Prrc2c (NM_001081290) Mouse Untagged Clone

CAT#: MC225420

Prrc2c (untagged) - Mouse proline-rich coiled-coil 2C (Prrc2c), (10ug)


  "NM_001081290" in other vectors (2)

Reconstitution Protocol

USD 2,537.00

12 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 "Prrc2c"

Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Symbol Prrc2c
Synonyms 1810043M20Rik; 9630039I18Rik; A630006J20; Bat2d; Bat2d1; Bat2l2; E130112L15Rik; mKIAA1096; Prrc3
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC225420 representing NM_001081290
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGTCGGAGAAGTCAGGCCAGAGCACAAAAGCCAAGGATGGGAAGAAGTATGCAACACTCAGTTTGTTTA
ACACTTACAAAGGAAAGTCCTTGGAAACACAGAAGACTACAGTTGCAGCTCGACATGGGTTACAAAGTCT
TGGAAAAGTTGGTATTTCACGGCGAATGCCCCCACCTGCTAACCTTCCAAGTCTCAAAGCAGAGAACAAA
GGCAATGATCCTAATGTGAATATTGTGCCCAAAGATGGGACAGGATGGGCATCGAAACAAGAGCAACATG
AAGAAGAAAAAGCACCAGAAGTGTCACCAGCACAGCCCAAACCTGGGGTTGCAGCTCCCCCAGAAGTAGC
ACCTGCTCCCAAATCATGGGCCAGTAACAAGCAAGGTGGGCAAGGAGATGGAATCCAAGTGAATAGTCAA
TTTCAGCAGGAATTTCCCAGTCTGCAGGCAGCTGGAGATCAGGAAAAAAAAGAAAAGGAAGCAAATGATG
AAAACTATGGACCTGGACCCAGTTTACGCCCTCCAAATGTTGCTTGCTGGAGAGATGGTGGTAAGTCTGC
TGGGTCACCTTCCTCTGATCAGGATGAAAAGCAACTTGGCCAGGATGAAAGCACGGCTATAACATCAGAA
CAAAATGATATTCTCAAAGTGGTAGAAAAGAGAATAGCTTGTGGTCCTCCACAGGCCAAACTGAATGGAC
AGCAACCTGCACTTGCTTCTCAGTATAGAGCTATGATGCCTCCATATATGTTTCAGCAGTACCCAAGGAT
GGCATATCCTCCTCTACATGGTCCCATGAGGTTCCCACCTTCATTATCAGAAGCAAACAAAAGCCTTCGA
GGAAGAGGCCCTCCTCCTTCTTGGGCTTCTGAACCTGAACGCCCATCCATCCTTAGTGCATCCGAACTGA
AGGAGCTCGATAAATTTGATAACCTAGATGCTGAAGCAGATGAAGGTTGGGCAGGTGCTCAGATGGAAGT
AGATTACACAGAACAGCTGAACTTCAGTGATGATGATGAGCAAGGAAGTACTAGTCCTAAAGAGAGCAGC
AGTGAGGATCAAACTGCAAAAACACCTGAAAGCACAGAAAACCGAAAAGAAGTAGATGAAGCTTCCAGCA
CTAAATCATCTTCTCAGATACCTGCTCAGCCTCCAGTCACAAAAAGTCCTTATGGGAAGGGACCACCATT
TAATCAGGAACGTGGCCCATCTTCACACTTGCCACCACCTCCCAAGTTGCTTGCACAACAGCATCCCCCA
CCTCCAGATCGACAAATACCTGGAAGACAAGGCCCCTTTCCCTCCAAGCCTCCAGTACCTGATAACGATG
AAATATGGAAGCAAAGACGAAAACAACAGTCTGAAATATCTGCAGCAGTAGAGCGTGCTCGTAAACGCCG
TGAGGAGGAAGAGCGAAGGATGGAGGAACAGAGGAAGGCAGCGTGCGCAGAGAAATTGAAGCAGCTGGAT
GAGAAGCTCGGGATCATAGAAAAGCAGCCATCTCCAGAGGAACTTAGAGAAAGGGAGAGAGAGAAGGAGC
GGGAGAGAGAACTTGAAAAAGAGAAAGAGCGGGAGCTTGAGAAAGAGCAGGAAAAGCAGAGGGAAATGGA
GAGGGCAAGACAGCAAGAGAAAGAGTTAGAACAACAGAGAGAAAAGGAGCAGGAACTACAAAGGCTGAGA
GAACAGGAAAAGGAGGGCGAGCCAAAGGAACAGGAAAAAGAGGAAAAAGTTGAACCCCAAGAGCCTGTTG
TAGAGCCTGCGACAGAAAACCAAGAAAGTGAAAACAACTGCAAGAAAGAAGAAGAACCAATTTTCACTAG
GCAGGACAGCAATCGCAGTGAAAAGGAGACCACACAAGTGGTACAAGAAGCAGAACCTGAATCGGGGGCT
CAACCTCGACCTGGCTATTTCAAACAGTTTCAGAAATCATTGCCACCACGATTTCAGCGTCAGCAGGAGC
AGATGAAACAGCAACAGTGGCAGCAGCAGCAGCAGCAGCAGCAGCAAGGTGTGCTTCCACAGACTGTGCC
CTCACAGCCGTCTAATGGTTCAGTCCCTCCTCCACCACACAGACCCCTTTACCAGCCAATGCAACCCCAC
CCTCAACATCTGGCTTCTATGGGTTTTGACCCAAGGTGGCTCATGATGCAGTCCTATATGGATCCTCGAA
TGATATCAGGAAGGCCTGCTATGGACATTCCACCCATTCATCCTGGAATGATTCCTCCTAAGCCGTTAAT
CAGAAGAGACCAGATGGAAGGGTCACCTAATAGCTCTGAGTCATTTGAGCATATAGCTAGATCTGCAAGA
GATCATGGAATTTCACTTTCTGAACCTCGAATGATGTGGGGGTCAGATCCCTATCATGCTGAGCCTCAGC
AGGCAGCTACTCCCAAGTCTGCTGAAGAAACTGGGGATGCAAGGCCTGAAACTGCAATGGACCATGAGCA
TATGACTGCTGCTTATCCTGTAGAACATAGTCAGTTGGAAACTCATTCAAAAACGGACGTTGCTAGAGAC
TCAACTGAAACCGAAGAACAAAAGTTTTTAAGCAGATCACTGGAAGATGTAAAACCTCGCCATGTTGATA
CAAATACTCAGTCTGCTTGTTTTGATGTAATTGATCAGAAGAGCTTACCTACTTCTGCAGAAGAGCGGAT
CTCAGCGCTAGAAAGTCAACCTGCCCGAAAAAGAAGTGTTTCTCATGGATCTAACCATGCTCAGAATGCA
GAGGAACAAAGAAATGAGCCGTCTGTTAGCATACCTAAGGTTATCAACAGATGTATGGATTCCAAAGAAA
CTGTAGAAAAGCCAGAGGAGAAGCCAAGAAAAGATGGCTTTCTGCGATCTTCTGAAGGGCCTAAACCAGA
GAAAGTCTATAAATCTAAATCAGAAACTCGGTGGGGTCCAAGACCAAGCTCCAACAGAAGAGAAGAAGGT
AATGATAGGCCTGTGAGAAGGTCGGGTCCCATTAAAAAACCTGTACTTAGAGATATGAAAGAGGAGCGAG
AGCAGAGGAAGGAGAAAGAAGGTGAGAAGCTTGAGAAGGTCACTGAAAAAGTTGTTAAAGCAGAAAAGCC
AGAAAAGAAAGATCTTCCTCTTCCTCTCCCCCCTCCAGCACCAGCTCAACCTCAGCCACAGCCATTGGTT
TCACCACCAGTACAGCCAGAACCAGAGAAACCACCATCAACAGAAACATCAACTTTGACTCAGAAGCCAT
CTCAAGATGAGAAACCTTTGGAACCTGTTGGTAGTGTCCAGGTAGAACCTGTAGTTAAAACTGTAAACCA
GCAAAGCGTTGCAGCACCGACAGTCAAAGAAGAAAAGCCACCTGAGAAAGTCATTAACAAAGATGTTGGA
ATAGAAAGATCTCGCCCAGATTCTAGACTAGCAGTTAAGAAAGACTCATCTTTACCCACTAGGACCTATT
GGAAAGAAGCTAGAGATAGGGATTGGTTTCCAGACCAAGGATACAGAGGCCGAGGCAGAGGCGAGTATTA
CTCCAGAGGTCGGAGCTATAGAGGCTCTTATGGGGGTCGTGGCAGAGGTGGTAGAGGGCACACTCGTGAG
TATCCTCAGTATAGAGACAATAAGCCAAGAACAGAACATGTGCCTTCAGGACCTCTCAGACAACGAGAAG
AAAGCGAAACACGAAGTGAGAGTTCTGATTTTGAGGTTGTTCCCAAAAGAAGGCGACAGAGGGGTTCTGA
GACGGACACGGACAGTGAGGTTCATGAAAGTGCGAGTGACAAAGACAGTGTAAGCAAAGGGAAACTTCCC
AAAAGAGAGGAACGGCCTGAGAACAAAAAACCTGTCAAGCCTCAGTCTTCTTTTAAACCTGAAAACCACG
TCCGAATAGATAATCGGCCTTTAGAGAAACCTTACATAAGAGAGGAGGATAAATCTAAACCTGGTTTCCT
TCCCAAAGGGGAGCCTACAAGGCGTGGCAGAGGAGGAACATTCAGACGAGGTGGAAGGGATCCTGGAGGC
CGGCCATCACGTCCTGCCACCTTAAGAAGACCTGCTTATCGAGACAATCAGTGGAACACAAGGCAGGCAG
AACCTCCTAAACCTGAAGATGGAGAGCCACCAAGAAGACATGAGCAGTTTATGCCTATACCGGCAGATAA
ACGACCTCCAAAATTTGAGCGAAAATTTGACCCGGCTAGAGAGAGGCCCCGAAGGCAGCGACCTACCCGA
CCACCAAGGCAAGATAAGCCACCTCGATTTAGACGGCTGAGAGAGAGAGAGGCCGCTTCCAAGACAAGTG
AGGTGTTGGTACCCTCAAATGGCACAGCTAATAATGTTGTTCAAGAACCAGTTAATCCACCTGCGGACAT
TTCTGGAAATAAGACACCAGATTTGTCTAATCAGAATTCTTCAGATCAGGCAAATGAAGAGTGGGAAACA
GCCTCTGAAAGCAGTGATTTTAATGAGAGGCGAGAGAGGGACGAGAAGAAAAATGCTGATAAGAGTTCAC
AAGCAGTTGTAAAGGCTGGTGAAAGTGTTTTGCCTCCAAAAAGGGAAATAGCGAAGAGAAGTTTTTCTAG
TCAGAGACCTGGAGTTGATCGCCAGAATCGTCGTGGCAACAATGGCCCACCCAAATCAGGAAGGAATTTT
TCAGGTCCTAGGAATGAAAGAAGAAATGGCCCACCATCAAAAGGTGGGAAGAGAGGGCCATTTGATGACC
AGGCCTCAGGCACAGCTGGTGCTGACCCTGTCAGTGGTAACTCTGCACACCACCAAGAAGGTGTGCCTAA
TGGTGCAGGACAGAAGAATTCCAAGGATGCTGCTGGAAAAAAGAGGGAAGATACCAAACCGGGTCCTAAG
AAGCCAAAGGAGAAAGTAGATGCTCTGTCACAGTTTGACCTCAATAATTACGCAAGTGTTGTTATCATTG
ATGATCATCCTGAAGTAACTGTAATTGAAGACCCCCAGTCAAATCTGAATGATGATGGCTTTACTGAAGT
TGTATCTAAAAAACAGCAAAAGCGGTTACAGGATGAGGAACGCCGAAAGAAGGAAGAGCAAGTCGTACAG
GTATGGAGCAAAAAAAATATAGGTGAAAAAGGAAGAAGTCAGACTTCTAAGCTTCCTCCAAGGTTTGCCA
AAAAACAAGCTACTGGGACTCAGCAAATCCAAGCTCCACCCTCCGCGCCAGTTCCAGTGTCTTCCTCAGC
TCCAGGCCTAACAGCCCCAGCAGCTGCAGCTCCTGCCTCCACCCCAGCTCCAGTTCCCATTTTGGCATCA
GCCACCGCTCTAGTTCCAGTGTCAACCCCAGCTCCGGTTCTAACTTCATGCCCAGCTCCAGTTCCAACCT
CAGCCTCGGCTCCTGTTCCAGCATCCACTTCATCTCCAGTCACAGCCTCTTCCTCATCCCAACCATCAGT
TCCAGCTCCGACTCCTGTCTTGGCCTCAGCCTCAACTACAGTCTCTGTCCCTATTCTCACCTCGGCTTCC
ATTCCTATCCTTGCTTCAGCCCTAGCACCAGCTACTGTTTCTTCTCCAACCCCAGTGGTCTCAGCTACAG
CTGTGCCATCCATTTCAACACCAGCCGTCCCAGCCTCAGCCCCAACAGCCTCAGTTCCCCTTGCCCCAGC
CTCAGCTGCATCCACTGTCCCACCCCCGGCCTCGACAGTGCAGACCCAGACCCAGACCCAGACCCACAAA
CCAGTCCAGAGTCCACTTCCACCTTCAGCGCCATCTTCAAAGCAGCCACCACCCTCGATTAGATTACCCT
CAGCTCAGACGTCTAATGGCACAGACTTCGTAGCCGCTGGGAAGTCCATGCCCACTTCACAGTCCCATGG
CTCTCTAACAGCTGAGTTATGGGACAGCAAAGTGGCTGCTCCAGCTGTGCTGAATGACATTTCTAAAAAA
CTAGGTCCTATTAGTCCACCACAGCCACCTTCAGTCAGTGCGTGGAATAAGCCCTTAACATCATTTGGAT
CAGCAACTTCATCAGAGGGAACAAGAAATGGTCAAGAGAGTGGTGTTGAAATTGGAATTGACACAATTCA
GTTTGGTGCTCCGGCCTCAAACGGGAATGAAAATGAGGTGGTTCCTGTGCTTTCAGAGAAAGCAACTGAT
AAAGTTCCTGAACCTAAAGAGCAGCGGCAGAAGCAGCCTCGGGCAGGGCCCATTAAAGCTCAGAAGCTTC
CAGACTTGAGTCTGGTAGAAAACAAAGAACATAAACCTGGTCCCATTGGAAAGGAACGATCATTAAAAAA
TAGAAAAGTGAAAGATGCCCAGCAGGTCGAGCCAGAAGGACAAGAGAAACCCAGCCCAGCTGTGGTCAGA
AGCACTGATCCTGAAACAGCAAAAGAAACCAAAGCAGTCTCCGAAATGTCTGCTGAAATTGGGGCGATGA
TCTCAGTCTCCTCTGCAGAGTATGGCTCTGATGCAAAGGAGTCTGTAACAGACTACACCACACCTTCCTC
TTCTCTGCCTAACACTGTGGCTACTAATAATGCAAAGATGGAGGATACTTTAGTTAATAATGTGCCCCTG
CCCAACACCCTTCCCCTCCCTAAGAGGGAGACTATACAACAAAGCTCCAGCCTAACTTCAGTTCCTCCCA
CTACTTTCAGCCTCACCTTTAAGATGGAGTCTGCACGGAAGGCATGGGAGAATTCTCCAAATCTACGAGA
AAAGGGGTCCCCAGTAACTTCTACAGCACCTCCCATTGTGAGCGGAGTCAGCAGCAGTGCCAGTGGACCA
AGCACTGCTAATTACAGCTCCTTTTCCAGTGCATCAATGCCGCAGATCCCAGTTGCGTCAGTCACTCCTA
CAGCATCACTATCAGGAGCTGGTACTTACACTACCTCTTCATTGAGTACAAAATCTACAACCACTTCGGA
CCCTCCGAATATTTGTAAAGTAAAACCCCAACAATTACAGACCAGCAGCCTACCTTCTGCAAGTCACTTT
TCACAGTTGAGCTGTATGCCTTCCCTCATTGCACAGCAGCAGCAGAGCCCGCAGGTTTATGTGTCTCAGT
CTGCAGCAGCTCAAATCCCAGCCTTCTATATGGATACAAGTCATTTATTCAATACGCAGCATGCGCGATT
GGCTCCACCATCCCTGGCTCAGCAGCAGGGCTTCCAACCTGGTCTCTCGCAGCCGACATCAGTTCAGCAG
ATTCCAATCCCTATCTATGCCCCACTGCAAGGGCAGCACCAAGCCCAGCTGAGTTTGGGGGCTGGGCCTG
CTGTTTCACAGGCTCAGGAATTATTCAGTTCTTCAATTCAACCATACAGATCGCAGCCAGCCTTTATGCA
GAGCAGTCTTTCCCAGCCTTCCGTGGTCCTCTCTGGTACAGCTATCCACAACTTCCCAGCTGTCCAGCAC
CAGGAACTTGCCAAGGCACAATCAGGTCTTGCCTTTCAGCAGACTTCAAATCCTCAGCCCATCCCTATAC
TGTATGACCATCAGCTGGGCCAGGCATCAGGACTAGGAAGTTCTCAGCTGATTGATACACATCTTCTTCA
GGCAAGAGCAAATCTTACTCAAGCCTCAAATCTTTACTCTGGACAAGTACAGCAGCCTGGTCAGACAAAT
TTTTATAACACTGCCCAATCCCCCAGTGCTCTCCAGCAGGTTACAGTACCTTTACCAGCATCCCAGCTTT
CCTTGACGAATTTTGGATCTACAGGACAACCTCTGATTGCTTTACCTCAGACACTTCAGCCCCAGTTACA
GCACACGACCCCACAAGCACAGGCTCAGAGTTTGAGCCGTCCTGCCCAAGTAAGCCAGCCTTTCCGAGGA
TTAATCCCTGCTGGAACACAGCATAGCATGATGGCGACCACAGGAAAAATGTCTGAAATGGAACTAAAAG
CCTTTGGGAGTGGCATTGATATCAAACCAGGAACACCTCCAATTGGTGGTCGAAGCACCACGCCAACATC
TAGTCCATTCAGGGCTACATCAACAAGTCCAAACAGCCAGTCTAGCAAAATGAACAGTGTTGTGTATCAG
AAACAGTTCCAGTCAGCCCCCGCCACAGTGCGCATGGCACAGCCGTTTCCTGCACAGTTTGCACCCCAGA
TTCTCTCTCAGCCTAACCTGGTCCCTCCATTGGTAAGAGCCCCACATACTAACACCTTCCCAGCGCCTGT
ACAGAGGCCACCAATGGCACTGGCCAGTCAGATGCCTCCTCCGCTGACCACAGGCCTCATGAGCCATGCT
CGTTTGCCACATGTAGCCAGGGGTCCTTGTGGATCACTGTCTGGAGTCAGAGGTAATCAGGCCCAGGCTG
CGTTGAAGGCTGAACAAGATCTGAAGGCAAAGCAGAGAGCAGAGGTTCTTCAGTCCACGCAGCGGTTCTT
CTCTGAACAGCAACAGAACAAACAGATAGGAGGCAAAACCCAGAGAGTGGACAGTGATACAAGTAACCCT
GAAACGCTGAGTGACCCTCCTGGCACCTGTCCGGAAAAAGTAGAAGAAAAGCCACCCCCTGCACCCACCA
TAACCACCAAACCTGTTAGAACTGGACCAATCAAACCTCAGGCCATCAAAACCGAAGAAACAAAATCGTA
A


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_001081290
Insert Size 8541 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_001081290.1, NP_001074759.1
RefSeq Size 10444 bp
RefSeq ORF 8541 bp
Locus ID 226562
UniProt ID Q3TLH4
Cytogenetics 1
Gene Summary Required for efficient formation of stress granules.[UniProtKB/Swiss-Prot Function]

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