Tjp1 (NM_001163574) Mouse Untagged Clone

CAT#: MC224825

Tjp1 (untagged) - Mouse tight junction protein 1 (Tjp1), transcript variant 2, (10ug)


  "NM_001163574" in other vectors (2)

Reconstitution Protocol

USD 1,558.00

6 Weeks*

Size
    • 10 ug

Product Images

Frequently bought together (3)
TurboFectin Transfection Reagent (1 mL in 1 vial)
    • 1 ml in 1 vial

USD 507.00


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

USD 160.00


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

USD 59.00

Other products for "Tjp1"

Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Symbol Tjp1
Synonyms ZO1
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC224825 representing NM_001163574
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGTCCGCCAGGGCCGCGGCCGCTAAGAGCACAGCAATGGAGGAAACAGCTATATGGGAACAGCACACAG
TGACGCTTCACAGGGCTCCTGGGTTTGGATTTGGAATTGCAATCTCTGGTGGAAGAGATAATCCTCATTT
TCAGAGTGGGGAAACCTCCATAGTGATTTCTGATGTGTTAAAAGGAGGGCCAGCTGAAGGACAGCTACAG
GAAAATGACCGAGTTGCAATGGTTAACGGAGTTTCAATGGATAACGTTGAACATGCTTTTGCTGTTCAGC
AGCTAAGGAAGAGTGGGAAAAACGCAAAAATTACTATCCGAAGGAAGAAGAAAGTTCAGATCCCTGTAAG
TCACCCAGATCCTGAGCCGGTGTCTGATAATGAAGACGATAGTTATGACGAAGAAGTGCATGACCCAAGA
GCTGGCCGCGGTGCTTTAGCGAACAGAAGGAGCGAGAAGAGCTGGGCAAGGGATAGGAGTGCAAGCAGGG
AGAGGAGCCTGTCCCCTCGCTCGGACAGGCGGTCCGTGGCCTCCAGTCAGCCCGCAAAGCCCACCAAGGT
CACACTGGTGAAGTCTCGGAAAAATGAAGAATATGGTCTTCGATTGGCCAGCCATATATTTGTAAAGGAA
ATTTCACAAGATAGTTTGGCAGCAAGAGATGGTAACATTCAAGAAGGGGATGTTGTCTTGAAGATAAATG
GTACTGTGACAGAAAATATGTCATTGACAGATGCAAAAACACTGATAGAAAGGTCTAAAGGCAAGTTAAA
AATGGTAGTGCAAAGAGATGAGCGGGCTACCTTACTGAACGTCCCTGACCTTTCGGATAGTATCCATTCT
GCTAATGCCTCGGAAAGAGATGACATTTCAGAAATTCAGTCACTAGCATCAGACCATTCAGGTCGCTCGC
ATGACAGGCCACCCCGCCGCAGCCAGTCACGATCTCCTGACCAACGTTCAGAGCCCTCCGATCATTCCAC
GCAGTCTCCACAGCAGCCCAGCAATGGCAGTCTCCGGAGCAGAGAGGAAGAGCGAATGTCTAAACCTGGG
GCCATCTCAACTCCTGTAAAACATGTAGACGATCATCCACCCAAAGCAGTGGAAGAAGTTACAGTTGAGA
AAAATGAGAAGCAGACGCCCACTCTTCCAGAACCGAAACCTGTGTATGCTCAAGTTGGACAACCAGATGT
GGATTTACCCGTCAGCCCTTCTGATGGTGCTCTGCCTAATTCAGCTCATGAAGACGGGATACTTAGGCCC
AGCATGAAACTGGTAAAATTCAGAAAAGGAGATAGTGTGGGTTTGCGACTAGCTGGTGGAAATGATGTCG
GAATATTTGTAGCTGGCGTTCTAGAAGATAGCCCTGCAGCCAAAGAAGGCTTAGAGGAAGGTGATCAAAT
TCTCAGGGTGAACAATGTAGATTTCACAAATATCATAAGGGAAGAGGCCGTCCTTTTCCTCCTTGACCTC
CCTAAAGGTGAAGAAGTGACCATACTGGCTCAGAAGAAGAAGGACGTTTATCGCCGCATTGTAGAATCAG
ATGTAGGAGATTCATTCTATATTAGAACGCATTTTGAATATGAAAAAGAATCTCCTTACGGACTTAGTTT
TAACAAAGGAGAGGTGTTCCGGGTCGTGGATACTTTATACAATGGAAAGCTGGGCTCTTGGCTTGCCATT
CGAATTGGCAAAAATCATAAGGAGGTAGAACGAGGCATCATCCCTAATAAGAACAGAGCTGAACAGTTAG
CCAGTGTACAGTACACACTTCCAAAGACAGCGGGTGGTGATCGGGCAGACTTCTGGAGGTTTCGAGGTCT
TCGCAGCTCCAAGAGAAATCTTCGAAAAAGCAGAGAGGACTTGTCAGCTCAGCCAGTTCAAACTAAGTTC
CCAGCTTATGAAAGGGTTGTTCTTCGAGAAGCTGGATTCCTAAGACCTGTAACCATCTTTGGACCAATAG
CTGATGTTGCCAGAGAAAAGTTGGCAAGAGAGGAGCCAGATATCTATCAGATTGCAAAAAGTGAACCACG
AGATGCTGGGACTGACCATCGTAGCTCTGGCATCATTCGCCTTCATACAATAAAGCAAATCATAGATCAG
GATAAACATGCTTTATTAGATGTAACGCCAAATGCGGTTGATCGTCTTAATTATGCGCAGTGGTATCCAA
TTGTTGTGTTCCTTAACCCTGACTCTAAGCAAGGTGTAAAAACAATGAGGATGAGGTTGTGTCCGGAGTC
TCGGAAAAGCGCCAGGAAGCTATATGAACGCTCTCATAAGCTTCGTAAGAACAATCACCATCTCTTCACA
ACTACAATTAACTTAAACTCAATGAATGATGGTTGGTACGGTGCCCTGAAAGAAGCGATTCAGCAGCAAC
AGAACCAGCTGGTGTGGGTCTCTGAGGGGAAGGCGGATGGTGCTACAAGTGATGACCTTGATTTGCATGA
CGATCGTCTGTCCTACCTGTCAGCCCCAGGTAGTGAGTACTCAATGTATAGCACGGACAGTAGACACACT
TCTGACTATGAAGACACAGATACAGAAGGCGGGGCCTACACTGATCAAGAACTAGATGAAACTCTTAATG
ATGAGGTGGGGACTCCCCCGGAGTCTGCCATTACACGGTCCTCTGAGCCTGTAAGAGAGGATTCCTCTGG
AATGCATCATGAAAACCAGACATACCCTCCTTACTCACCACAAGCGCAGCCACAAGCTATTCATAGAATA
GACTCCCCTGGACTTAAGCCAGCCTCTCAACAGGTGTACAGGAAGGAGCCGTATTCTGAAGAAATGATGA
GACAAAACCATATTTTAAAACAACCAGCTCTTGGTCACCCAGGGCAGAGGCCAGATAAAGAGCCAAATCT
AGCCTATGAACCCCAACTTCCATATATAGAAAAACAAGCCAGCAGAGACCTTGAGCAGCCGTCATACAGG
TATGAGGTCTCAAGCTACACAGACCAGTTTTCTCGGAACTATGACCATCGCCTACGGTTTGAAGATCGAA
TCCCTACCTATGAAGACCAGTGGTCATATTATGATGACAAACAGCCCTACCAACCTCGGCCTTTTGAGAA
TCAGCATCCCCGAGACCTGGACTCCAGACAACATCCCGAAGAGGCTTCAGAACGAGGTTATTTCCAGCGT
TTTGAAGAGCCAGCCCCTCTGTCGTACGACAGTAGAACACGCTATGAGCAGCTGCCTCGAACCTCTACTC
TACGACATGAAGAGCAGCCAGCCCCTGCATATGAGGTGCACAACAGGTACAGGCCAGAGGCACAGCCCTA
TTCTTCAACAGGCCCTAAGTCATCTGAGCCCAAGCAGTACTTTGACCAGTACCCGCGAAGTTATGAGCAA
GTTCCACCACCAGGCTTTACCTCCAAAACAGGCCATTACGAGCCTCTCCATGGTGCTGCAGTTGTCCCTC
CTCTGATACCTTCCTCTCAACAAAAGCCAGAAGTCCTGCCCTCGGCTACCAAACCACAGCCTCCACCCCC
AACCCTAACTGAGGAGGAGGAGGATCCAGCAATGAAACCACAGTCTGTGCTCACCAGAGTCAAAATGTTT
GAAAACAAAAGATCTGCGTCTTTGGAGAACAAGAAAGATGTGAATGACACTGCCAGCTTTAAGCCTCCGG
AAGTAGCATCTAAACCTCCAGGTGCTTCTCTTGCTGGCCCTAAACCTGTCCCTCAGAGTCAGTTTAGTGA
GCACGACAAAACGCTCTACAGGCTCCCAGAGCCTCAGAAACCTCAAGTGAAGCCACCCGAAGATATTGTT
CGATCAAATCATTACGACCCTGAAGAGGATGAAGAATATTACCGGAAACAGCTCTCCTACTTTGACCGAA
GAAGTTTTGAGAGCAAGCCTTCTGCACATCTTCCTGCTGGCCATCACTCAGAGCCTGCTAAGCCAGTCCA
TTCTCAGAGCCAGCCCAACTTCTCTAGTTACTCTTCAAAGGGAAAACCCGAAACTGATGCTGTGGATAGA
TCATTCAGTGAGAAACGTTATGATCCAGCCCAGGCCACGCCTCCTCCTCCTCCGTTGCCCTCACAGTACA
GCCAGCCAGCTCCACCTCTGTCCAGCTCTTCTCTCCACATACATTCCAAGGGCGCCCAGGGTGAAGGCAA
CTCAGTATCATTGGATTTTCAGAACTCATATATGTCCAAACCAGACCCACCCCCATCTCAGAGTAAACCA
GCAACTTTCAGACCACCAACTCGAGAAGACCCCCCTCAGACTTTCTATCCGCAGAAAAGTTTCCCAGACA
AAGCTCCAGTTAACGGAGCTGAGCAGACTCAGAAAACCATCACTCCGGTGTACAATCGATTCACACCAAA
GCCGTACACAAGTTCTGCCCGGCCATTTGAACGCAAATTTGAAAGTCCGAAGTTCAACCATAATCTTCTG
CCAAGTGAAACTGTACATAAACCTGAATTGTCTTCAAAAACTCCCACTTCCCCAAAAACTCTTATGAAAG
CTCATAGTTCAACACAGCCTCCAGAGTTTGACAGTGGAGTTGAAACTTTCTCTGTTCACACAGATAAGCC
TAAATATCAAATGAATAATATCAGCACCATGCCTAAAGCTGTCCCTGTGAGTCCTTCAGCTGTGGAAGAA
GATGAAGATGAGGATGGTCATACTGTAGTGGCTACAGCTCGTGGCATTTTTAACAGCAATGGTGGTGTGT
TGAGTTCCATAGAAACCGGTGTTAGTATAATTATCCCACAAGGAGCCATTCCTGAAGGAATTGAGCAAGA
AATCTATTTCAAAGTCTGCAGAGACAATAGCATTCTCCCACCTTTAGATAAAGAGAAAGGTGAAACTCTG
CTGAGCCCCCTAGTGATGTGTGGGCCCCATGGCCTCAAGTTCCTGAAGCCCGTGGAGCTACGCTTGCCAC
ACTGTGCGTCCATGACTCCTGACGGTTGGTCTTTTGCTCTAAAATCATCCGACTCCTCGTCGGGTGACCC
TAAAACCTGGCAAAACAAGTGTCTTCCTGGAGATCCGAATTACCTTGTTGGAGCCAACTGTGTTTCTGTC
CTGATTGACCACTTTTAA


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_001163574
Insert Size 5058 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.
Reference Data
RefSeq NM_001163574.1, NP_001157046.1
RefSeq Size 6891 bp
RefSeq ORF 5058 bp
Locus ID 21872
Cytogenetics 7 35.02 cM
Gene Summary Tjp1, TjpP2, and Tjp3 are closely related scaffolding proteins that link tight junction (TJ) transmembrane proteins such as claudins, junctional adhesion molecules, and occludin to the actin cytoskeleton (By similarity). The tight junction acts to limit movement of substances through the paracellular space and as a boundary between the compositionally distinct apical and basolateral plasma membrane domains of epithelial and endothelial cells. Necessary for lumenogenesis, and particularly efficient epithelial polarization and barrier formation (By similarity). Plays a role in the regulation of cell migration by targeting Cdc42bpb to the leading edge of migrating cells (By similarity). Plays an important role in podosome formation and associated function, thus regulating cell adhesion and matrix remodeling (By similarity). With Tjp2 and TJjp3, participates to the junctional retention and stability of the transcription factor Dbpa, but is not involved in its shuttling to the nucleus (By similarity).[UniProtKB/Swiss-Prot Function]
Transcript Variant: This variant (2) lacks an in-frame coding exon in the middle region but has an additional in-frame segment in the 3' coding region, as compared to variant 1. The resulting isoform (2) is shorter than isoform 1.

Other Versions

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