TRPM2 (NM_003307) Human Untagged Clone

CAT#: SC303292

TRPM2 (untagged)-Human transient receptor potential cation channel, subfamily M, member 2 (TRPM2), transcript variant 1



  "NM_003307" in other vectors (4)

CNY 10,288.00


货期*
现货

规格
    • 10 ug

Cited in 1 publication.

Product images

经常一起买 (4)
Rabbit Polyclonal Anti-TRPM2 Antibody
    • 100 ul

CNY 5,250.00


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 EREG1; KNP3; LTrpC-2; LTRPC2; NUDT9H; NUDT9L1; TRPC7
Vector pCMV6-XL6
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>SC303292 representing NM_003307.
Blue=Insert sequence Red=Cloning site Green=Tag(s)

GAATTCGCCCTTGTAGCGAGCTGGAGAGAGGACTGTCCTGAGGGCAGCAGGCCTGGTTGCAGCTGGCGT
GGGGGTCTCAGAATGGAGCCCTCAGCCCTGAGGAAAGCTGGCTCGGAGCAGGAGGAGGGCTTTGAGGGA
CTGCCCAGAAGGGTCACTGACCTGGGGATGGTCTCCAATCTCCGGCGCAGCAACAGCAGCCTCTTCAAG
AGCTGGAGGCTACAGTGCCCCTTCGGCAACAATGACAAGCAAGAAAGCCTCAGTTCGTGGATTCCTGAA
AACATCAAGAAGAAAGAATGCGTGTATTTTGTGGAAAGTTCCAAACTGTCTGATGCTGGGAAGGTGGTG
TGTCAGTGTGGCTACACGCATGAGCAGCACTTGGAGGAGGCTACCAAGCCCCACACCTTCCAGGGCACA
CAGTGGGACCCAAAGAAACATGTCCAGGAGATGCCAACCGATGCCTTTGGCGACATCGTCTTCACGGGC
CTGAGCCAGAAGGTGAAAAAGTACGTCCGAGTCTCCCAGGACACGCCCTCCAGCGTGATCTACCACCTC
ATGACCCAGCACTGGGGGCTGGACGTCCCCAATCTCTTGATCTCGGTGACCGGGGGGGCCAAGAACTTC
AACATGAAGCCGCGGCTGAAGAGCATTTTCCGCAGAGGCCTGGTCAAGGTGGCTCAGACCACAGGGGCC
TGGATCATCACAGGGGGGTCCCACACCGGCGTCATGAAGCAGGTAGGCGAGGCGGTGCGGGACTTCAGC
CTGAGCAGCAGCTACAAGGAAGGCGAGCTCATCACCATCGGAGTCGCCACCTGGGGCACTGTCCACCGC
CGCGAGGGCCTGATCCATCCCACGGGCAGCTTCCCCGCCGAGTACATACTGGATGAGGATGGCCAAGGG
AACCTGACCTGCCTAGACAGCAACCACTCTCACTTCATCCTCGTGGACGACGGGACCCACGGCCAGTAC
GGGGTGGAGATTCCTCTGAGGACCAGGCTGGAGAAGTTCATATCGGAGCAGACCAAGGAAAGAGGAGGT
GTGGCCATCAAGATCCCCATCGTGTGCGTGGTGCTGGAGGGCGGCCCGGGCACGTTGTACACCATCGAC
AACGCCACCACCAACGGCACCCCCTGTGTGGTTGTGGAGGGCTCGGGCCGCGTGGCCGACGTCATTGCC
CAGGTGGCCAACCTGCCTGTCTCGGACATCACTATCTCCCTGATCCAGCAGAAACTGAGCGTGTTCTTC
CAGGAGATGTTTGAGACCTTCACGGAAAGCAGGATTGTCGAGTGGACCAAAAAGATCCAAGATATCGTC
CGGAGGCGGCAGCTGCTGACTGTCTTCCGGGAAGGCAAGGATGGTCAGCAGGACGTGGATGTGGCCATC
TTGCAGGCCTTGCTGAAAGCCTCACGGAGCCAAGACCACTTTGGCCACGAGAACTGGGACCACCAGCTG
AAACTGGCAGTGGCATGGAATCGCGTGGACATTGCCCGCAGTGAGATCTTCATGGATGAGTGGCAGTGG
AAGCCTTCAGATCTGCACCCCACGATGACAGCTGCACTCATCTCCAACAAGCCTGAGTTTGTGAAGCTC
TTCCTGGAGAACGGGGTGCAGCTGAAGGAGTTTGTCACCTGGGACACCTTGCTCTACCTGTACGAGAAC
CTGGACCCCTCCTGCCTGTTCCACAGCAAGCTGCAGAAGGTGCTGGTGGAGGATCCCGAGCGCCCGGCT
TGCGCGCCCGCGGCGCCCCGCCTGCAGATGCACCACGTGGCCCAGGTGCTGCGGGAGCTGCTGGGGGAC
TTCACGCAGCCGCTTTATCCCCGGCCCCGGCACAACGACCGGCTGCGGCTCCTGCTGCCCGTTCCCCAC
GTCAAGCTCAACGTGCAGGGAGTGAGCCTCCGGTCCCTCTACAAGCGTTCCTCAGGCCATGTGACCTTC
ACCATGGACCCCATCCGTGACCTTCTCATTTGGGCCATTGTCCAGAACCGTCGGGAGCTGGCAGGAATC
ATCTGGGCTCAGAGCCAGGACTGCATCGCAGCGGCCTTGGCCTGCAGCAAGATCCTGAAGGAACTGTCC
AAGGAGGAGGAGGACACGGACAGCTCGGAGGAGATGCTGGCGCTGGCGGAGGAGTATGAGCACAGAGCC
ATCGGGGTCTTCACCGAGTGCTACCGGAAGGACGAAGAGAGAGCCCAGAAACTGCTCACCCGCGTGTCC
GAGGCCTGGGGGAAGACCACCTGCCTGCAGCTCGCCCTGGAGGCCAAGGACATGAAGTTTGTGTCTCAC
GGGGGCATCCAGGCCTTCCTGACCAAGGTGTGGTGGGGCCAGCTCTCCGTGGACAATGGGCTGTGGCGT
GTGACCCTGTGCATGCTGGCCTTCCCGCTGCTCCTCACCGGCCTCATCTCCTTCAGGGAGAAGAGGCTG
CAGGATGTGGGCACCCCCGCGGCCCGCGCCCGTGCCTTCTTCACCGCACCCGTGGTGGTCTTCCACCTG
AACATCCTCTCCTACTTCGCCTTCCTCTGCCTGTTCGCCTACGTGCTCATGGTGGACTTCCAGCCTGTG
CCCTCCTGGTGCGAGTGTGCCATCTACCTCTGGCTCTTCTCCTTGGTGTGCGAGGAGATGCGGCAGCTC
TTCTATGACCCTGACGAGTGCGGGCTGATGAAGAAGGCAGCCTTGTACTTCAGTGACTTCTGGAATAAG
CTGGACGTCGGCGCAATCTTGCTCTTCGTGGCAGGGCTGACCTGCAGGCTCATCCCGGCGACGCTGTAC
CCCGGGCGCGTCATCCTCTCTCTGGACTTCATCCTGTTCTGCCTCCGGCTCATGCACATTTTTACCATC
AGTAAGACGCTGGGGCCCAAGATCATCATTGTGAAGCGGATGATGAAGGACGTCTTCTTCTTCCTCTTC
CTGCTGGCTGTGTGGGTGGTGTCCTTCGGGGTGGCCAAGCAGGCCATCCTCATCCACAACGAGCGCCGG
GTGGACTGGCTGTTCCGAGGGGCCGTCTACCACTCCTACCTCACCATCTTCGGGCAGATCCCGGGCTAC
ATCGACGGTGTGAACTTCAACCCGGAGCACTGCAGCCCCAATGGCACCGACCCCTACAAGCCTAAGTGC
CCCGAGAGCGACGCGACGCAGCAGAGGCCGGCCTTCCCTGAGTGGCTGACGGTCCTCCTACTCTGCCTC
TACCTGCTCTTCACCAACATCCTGCTGCTCAACCTCCTCATCGCCATGTTCAACTACACCTTCCAGCAG
GTGCAGGAGCACACGGACCAGATTTGGAAGTTCCAGCGCCATGACCTGATCGAGGAGTACCACGGCCGC
CCCGCCGCGCCGCCCCCCTTCATCCTCCTCAGCCACCTGCAGCTCTTCATCAAGAGGGTGGTCCTGAAG
ACTCCGGCCAAGAGGCACAAGCAGCTCAAGAACAAGCTGGAGAAGAACGAGGAGGCGGCCCTGCTATCC
TGGGAGATCTACCTGAAGGAGAACTACCTCCAGAACCGACAGTTCCAGCAAAAGCAGCGGCCCGAGCAG
AAGATCGAGGACATCAGCAATAAGGTTGACGCCATGGTGGACCTGCTGGACCTGGACCCACTGAAGAGG
TCGGGCTCCATGGAGCAGAGGTTGGCCTCCCTGGAGGAGCAGGTGGCCCAGACAGCCCGAGCCCTGCAC
TGGATCGTGAGGACGCTGCGGGCCAGCGGCTTCAGCTCGGAGGCGGACGTCCCCACTCTGGCCTCCCAG
AAGGCCGCGGAGGAGCCGGATGCTGAGCCGGGAGGCAGGAAGAAGACGGAGGAGCCGGGCGACAGCTAC
CACGTGAATGCCCGGCACCTCCTCTACCCCAACTGCCCTGTCACGCGCTTCCCCGTGCCCAACGAGAAG
GTGCCCTGGGAGACGGAGTTCCTGATCTATGACCCACCCTTTTACACGGCAGAGAGGAAGGACGCGGCC
GCCATGGACCCCATGGGAGACACCCTGGAGCCACTGTCCACGATCCAGTACAACGTGGTGGATGGCCTG
AGGGACCGCCGGAGCTTCCACGGGCCGTACACAGTGCAGGCCGGGTTGCCCCTGAACCCCATGGGCCGC
ACAGGACTGCGTGGGCGCGGGAGCCTCAGCTGCTTCGGACCCAACCACACGCTGTACCCCATGGTCACG
CGGTGGAGGCGGAACGAGGATGGAGCCATCTGCAGGAAGAGCATAAAGAAGATGCTGGAAGTGCTGGTG
GTGAAGCTCCCTCTCTCCGAGCACTGGGCCCTGCCTGGGGGCTCCCGGGAGCCAGGGGAGATGCTACCT
CGGAAGCTGAAGCGGATCCTCCGGCAGGAGCACTGGCCGTCTTTTGAAAACTTGCTGAAGTGCGGCATG
GAGGTGTACAAAGGCTACATGGATGACCCGAGGAACACGGACAATGCCTGGATCGAGACGGTGGCCGTC
AGCGTCCACTTCCAGGACCAGAATGACGTGGAGCTGAACAGGCTGAACTCTAACCTGCACGCCTGCGAC
TCGGGGGCCTCCATCCGATGGCAGGTGGTGGACAGGCGCATCCCACTCTATGCGAACCACAAGACCCTC
CTCCAGAAGGCAGCCGCTGAGTTCGGGGCTCACTACTGACTGTGCCCTCAGGCTGGGCGGCTCCAGTCC
ATAGACGTTCCCCCCAGAAACCAGGGCTTCTCTCTCCTGAGCCTGGCCAGGACTCAGGCTGTTCCTGGG
CCCTGCACATGATGGGGTTTGGTGGACCCAGTGCCCCTCACGGCTGCCGCAAGTCTGCTGCAGATGACC
TCATGAACTGGAAGGGGTCAAGGTGACCCGGGAGGAGAGCTCAAGACAGGGCACAGGCTACTCAGAGCT
GAGGGGCCCCTGGGACCCTTGGCCATCAGGCGAGGGGCTGGGCCTGTGCAGCTGGGCCCTTGGCCAGAG
TCCACTCCCTTCCTGGCTGTGTCACCCCGAGCAGCTCATCCACCATGGAGGTCATCGGCCTGAGGCAAG
TTCCCCGGAGAGTCGGGGTCCCCTGTGGCCCCCTCAGGCCTATGTCTGTGAGGAAGGGGCCCTGCCACT
CTCCCCAAGAGGGCCTCCATGTTTCGAGGTGCCTCAACATGGAGCCTTGCCTGGCCTGGGCTAGGGGCA
CTGTCTGAACTCCTGACTGTCAGGATAAACTCCGTGGGGGTACAGGAGCCCAGACAAAGCCCAGGCCTG
TCAAGAGACGCAGAGGGCCCCTGCCAGGGTTGGCCCCAGGGACCCTGGGACGAGGCTGCAGAAGCTCTC
CCTCCCTACTCCCTGGGAGCCACGTGCTGGCCATGTGGCCAGGGACGGCATGAGCAGGAGGCGGGGACG
TGGGGGCCTTCTGGTTTGGTGTCAACAGCTCACAGGAGCGTGAACCATGAGGGCCCTCAGGAGGGGAAC
GTGGTAAAACCCAAGACATTAAATCTGCCATCTCAGGCCTGGCTGGCTCTTCTGTGCTTTCCACAAATA
AAGTTCCTGACACGTCCAGGGCCAGGGGCTGTGTGACGGCTGCCTGAAGTTCTCCTCAATCCCCCGGTG
AGCTTCCTGCAGCCTGTGGATGTCCTGCAGCCCCTCAGCCCTACCCCCAAGTTTCTCCTCTGAAAAAAA
AAAAAAAAAAAAAAAAAAAAAAACTCGACTCTAGA

>Reverse primer walk for NM_003307 unedited
NGGGGCGATCGCCTTNCTTGTGACTGCTGCTCAGNCTGNAGATCCCGCACCGCCTCGCCT
ACCTGCTTCATGACGCCGGTGTGGGACCCCCCTGTGATGATCCAGGCCCCTGTGGTCTGA
GCCACCTTGACCAGGCCTCTGCGGAAAATGCTCTTCAGCCGCGGCTTCATGTTGAAGTTC
TTGGCCCCCCCGGTCACCGAGATCAAGAGATTGGGGACGTCCAGCCCCCAGTGCTGGGTC
ATGAGGTGGTAGATCACGCTGGAGGGCGTGTCCTGGGAGACTCGGACGTACTTTTTCACC
TTCTGGCTCAGGCCCGTGAAGACGATGTCGCCAAAGGCATCGGTTGGCATCTCCTGGACA
TGTTTCTTTGGGTCCCACTGTGTGCCCTGGAAGGTGTGGGGCTTGGTAGCCTCCTCCAAG
TGCTGCTCATGCGTGTAGCCACACTGACACACCACCTTCCCAGCATCAGACAGTTTGGAA
CTTTCCACAAAATACACGCATTCTTTCTTCTTGATGTTTTCAGGAATCCACGAACTGAGG
CTTTCTTGCTTGTCATTGTTGNCCGAAGGGCACTGTAGCCTCCAGCTCTTGAAGAGGCTG
CTGTTGCTGCGCCGGAGATTGGAGACCATCCCCAGGTCAGTGACCCTTCTGGGCAGTCCC
TCAAAGCCCTCCTCCTGCTCCGAGCCAGCTTTTCCTCAGGCTGANGGCTCCATTCTGAGA
CCCCCACGCCAGCTGCAACCAGGCCTGCTGCCCCTCAGACAGTCCTCTCTCCAGCTCGCT
ACAAGGGCGAATTCGCGGCCGCTGCANAAGAAACAGTAGCTTGTATTCTATAGTGTCACC
CTAATGAGCTCTGCTTATATAGACCTNCCACCGTAACACGCCTACCGGCCATTTNGCGTC
ACGG
>OriGene 3' genomic read for NM_003307 unedited
AGNAAAGCACTGGGGNAGGGTCACAGGGATGCCACCCGGGCTCTGTTCAGGAAACAGCTA
TGACCGCGGCCGCAATCTAGAGTCGAGTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTC
AAAGGAAAAACTTGGGGGTAGGGCTGAGGGGCTGCAGGACATCCACAGGCTGCAGGAAGC
TCACCGGGGGATCGAGGAGAACTTCAGGCAGCCGTCACACAGCCCCTGGCCCTGGACGTG
TCAGGAACTTTATTTGTGGAAAGCACAGAAGAGCCAGCCAGGCCTGAGATGGCAGATTTA
ATGTCTTGGGTTTTACCACGTTCCCCTCCTGAGGGCCCTCATGGTTCACGCTCCTGTGAG
CTGTTGACACCAAACCAGAAGGCCCCCACGTCCCCGCCTCCTGCTCATGCCGTCCCTGGC
CACATGGCCAGCACGTGGCTCCCAAGGAGTAGGGAGGGAGAGCTTCTTGCACCTCGTTCC
CAGGTCCCTGGGGCCCACCCTTGCAGGGGCCCCTCTGCGTCTCNTGACAGGGCCTGGCTT
TTTGTCTGGGCTCTGGTCCCCCACGGAGTTTATTCCTGAACGTCAAGAATTCAAAACGTG
CCCCTTGCCCCAGCCAAGCAAGGCTTCATGTTGAGGCACCTTCAAACATTGGAGCCCTCC
TGGGGAAAGTGGCAGGCCCCCTCCCTACAGACTAAGCCTGTAAGGGGCCACAGGGGACCC
CGACTTTTCGGGGAACTTGCCTTAGCCGATTACCTTCATGGGTGGATGAACTGGTCTGGG
TTGCCCCACCCCGAAGGGGATGGACTCTTGGCCAAGGGCCCAACTTGCCAGG
Restriction Sites SgfI-MluI     
ACCN NM_003307
Insert Size 5624 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 There is 1 nucleotide difference between the OriGene clone and the NCBI reference ORF. OriGene considers these to be polymorphisms and to reflect the natural differences between individuals. These result in the substituion of 1 aa.
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_003307.3
RefSeq Size 5876 bp
RefSeq ORF 5624 bp
Locus ID 7226
UniProt ID O94759
Protein Families Druggable Genome, Ion Channels: Transient receptor potential, Transmembrane
MW 210.7 kDa
Gene Summary The protein encoded by this gene forms a tetrameric cation channel that is permeable to calcium, sodium, and potassium and is regulated by free intracellular ADP-ribose. The encoded protein is activated by oxidative stress and confers susceptibility to cell death. Alternative splicing results in multiple transcript variants encoding distinct protein isoforms. Additional transcript variants of this gene have been described, but their full-length nature is not known. [provided by RefSeq, Feb 2016]
Transcript Variant: This variant (1) encodes isoform 1.
*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.

Citations (1)

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