTTGTGTAACTGAA
AGGTTGCACTCTAGGGTGAACCAAGCTATAAAAGCCCATGCTTAAATAAAAATTATGTCC
AAAAGCCAAAAAAAAAAAAAAAAAAA
Restriction Sites Please inquire     
ACCN NM_005045
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.

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 The open reading frame of this TrueClone was fully sequenced and found to differ from the protein associated to this reference by two amino acids.
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_005045.2, NP_005036.2
RefSeq Size 11564 bp
RefSeq ORF 10383 bp
Locus ID 5649
UniProt ID P78509
Protein Families Druggable Genome
Protein Pathways ECM-receptor interaction, Focal adhesion
Gene Summary This gene encodes a large secreted extracellular matrix protein thought to control cell-cell interactions critical for cell positioning and neuronal migration during brain development. This protein may be involved in schizophrenia, autism, bipolar disorder, major depression and in migration defects associated with temporal lobe epilepsy. Mutations of this gene are associated with autosomal recessive lissencephaly with cerebellar hypoplasia. Two transcript variants encoding distinct isoforms have been identified for this gene. Other transcript variants have been described but their full length nature has not been determined. [provided by RefSeq, Jul 2008]
Transcript Variant: This variant (1) represents the longer transcript, and encodes the longer isoform (a). Sequence Note: The RefSeq transcript and protein were derived from genomic sequence to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on alignments.
*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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