FREM1 (NM_144966) Human Untagged Clone

CAT#: SC318714

FREM1 (untagged)-Human FRAS1 related extracellular matrix 1 (FREM1), transcript variant 1



  "NM_144966" in other vectors (4)

CNY 41,990.00


货期*
4周

规格
    • 10 ug

Product images

经常一起买 (4)
Rabbit Polyclonal FREM1 Antibody
    • 100 ug

CNY 5,808.00


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 BNAR; C9orf143; C9orf145; C9orf154; MOTA; TILRR; TRIGNO2
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>SC318714 representing NM_144966.
Blue=Insert sequence Red=Cloning site Green=Tag(s)

GCTCGTTTAGTGAACCGTCAGAATTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTG
GATCCGGTACCGAGGAGATCTGCCGCCGCGATCGCC
ATGAACTCTCTGAGTTGGGGGGCTGCGAATGCCGTGCTGCTGCTGCTCCTCCTGGCCTGGGCCAGCCCC
ACCTTCATCAGCATCAACCGCGGGGTGAGGGTGATGAAGGGCCACTCTGCCTTCCTGTCAGGAGATGAC
CTGAAGTTTGCCATCCCTAAAGAGAAAGATGCCTGCAAAGTGGAAGTTGTGATGAATGAGCCAATAACC
CAGAGGGTTGGGAAACTCACTCCACAGGTCTTTGACTGCCATTTCCTTCCCAACGAAGTCAAGTATGTT
CACAATGGTTGTCCAATTCTTGATGAAGACACAGTGAAGCTCAGACTTTACAGATTTACTGAAAGAGAT
ACCTTCATAGAAACTTTTATCCTGTGGGTCTATCTCCTGGAACCAGACTGTAACATCATCCATATGAGT
AACAATGTGCTGGAGGTGCCTGAATTCAATGGCTTGTCCCAAGCGATTGATAAAAATCTGCTCAGATTC
GATTATGATAGGATGGCTAGCCTGGAATGTACCGTCAGCCTGGACACTGCGAGAACTCGGCTGCCAGCC
CATGGCCAGATGGTTCTCGGGGAGCCTCGACCAGAAGAACCTCGTGGAGATCAGCCACACAGTTTTTTC
CCAGAGTCCCAACTGAGAGCAAAACTGAAGTGTCCAGGTGGGAGCTGTACCCCAGGATTAAAGAAAATA
GGAAGCCTCAAAGTGAGCTGTGAGGAGTTCCTGCTGATGGGCCTTCGTTATCAGCATCTGGATCCCCCT
TCACCCAACATTGATTATATCTCCATCCAACTGGACCTCACAGATACCAGGAGCAAAATTGTGTACAAG
TCAGAGAGTGCGTGGCTGCCTGTCTATATCAGAGCTGGAATTCCGAATCAGATTCCAAAGGCTGCATTC
ATGGCCGTGTTTATTCTGGAAGTGGATCAGTTCATCCTGACCTCCTTGACTACATCAGTTCTGGACTGT
GAAGAAGATGAGACCCCTAAACCCTTGCTGGTGTTCAACATTACTAAAGCCCCGCTCCAGGGCTATGTG
ACTCACCTGTTGGATCACACCAGACCAATCTCCTCATTCACCTGGAAAGATCTCAGTGACATGCAGATC
GCCTATCAGCCACCAAACAGCAGCCATTCTGAGAGGAGACATGATGAGGTAGAATTGGAGGTATACGAC
TTCTTCTTTGAAAGGAGTGCACCTATGACAGTCCACATCTCCATCAGAACAGCAGATACAAATGCCCCC
CGTGTATCCTGGAATACAGGTCTGAGTCTCCTTGAGGGGCAGTCTCGAGCCATCACTTGGGAACAGTTT
CAGGTTGTCGACAATGACGACATTGGTGCTGTCCGGCTAGTCACCGTTGGTGGCCTGCAGCATGGATGG
CTGACTTTAAGAGGGGGGAAAGGGTTTCTCTTCACCGTGGCTGACCTCCAGGCTGGAGTTGTTCGCTAT
CATCATGATGACAGCGACTCCACCAAAGACTTCGTGGTCTTCCGGATATTTGATGGCCATCACAGCATC
CGTCACAAATTCCCCATCAACGTCTTGCCCAAAGATGATAGTCCCCCGTTCCTCATAACCAATGTTGTG
ATTGAACTGGAGGAGGGGCAGACCATCCTGATCCAGGGATCCATGCTGCGAGCTTCAGATGTGGACGCC
AGTGATGACTACATCTTCTTCAATATCACAAAGCCTCCACAGGCTGGGGAGATCATGAAGAAGCCAGGG
CCAGGACTGATAGGCTATCCTGTCCATGGCTTCCTTCAGAGGGATTTGTTTAATGGAATCATTTATTAT
CGTCATTTTGGTGGAGAAATCTTTGAAGATTCTTTTCAATTTGTCCTGTGGGACAGCCATGAACCTCCA
AATCTTTCAGTGCCACAGGTGGCAACAATCCATATAACTCCAGTGGATGACCAGCTTCCAAAAGAGGCT
CCTGGAGTTTCTCGGCATTTGGTTGTCAAGGAAACTGAGGTGGCCTATATAACTAAGAAACAGCTACAT
TTTATAGATTCAGAATCATATGACAGGGAGCTGGTCTACACAATAACTACTCCTCCATTTTTCTCCTTC
AGCCACAGACACTTGGATGCTGGGAAATTATTTATGGTGGACAGCATACCAAAAGTAGTTAAGAATCCT
ACGGCCCTGGAGCTGAGGTCATTCACTCAGCATGCTGTGAACTATATGAAAGTGGCCTACATGCCCCCC
ATGCAAGACATTGGTCCCCATTGCAGAGATGTCCAGTTCACATTTTCTGTCAGTAACCAACATGGCGGT
ACTTTGCATGGGATCTGCTTTAACATTACAATCCTCCCAGTGGACAATCAAGTTCCTGAGGCGTTCACC
AACCCTCTGAAAGTGACTGAGGGAGGTCAAAGCATCATCAGCACAGAGCACATTCTAATTTCTGATGCA
GATACCAAGCTGGACAATATTGACCTCTCCCTGCGGGAATTGCCTCTGCACGGAAGGGTGGAGCTGAAT
GGATTTCCTCTAAATTCAGGGGGCACATTTTCTTGGGGCGATCTCCATACCTTAAAAGTTAGGTATCAA
CATGATGGAACTGAAGTTCTTCAGGATGACCTACTCTTGGAGGTCACCGATGGCACAAATTCAGCAGAA
TTTGTACTACATGTTGAGGTATTCCCTGTCAACGATGAGCCACCAGTCTTAAAGGCTGACCTCATGCCT
GTCATGAATTGCTCAGAGGGAGGAGAGGTGGTCATCACCTCTGAATACATTTTTGCTACTGATGTGGAC
AGCGATAACTTGAAGTTGATGTTTGTGATTGCTCGCGAACCTCAGCATGGGGTGGTGAGGAGAGCTGGA
GTCACAGTGGATCAGTTCTCTCAGAGAGATGTTATCTCAGAGGCCGTGACATACAAACACACAGGTGGC
GAGATTGGCCTGATGCCTTGTTTTGACACCATTACATTGGTGGTTTCGGATGGAGAGGCTGGCCCTTTT
GTGAATGGCTGTTGCTACAATGGACCCAATCCATCTGTTCCACTTCATGCGTCCTTTCCAGTGTATGAT
CTCAACATCACGGTATACCCAGTAGACAACCAGCCACCTTCCATTGCAATAGGTCCCGTGTTTGTTGTA
GATGAGGGCTGCTCAACAGCCCTTACTGTTAACCATTTGTCCGCCACTGACCCTGACACTGCAGCAGAT
GACTTGGAATTTGTTTTGGTTTCTCCTCCTCAGTTTGGCTACCTCGAAAATATACTCCCTTCTGTGGGT
TTTGAAAAAAGCAATATTGGCATAAGTATAGATTCATTTCAGTGGAAAGACATGAACGCTTTTCACATT
AACTATGTGCAGTCCAGGCATCTGAGGATAGAACCAACTGCCGACCAGTTCACGGTGTACGTCACAGAT
GGGAAGCATCACTCCTTGGAGATACCATTTTCTATTATAATCAACCCCACAAATGATGAAGCTCCTGAC
TTTGTAGTGCAGAATATTACTGTGTGTGAGGGTCAGATGAAAGAGCTGGACTCTTCCATCATCAGCGCT
GTGGACCTGGACATTCCCCAGGATGCCCTGCTGTTCAGCATCACTCAAAAGCCACGCCATGGCCTCCTC
ATCGATAGGGGGTTTAGCAAAGACTTCTCTGAGAATAAGCAGCCAGCCAACCCTCACCAGAAACATGCA
CCTGTTCACAGCTTTTCCATGGAACTCCTCAAGACTGGAATGAGGTTGACGTACATGCATGATGACTCA
GAGAGCCTTGCTGATGATTTTACAATCCAATTGTCAGATGGGAAACATAAGATACTTAAAACCATTTCA
GTAGAGGTCATCCCAGTTAATGATGAAAAACCAATGCTGAGCAAGAAGGCTGAAATTGCAATGAATATG
GGTGAAACTCGTATTATTTCCAGTGCTATTCTTTCAGCCATAGATGAAGACTCACCCAGGGAGAAGATT
TACTATGTATTTGAAAGGCTTCCCCAAAATGGGCAACTTCAGCTTAAGATAGGGAGGGACTGGGTTCCT
CTCTCCCCTGGCATGAAATGCACTCAGGAGGAAGTGGATCTGAACTTGCTGAGATACACACACACCGGG
GCAATGGATTCCCAGAATCAAGATAGCTTCACCTTCTACCTTTGGGATGGCAACAACAGGTCCCCTGCT
CTTGACTGTCAAATCACCATCAAGGACATGGAAAAAGGTGATATTGTCATCCTTACAAAACCACTCGTG
GTGTCTAAAGGTGATAGAGGTTTCTTAACAACCACCACGCTCCTGGCTGTGGACGGAACAGACAAGCCT
GAGGAACTGCTCTATGTCATCACCTCCCCTCCGCGATATGGCCAGATCGAATATGTTCACTATCCTGGA
GTTCCCATTACAAACTTCAGCCAAATGGATGTAGTGGGGCAGACAGTTTGCTATGTACACAAGAGCAAG
GTGACTGTCTCCAGTGACAGATTCAGATTCATCATCAGCAATGGACTGCGGACCGAGCACGGGGTGTTT
GAGATCACACTGGAGACTGTGGACAGAGCCCTGCCTGTGGTAACCAGGAACAAGGGGTTGAGACTGGCC
CAAGGGGCCGTGGGCCTGCTTTCCCCTGACCTCCTTCAGCTGACCGACCCTGATACACCTGCGGAGAAC
CTCACCTTCCTCTTGGTTCAGCTCCCCCAGCATGGCCAGCTCTACCTGTGGGGGACAGGGCTACTTCAA
CACAATTTCACCCAGCAGGATGTGGACAGCAAGAATGTGGCCTATCGGCACTCAGGAGGGGACTCCCAG
ACTGACTGCTTTACTTTCATGGCCACAGATGGGACAAACCAAGGCTTTATTGTGAATGGGAGAGTGTGG
GAAGAACCTGTTTTATTCACCATTCAGGTAGACCAATTGGACAAAACAGCTCCTCGTATCACACTCTTG
CATTCCCCTTCTCAAGTGGGGCTCCTGAAAAATGGCTGCTACGGGATTTACATCACTTCCCGCGTGTTG
AAGGCATCAGACCCTGACACTGAGGACGATCAGATCATCTTTAAAATTCTACAAGGCCCAAAACATGGA
CATCTGGAGAACACAACAACAGGTGAATTTATCCATGAGAAATTTAGCCAAAAGGACTTAAACAGTAAG
ACTATTCTTTACATCATAAACCCATCTTTGGAAGTAAATTCAGATACCGTGGAATTTCAAATCATGGAC
CCCACAGGGAACTCGGCCACTCCTCAAATTTTGGAACTGAAGTGGTCTCATATTGAATGGTCACAGACC
GAATATGAAGTCTGTGAGAATGTGGGTTTGTTGCCCTTGGAAATTATCAGAAGGGGATATTCCATGGAC
TCGGCCTTTGTGGGTATAAAGGTCAACCAAGTGTCAGCTGCAGTTGGAAAAGATTTCACCGTGATTCCA
TCTAAACTGATTCAGTTTGACCCAGGAATGTCAACTAAGATGTGGAATATAGCAATTACCTATGACGGA
TTAGAGGAAGATGATGAGGTCTTTGAAGTAATTCTGAACTCCCCTGTGAATGCAGTTCTTGGCACAAAG
ACAAAAGCTGCAGTGAAAATTTTGGACTCAAAAGGAGGACAATGCCATCCTTCATATTCCTCCAACCAA
AGCAAGCACAGCACATGGGAGAAGGGCATTTGGCATCTGCTGCCCCCAGGGTCTTCCTCATCCACCACT
TCTGGTTCCTTTCATCTGGAAAGAAGACCTCTTCCATCTTCCATGCAGCTAGCAGTCATCAGGGGAGAC
ACCCTGCGGGGCTTTGATTCTACAGATCTTTCTCAAAGGAAGCTTAGGACCCGTGGGAATGGCAAAACA
GTTCGTCCATCCTCTGTTTATAGAAATGGAACAGACATCATCTATAATTATCATGGGATAGTTTCCTTG
AAACTGGAGGATGACAGTTTCCCAACTCACAAAAGGAAGGCCAAAGTATCCATCATTAGTCAGCCACAA
AAGACAATCAAAGTGGCAGAACTGCCTCAAGCAGATAAGGTGGAATCCACAACTGACTCACACTTCCCC
AGACAGGACCAGTTGCCCTCATTTCCAAAGAACTGCACTCTGGAATTAAAGGGACTCTTCCATTTTGAA
GAAGGCATCCAGAAGCTGTATCAGTGCAATGGGATCGCCTGGAAAGCCTGGAGTCCCCAAACCAAGGAT
GTGGAAGACAAATCCTGTCCAGCCGGGTGGCACCAGCACTCAGGCTACTGTCACATCTTGATCACAGAG
CAGAAAGGCACCTGGAATGCGGCTGCCCAAGCTTGCAGGGAACAATACCTGGGCAACCTTGTAACTGTA
TTCTCCAGGCAGCACATGCGGTGGCTCTGGGACATTGGTGGGAGAAAGTCCTTTTGGATAGGTTTGAAC
GACCAAGTGCATGCTGGCCACTGGGAGTGGATCGGTGGTGAACCTGTTGCCTTCACCAATGGGAGAAGA
GGGCCCTCTCAACGCTCCAAGCTTGGAAAGAGCTGTGTTTTGGTTCAAAGACAAGGGAAATGGCAAACA
AAAGACTGTAGGAGAGCCAAACCTCATAATTATGTGTGTTCCAGAAAACTCTAA

ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGAT
TACAAGGATGACGACGATAAG
GTTTAAACGGCCGGC
Restriction Sites SgfI-MluI     
ACCN NM_144966
Insert Size 6540 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.
Reference Data
RefSeq NM_144966.5
RefSeq Size 10086 bp
RefSeq ORF 6540 bp
Locus ID 158326
UniProt ID Q5H8C1
Protein Families Protease, Transmembrane
MW 244.2 kDa
Gene Summary This gene encodes a basement membrane protein that may play a role in craniofacial and renal development. Mutations in this gene have been associated with bifid nose with or without anorectal and renal anomalies. Alternatively spliced transcript variants encoding different isoforms have been described. PubMed ID 19940113 describes one such variant that initiates transcription within a distinct, internal exon; the resulting shorter isoform (named Toll-like/interleukin-1 receptor regulator, TILRR) is suggested to be a co-receptor of the interleukin 1 receptor family and may regulate receptor function and Toll-like receptor/interleukin 1 receptor signal transduction, contributing to the control of inflammatory response activation. [provided by RefSeq, Apr 2011]
Transcript Variant: This variant (1) represents the longer transcript and encodes the longer isoform (1). Sequence Note: This RefSeq record was created from transcript and genomic sequence data to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on transcript 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.

Other Versions

Customer Reviews 
Loading...