Fibrillin 2 (FBN2) (NM_001999) Human Untagged Clone

CAT#: SC309031

FBN2 (untagged)-Human fibrillin 2 (FBN2)



  "NM_001999" in other vectors (3)

CNY 56,050.00


货期*
4周

规格
    • 10 ug

Product images

经常一起买 (4)
FBN2 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


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 Human Untagged Clone
Tag Tag Free
Synonyms CCA; DA9; EOMD
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>SC309031 representing NM_001999.
Blue=Insert sequence Red=Cloning site Green=Tag(s)

GCTCGTTTAGTGAACCGTCAGAATTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTG
GATCCGGTACCGAGGAGATCTGCCGCCGCGATCGCC
ATGGGGAGAAGACGGAGGCTGTGTCTCCAGCTCTACTTCCTGTGGCTGGGCTGTGTGGTGCTCTGGGCG
CAGGGCACGGCCGGCCAGCCTCAGCCTCCTCCGCCCAAGCCGCCCCGGCCCCAGCCGCCGCCGCAACAG
GTTCGGTCCGCTACAGCAGGCTCTGAAGGCGGGTTTCTAGCGCCCGAGTATCGCGAGGAGGGTGCCGCA
GTGGCCAGCCGCGTCCGCCGGCGAGGACAGCAGGACGTGCTCCGAGGGCCCAACGTGTGCGGCTCCAGA
TTCCACTCCTACTGCTGCCCTGGATGGAAGACGCTCCCTGGAGGAAACCAGTGCATTGTCCCGATTTGT
AGAAATAGTTGTGGAGATGGATTTTGTTCCCGTCCTAACATGTGTACTTGTTCCAGTGGGCAAATATCA
TCAACCTGTGGATCAAAATCAATTCAGCAGTGCAGTGTGAGATGCATGAATGGTGGGACCTGTGCAGAT
GACCACTGCCAGTGCCAGAAAGGATATATTGGAACTTATTGTGGACAACCTGTCTGTGAAAATGGATGT
CAGAATGGTGGACGTTGCATCGGACCCAACCGCTGTGCTTGTGTTTATGGGTTCACTGGTCCACAGTGT
GAAAGAGATTACAGGACAGGCCCGTGTTTCACTCAGGTCAACAACCAGATGTGCCAAGGGCAGCTGACA
GGCATTGTCTGCACGAAGACTCTGTGCTGTGCCACCATTGGACGGGCGTGGGGCCATCCCTGTGAGATG
TGTCCAGCCCAGCCTCAGCCCTGCCGACGGGGTTTCATCCCCAACATCCGCACTGGAGCTTGCCAAGAT
GTTGATGAATGCCAGGCTATCCCAGGGATATGCCAAGGAGGAAACTGTATCAATACAGTGGGCTCTTTT
GAATGCAGATGCCCTGCTGGTCACAAACAGAGTGAAACTACTCAGAAATGTGAAGACATTGATGAGTGC
AGCATCATTCCTGGGATATGTGAAACTGGTGAATGTTCCAACACCGTGGGAAGCTATTTTTGTGTTTGT
CCACGTGGATATGTAACCTCAACAGATGGCTCTCGATGCATCGATCAGAGAACAGGCATGTGTTTCTCG
GGCCTGGTGAATGGCCGCTGTGCACAAGAGCTCCCGGGGAGAATGACGAAAATGCAGTGCTGCTGTGAG
CCTGGCCGCTGCTGGGGCATCGGAACCATTCCTGAAGCCTGTCCTGTCAGAGGTTCTGAGGAATATCGC
AGACTTTGCATGGATGGACTTCCAATGGGAGGAATTCCAGGGAGTGCTGGTTCCAGACCTGGAGGCACT
GGGGGAAATGGCTTTGCCCCAAGTGGCAATGGCAATGGCTATGGCCCAGGAGGGACAGGCTTCATCCCC
ATCCCTGGAGGCAATGGCTTTTCTCCTGGCGTTGGGGGAGCCGGTGTGGGGGCCGGGGGACAGGGACCT
ATCATCACTGGACTAACAATTCTGAACCAGACAATAGATATCTGTAAGCATCATGCTAACCTTTGTTTA
AATGGACGCTGTATACCAACTGTCTCAAGCTACCGATGTGAATGCAACATGGGTTATAAGCAGGATGCA
AATGGAGATTGTATAGATGTTGATGAATGCACATCAAATCCCTGCACTAATGGAGATTGTGTTAACACA
CCTGGTTCCTATTATTGTAAATGTCATGCTGGATTCCAGAGGACTCCTACCAAGCAAGCATGCATTGAT
ATTGATGAGTGCATCCAGAATGGGGTTCTTTGTAAAAACGGTCGATGCGTGAACACAGATGGAAGTTTC
CAGTGCATTTGCAATGCCGGCTTTGAATTAACTACAGATGGAAAAAACTGTGTTGATCATGATGAATGT
ACAACTACCAACATGTGTTTGAATGGAATGTGCATCAATGAAGATGGCAGCTTCAAGTGCATCTGCAAA
CCAGGATTTGTCTTGGCTCCAAATGGGCGTTACTGTACTGATGTTGATGAATGCCAGACCCCAGGAATC
TGCATGAATGGGCACTGCATCAACAGTGAAGGGTCCTTCCGCTGTGACTGTCCCCCAGGCCTGGCTGTG
GGCATGGATGGACGTGTGTGTGTTGATACTCACATGCGCAGTACCTGCTATGGAGGAATCAAGAAAGGA
GTGTGTGTGCGTCCTTTCCCCGGTGCAGTGACCAAGTCCGAATGCTGCTGTGCCAATCCAGACTATGGT
TTTGGAGAACCCTGCCAGCCATGCCCTGCAAAAAATTCAGCTGAATTCCACGGCCTTTGTAGTAGTGGA
GTAGGTATCACTGTGGATGGAAGAGATATCAATGAATGTGCTTTGGATCCTGATATATGTGCCAATGGG
ATTTGTGAAAACTTACGTGGTAGTTACCGTTGTAATTGCAACAGTGGCTATGAACCAGATGCCTCTGGA
AGAAACTGTATTGACATTGATGAATGTTTAGTAAACAGACTGCTTTGTGATAACGGATTGTGCCGAAAC
ACGCCAGGAAGTTACAGCTGTACGTGCCCACCAGGGTATGTGTTCAGGACTGAGACAGAGACCTGTGAA
GATATAAATGAATGTGAAAGCAACCCATGTGTCAATGGGGCCTGCAGAAACAACCTTGGATCTTTCAAT
TGTGAATGTTCGCCCGGCAGCAAACTCAGCTCCACAGGATTGATCTGTATTGACAGCCTGAAGGGGACC
TGTTGGCTCAACATCCAGGACAGCCGCTGTGAGGTGAATATTAATGGAGCCACTCTGAAATCTGAATGC
TGTGCCACCCTCGGAGCCGCCTGGGGGAGCCCCTGTGAGCGGTGTGAACTAGATACAGCTTGCCCAAGA
GGGCTTGCCAGGATTAAAGGTGTTACGTGTGAAGATGTTAATGAGTGTGAGGTGTTCCCTGGCGTTTGT
CCAAATGGACGCTGTGTCAACAGTAAGGGATCTTTTCATTGCGAGTGCCCTGAAGGCCTTACGTTGGAT
GGGACTGGCCGTGTATGTTTGGATATTCGCATGGAGCAGTGTTACTTGAAGTGGGATGAAGATGAATGC
ATCCACCCCGTTCCTGGAAAGTTCCGCATGGATGCCTGCTGCTGTGCTGTCGGGGCGGCTTGGGGCACC
GAGTGTGAGGAGTGCCCCAAACCTGGCACCAAGGAATACGAGACGCTGTGCCCCCGCGGGGCTGGCTTT
GCTAACCGAGGGGATGTTCTTACTGGGCGGCCATTTTACAAAGACATCAATGAATGCAAAGCATTTCCT
GGGATGTGCACTTATGGGAAGTGCAGAAATACAATCGGAAGCTTCAAATGCCGTTGCAATAGTGGCTTT
GCTCTAGACATGGAGGAAAGAAACTGCACGGACATCGACGAGTGCAGGATTTCTCCTGACCTCTGTGGC
AGTGGAATCTGCGTCAATACACCGGGCAGCTTTGAGTGCGAGTGCTTCGAAGGCTATGAAAGTGGCTTC
ATGATGATGAAGAACTGCATGGACATTGACGAATGTGAACGTAACCCTCTCCTTTGTAGGGGTGGCACC
TGTGTGAACACTGAGGGCAGCTTTCAGTGTGACTGCCCACTGGGACACGAGCTGTCACCATCCCGTGAG
GACTGTGTGGATATTAATGAATGCTCCCTGAGTGACAATCTCTGCAGAAATGGAAAATGTGTGAACATG
ATTGGAACCTATCAGTGCTCTTGCAATCCTGGATATCAGGCTACGCCAGACCGCCAGGGCTGTACAGAT
ATTGATGAATGTATGATAATGAACGGAGGCTGTGACACCCAGTGCACAAATTCAGAGGGAAGCTACGAA
TGCAGCTGCAGTGAGGGTTATGCCCTGATGCCAGATGGGAGATCGTGTGCAGACATTGATGAATGTGAA
AACAATCCTGATATCTGTGATGGCGGCCAGTGTACCAACATTCCTGGAGAGTATCGCTGCCTCTGCTAT
GATGGCTTCATGGCTTCCATGGACATGAAAACATGCATTGATGTCAATGAATGTGACCTAAATTCAAAT
ATCTGCATGTTTGGGGAATGTGAGAACACAAAGGGATCCTTCATTTGCCACTGTCAGCTGGGTTACTCA
GTGAAGAAGGGGACCACAGGATGTACAGATGTGGATGAGTGTGAAATTGGTGCTCATAACTGCGACATG
CATGCCTCATGTCTGAATATCCCAGGAAGCTTCAAGTGTAGCTGCAGAGAAGGCTGGATTGGAAACGGC
ATCAAGTGTATTGATCTGGACGAATGTTCTAATGGAACCCACCAGTGTAGCATCAATGCTCAGTGTGTA
AATACCCCGGGCTCATACCGCTGTGCCTGCTCCGAAGGTTTCACTGGTGATGGCTTTACCTGCTCAGAT
GTTGATGAGTGTGCAGAAAACATAAACCTCTGTGAGAACGGACAGTGCCTTAATGTCCCGGGTGCATAT
CGCTGCGAGTGTGAGATGGGCTTCACTCCAGCCTCAGACAGCAGATCCTGCCAAGATATTGATGAATGC
TCCTTCCAAAACATTTGTGTCTTTGGAACATGTAATAACCTGCCTGGAATGTTTCATTGCATCTGCGAT
GATGGTTATGAATTGGACAGAACAGGAGGGAACTGTACAGATATTGATGAGTGTGCAGATCCTATAAAC
TGTGTCAATGGCCTATGTGTCAACACGCCTGGTCGCTATGAGTGTAACTGCCCACCCGATTTTCAGTTG
AACCCAACTGGTGTGGGTTGTGTTGACAACCGTGTGGGCAACTGCTACCTGAAGTTTGGACCTCGAGGA
GATGGGAGTCTGTCTTGCAACACCGAGATCGGGGTGGGCGTCAGTCGCTCTTCATGCTGCTGCTCTCTG
GGAAAGGCCTGGGGAAACCCCTGTGAGACATGCCCCCCTGTCAATAGCACTGAATATTACACCCTGTGT
CCCGGAGGTGAAGGCTTCAGACCTAACCCCATCACAATCATTTTAGAAGACATTGACGAATGCCAGGAG
TTACCAGGTCTCTGCCAGGGTGGAAACTGCATCAACACTTTTGGGAGCTTCCAGTGTGAGTGCCCACAA
GGCTACTACCTCAGCGAGGATACCCGCATCTGTGAAGATATTGATGAGTGTTTTGCACATCCTGGTGTG
TGTGGGCCTGGGACCTGCTATAACACCCTGGGAAATTACACCTGCATTTGCCCACCTGAGTACATGCAG
GTCAATGGAGGCCACAACTGCATGGACATGAGAAAAAGCTTTTGCTACCGAAGCTATAATGGAACCACT
TGTGAGAATGAGTTGCCTTTCAATGTGACAAAAAGGATGTGCTGCTGCACATATAATGTGGGCAAAGCC
TGGAACAAACCTTGTGAACCATGCCCAACTCCAGGAACAGCTGACTTTAAAACCATATGTGGAAATATT
CCTGGATTCACCTTTGACATTCACACAGGAAAAGCTGTTGACATTGATGAATGTAAAGAGATTCCAGGC
ATTTGTGCAAATGGTGTGTGCATTAACCAGATTGGCAGTTTCCGCTGTGAATGCCCTACAGGATTCAGT
TACAATGACCTGCTGTTGGTTTGTGAAGATATAGATGAGTGCAGCAATGGTGATAATCTCTGCCAGCGG
AATGCAGACTGCATCAATAGTCCTGGTAGTTACCGCTGTGAATGTGCCGCGGGTTTCAAACTTTCACCC
AATGGGGCCTGTGTAGATCGCAATGAATGTTTAGAAATTCCTAACGTTTGCAGTCATGGCTTGTGTGTT
GATCTGCAAGGAAGTTACCAGTGCATCTGCCACAATGGCTTTAAGGCTTCTCAGGACCAGACCATGTGC
ATGGATGTTGATGAGTGCGAGCGGCATCCATGTGGAAATGGAACTTGTAAAAACACCGTTGGATCCTAT
AACTGTCTGTGCTACCCAGGGTTTGAACTCACTCATAATAATGATTGCCTGGACATAGATGAGTGCAGT
TCCTTTTTTGGTCAGGTGTGCAGAAATGGACGTTGTTTTAATGAAATTGGTTCTTTCAAGTGTCTATGT
AACGAAGGTTATGAACTTACCCCAGATGGCAAAAACTGTATAGACACTAATGAGTGTGTCGCCCTTCCC
GGCTCTTGCTCTCCTGGTACCTGTCAGAATTTGGAGGGATCCTTCAGATGCATCTGTCCCCCAGGGTAT
GAAGTAAAAAGCGAGAACTGCATTGATATAAATGAATGTGATGAAGATCCCAACATTTGTCTTTTTGGT
TCCTGTACTAATACTCCAGGGGGCTTCCAGTGCCTCTGCCCCCCTGGCTTTGTACTATCTGATAATGGA
CGGAGATGCTTTGATACTCGCCAGAGCTTCTGCTTCACAAATTTTGAAAATGGAAAGTGTTCTGTACCC
AAAGCTTTCAACACCACAAAAGCAAAATGCTGCTGTAGTAAGATGCCAGGAGAGGGCTGGGGGGACCCC
TGTGAGCTGTGCCCCAAAGACGATGAAGTTGCATTTCAGGATTTGTGTCCATATGGCCATGGAACTGTC
CCTAGTCTTCATGATACACGTGAAGATGTCAATGAGTGTCTTGAGAGCCCAGGCATTTGTTCAAATGGT
CAATGTATCAACACCGACGGATCTTTTCGCTGTGAATGTCCAATGGGCTACAACCTTGACTACACTGGA
GTACGCTGTGTGGATACTGATGAGTGTTCAATCGGCAATCCGTGTGGAAATGGTACATGCACCAATGTT
ATTGGGAGTTTTGAATGCAATTGCAATGAAGGCTTTGAGCCAGGGCCCATGATGAATTGTGAAGATATC
AACGAATGTGCCCAGAACCCACTGCTGTGTGCTTTCCGCTGCATGAACACTTTTGGGTCCTATGAATGC
ACGTGCCCGATTGGCTATGCCCTCAGGGAAGATCAAAAGATGTGCAAAGATCTGGATGAATGTGCTGAA
GGGTTACACGACTGTGAATCTAGGGGCATGATGTGTAAGAATCTAATCGGCACCTTCATGTGCATCTGC
CCTCCTGGAATGGCCCGAAGGCCCGATGGAGAAGGCTGTGTAGATGAAAATGAATGCAGGACCAAGCCA
GGAATCTGTGAAAATGGACGTTGTGTTAACATTATTGGAAGCTATAGATGTGAGTGTAATGAAGGATTC
CAGTCAAGTTCTTCAGGCACTGAATGCCTTGACAATCGACAGGGTCTCTGCTTTGCAGAGGTACTGCAG
ACAATATGTCAAATGGCATCCAGTAGTCGCAATCTCGTCACTAAGTCAGAATGCTGCTGTGATGGTGGG
CGAGGCTGGGGCCACCAGTGCGAGCTTTGCCCACTTCCTGGAACTGCCCAGTACAAAAAGATATGTCCT
CATGGCCCAGGATATACAACTGATGGAAGAGATATTGATGAATGTAAGGTAATGCCAAACCTCTGCACC
AATGGTCAGTGCATCAATACCATGGGCTCATTCCGATGCTTCTGCAAGGTTGGCTACACCACAGACATC
AGTGGAACCTCTTGTATAGACCTTGATGAATGCTCCCAGTCCCCGAAACCATGCAACTACATCTGCAAG
AACACTGAGGGGAGTTATCAGTGTTCATGTCCGAGGGGGTATGTCCTGCAAGAGGATGGAAAGACATGC
AAAGACCTTGATGAATGTCAAACAAAGCAGCATAACTGCCAGTTCCTCTGTGTCAACACCCTGGGGGGG
TTTACCTGTAAATGTCCACCTGGTTTCACACAGCATCACACTGCTTGTATCGACAACAACGAATGTGGG
TCTCAACCTTCGCTTTGTGGAGCAAAGGGAATCTGTCAAAACACTCCAGGCAGTTTCAGCTGTGAATGC
CAAAGAGGGTTCTCTCTTGATGCCACCGGACTGAACTGTGAAGATGTTGATGAATGTGATGGGAACCAC
AGGTGCCAACACGGCTGCCAGAACATCCTGGGTGGCTACAGATGTGGCTGCCCCCAAGGCTACATCCAG
CACTACCAGTGGAATCAGTGTGTCGATGAGAATGAATGCTCCAATCCCAATGCCTGTGGCTCTGCTTCC
TGCTACAACACCCTGGGGAGTTACAAGTGCGCCTGCCCCTCGGGGTTCTCCTTCGACCAGTTCTCCAGT
GCCTGCCACGACGTGAATGAGTGCTCGTCCTCCAAGAACCCCTGCAATTACGGCTGCTCTAACACGGAG
GGGGGCTACCTCTGTGGCTGCCCCCCTGGGTATTACAGAGTGGGACAAGGCCACTGTGTCTCAGGAATG
GGATTTAACAAGGGGCAGTACCTGTCACTGGATACAGAGGTCGATGAGGAAAATGCTCTGTCCCCAGAA
GCATGCTACGAGTGCAAAATCAACGGCTATTCTAAGAAAGACAGCAGGCAGAAGAGAAGTATTCATGAA
CCTGATCCCACTGCTGTTGAACAGATCAGCCTAGAGAGTGTCGACATGGACAGCCCCGTCAACATGAAG
TTCAACCTCTCCCACCTCGGCTCTAAGGAGCACATCCTGGAACTAAGGCCCGCCATCCAGCCCCTCAAC
AACCACATCCGTTATGTCATCTCTCAAGGGAACGATGACAGCGTCTTCCGCATCCACCAAAGGAATGGG
CTCAGCTACTTGCACACGGCCAAGAAGAAGCTCATGCCCGGCACATACACACTGGAAATCACTAGCATC
CCTCTCTACAAGAAGAAGGAGCTTAAGAAACTGGAAGAGAGCAATGAGGATGACTACCTCCTAGGGGAG
CTTGGGGAGGCTCTCAGAATGAGGCTGCAGATTCAGCTCTATTAA

ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGAT
TACAAGGATGACGACGATAAG
GTTTAAACGGCCGGC
Restriction Sites SgfI-MluI     
ACCN NM_001999
Insert Size 8739 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 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 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_001999.3
RefSeq Size 10724 bp
RefSeq ORF 8739 bp
Locus ID 2201
UniProt ID P35556
Domains EGF_CA, TB, EGF, EGF
Protein Families Druggable Genome, Transmembrane
MW 314.8 kDa
Gene Summary The protein encoded by this gene is a component of connective tissue microfibrils and may be involved in elastic fiber assembly. Mutations in this gene cause congenital contractural arachnodactyly. [provided by RefSeq, Jul 2008]
*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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