Col4a1 (NM_009931) Mouse Tagged ORF Clone

CAT#: MG222881

  • TrueORF®

Col4a1 (tGFP-tagged) - Mouse collagen type IV alpha 1 (Col4a1), (10ug)

ORF Plasmid: DDK tGFP



  "NM_009931" in other vectors (2)

Need custom modification / cloning service?
Get a free quote

Mouse Protein / Lysate Request

CNY 18,424.00


货期*
现货

规格
    • 10 ug

Product images

经常一起买 (3)
pCMV6-AC-GFP, mammalian vector with C-terminal tGFP tag, 10ug
    • 10 ug

CNY 6,080.00


Mouse monoclonal turboGFP antibody, clone OTI2H8
    • 100 ul

CNY 1,000.00


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

CNY 480.00

Specifications

Product Data
Type Mouse Tagged ORF Clone
Tag TurboGFP
Synonyms Br; Bru; Col4; Col4a-1; Del(8)44; R; Raw; S; Svc
Vector pCMV6-AC-GFP
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MG222881 representing NM_009931
Red=Cloning site Blue=ORF Green=Tags(s)

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGGGGCCCCGGCTCAGCGTCTGGCTTCTGCTGCTCTTCGCCGCCCTTCTGCTCCACGAGGAGCGCAGCC
GAGCAGCTGCGAAGGGCGATTGTGGTGGCTCTGGCTGTGGAAAATGTGACTGTCATGGCGTGAAGGGACA
AAAGGGAGAAAGAGGCTTGCCAGGGTTGCAAGGTGTCATTGGATTTCCCGGGATGCAAGGACCTGAGGGG
CCACATGGACCACCAGGACAAAAGGGTGATGCTGGAGAACCTGGACTTCCTGGCACAAAAGGGACGAGGG
GACCCCCTGGAGCAGCTGGCTACCCTGGGAATCCCGGACTTCCTGGTATTCCTGGCCAAGATGGCCCTCC
AGGTCCCCCAGGTATCCCAGGATGCAACGGTACAAAGGGAGAGAGAGGGCCGCTCGGTCCTCCTGGCTTG
CCTGGATTCAGCGGCAATCCTGGACCACCAGGGTTACCAGGAATGAAGGGAGATCCTGGTGAAATTCTCG
GCCACGTTCCCGGAACACTGCTGAAAGGGGAGAGAGGATTTCCTGGTATCCCCGGGATGCCGGGCTCACC
AGGGTTGCCAGGACTCCAGGGACCCGTGGGTCCTCCGGGATTTACTGGACCACCGGGTCCTCCAGGCCCT
CCTGGACCTCCTGGAGAAAAGGGCCAGATGGGCTCCAGCTTCCAAGGACCAAAAGGTGACAAGGGAGAGC
AAGGGGTCAGCGGTCCCCCGGGAGTTCCTGGACAGGCACAAGTTAAGGAAAAAGGAGACTTTGCCCCAAC
AGGAGAAAAGGGTCAGAAAGGTGAACCTGGATTTCCGGGAGTACCAGGATATGGAGAGAAAGGTGAACCT
GGCAAGCAAGGGCCTCGGGGAAAACCTGGGAAAGACGGTGAAAAAGGAGAAAGGGGGAGCCCGGGCATTC
CTGGCGATTCCGGGTACCCAGGTCTCCCAGGCCGGCAGGGCCCGCAGGGAGAGAAGGGTGAAGCTGGACT
TCCAGGCCCCCCTGGAACTGTGATAGGCACCATGCCTTTGGGAGAGAAAGGAGATCGAGGCTACCCAGGA
GCACCAGGGTTGAGAGGAGAGCCCGGCCCTAAAGGTTTCCCTGGAACACCAGGCCAACCAGGCCCTCCAG
GTTTCCCTACTCCAGGCCAGGCTGGTGCTCCAGGCTTCCCAGGTGAAAGGGGAGAAAAAGGTGACCAGGG
ATTTCCAGGCGTGTCATTGCCAGGACCAAGTGGAAGAGATGGAGCCCCGGGGCCTCCCGGCCCTCCCGGC
CCCCCTGGGCAGCCAGGCCACACAAATGGCATTGTGGAGTGTCAACCTGGACCACCCGGGGACCAGGGCC
CTCCTGGGACTCCAGGACAGCCAGGTTTGACAGGTGAAGTTGGACAGAAAGGTCAGAAAGGAGAGAGCTG
CCTTGCCTGTGACACAGAAGGACTTCGTGGCCCTCCAGGGCCACAGGGGCCTCCGGGAGAGATTGGTTTC
CCTGGACAACCTGGGGCTAAAGGTGACCGAGGCCTGCCCGGCAGAGATGGTCTTGAAGGATTGCCGGGTC
CACAAGGTTCACCAGGGCTTATAGGCCAGCCTGGAGCTAAGGGAGAGCCTGGAGAGATATTTTTTGACAT
GCGACTCAAAGGTGACAAAGGAGACCCAGGTTTTCCGGGACAGCCTGGCATGCCAGGAAGAGCAGGAACT
CCCGGAAGAGATGGCCACCCAGGACTCCCTGGACCCAAAGGCTCTCCGGGTTCAATAGGATTGAAAGGAG
AGCGAGGTCCTCCCGGAGGAGTTGGCTTCCCTGGTAGTCGTGGAGACATCGGCCCTCCTGGACCCCCAGG
AGTTGGCCCCATTGGTCCTGTTGGTGAAAAAGGACAAGCAGGCTTTCCTGGAGGCCCTGGGTCCCCAGGT
CTTCCAGGCCCAAAGGGTGAGGCAGGAAAGGTTGTCCCACTCCCTGGCCCCCCAGGAGCTGCAGGACTTC
CAGGATCCCCTGGCTTCCCAGGGCCACAAGGTGACCGAGGCTTCCCAGGAACCCCAGGACGTCCAGGCAT
CCCGGGAGAGAAAGGTGCTGTGGGCCAGCCAGGAATTGGATTTCCTGGGCTTCCTGGCCCCAAAGGTGTT
GATGGCTTGCCTGGAGAGATAGGACGGCCTGGGAGTCCAGGTCGCCCTGGATTTAACGGCTTACCTGGCA
ACCCAGGACCTCAAGGTCAAAAGGGAGAACCTGGCATTGGGCTTCCAGGACTCAAAGGGCAACCAGGCCT
TCCAGGCATTCCCGGTACACCTGGAGAGAAGGGTAGCATCGGGGGACCCGGCGTTCCAGGAGAACAGGGG
TTGACAGGCCCCCCAGGACTCCAGGGGATCAGAGGTGACCCAGGGCCTCCTGGAGTTCAAGGCCCAGCAG
GTCCACCAGGGGTCCCAGGAATAGGGCCACCCGGAGCTATGGGCCCTCCCGGAGGGCAAGGACCACCAGG
GTCATCAGGTCCACCTGGAATTAAAGGAGAGAAAGGGTTCCCTGGATTCCCCGGACTGGATATGCCTGGC
CCCAAAGGCGATAAAGGCTCTCAAGGACTTCCTGGCCTCACAGGACAGTCAGGCCTCCCTGGCCTTCCTG
GACAGCAGGGGACACCTGGAGTTCCAGGGTTCCCAGGTTCTAAAGGTGAAATGGGTGTCATGGGAACCCC
GGGACAACCAGGCTCGCCAGGACCAGCAGGCACCCCAGGGTTACCTGGAGAAAAAGGGGACCATGGCCTT
CCGGGCTCCTCAGGACCCAGGGGCGACCCTGGCTTCAAAGGTGATAAAGGTGACGTTGGGCTTCCTGGCA
TGCCAGGATCCATGGAGCATGTGGACATGGGGAGCATGAAGGGACAGAAAGGAGACCAGGGAGAGAAAGG
ACAAATCGGACCCACTGGTGATAAAGGTTCCCGAGGAGACCCTGGAACACCAGGAGTACCTGGGAAGGAT
GGGCAGGCAGGGCATCCCGGACAGCCAGGGCCTAAAGGTGACCCAGGCCTTAGTGGGACACCAGGATCCC
CTGGACTCCCTGGACCCAAAGGATCAGTTGGAGGAATGGGCTTGCCAGGTTCGCCTGGAGAAAAAGGTGT
GCCTGGCATCCCTGGCTCACAGGGTGTCCCTGGCTCACCTGGAGAGAAGGGAGCCAAAGGAGAGAAAGGG
CAGTCAGGTCTACCTGGCATTGGGATTCCGGGACGGCCTGGTGACAAGGGAGACCAGGGCCTTGCTGGCT
TCCCAGGCAGCCCCGGTGAGAAGGGAGAGAAAGGCAGTGCCGGAACCCCAGGGATGCCAGGGTCCCCAGG
CCCGAGAGGTTCTCCGGGGAACATCGGCCATCCAGGAAGCCCAGGCCTGCCTGGAGAGAAAGGGGATAAA
GGCCTCCCAGGACTGGATGGCGTTCCTGGTGTCAAAGGAGAAGCAGGTCTCCCTGGGACTCCTGGCCCCA
CAGGCCCAGCTGGCCAGAAGGGAGAGCCGGGCAGCGATGGAATCCCGGGGTCGGCAGGAGAGAAGGGTGA
ACAAGGTGTTCCAGGAAGAGGCTTCCCCGGCTTCCCTGGCTCCAAAGGAGACAAAGGCTCCAAGGGTGAA
GTGGGTTTCCCTGGCCTAGCTGGAAGTCCTGGAATTCCTGGAGTCAAAGGCGAGCAAGGGTTCATGGGTC
CTCCTGGCCCTCAAGGACAACCTGGCTTACCTGGCACTCCTGGTCACCCTGTGGAGGGGCCCAAAGGAGA
CCGAGGACCTCAGGGTCAACCTGGCCTGCCAGGGCATCCGGGACCTATGGGGCCGCCAGGGTTCCCAGGA
ATCAATGGGCCAAAAGGTGACAAGGGAAATCAAGGTTGGCCAGGAGCTCCGGGGGTTCCAGGCCCTAAGG
GAGACCCAGGATTCCAAGGCATGCCGGGCATTGGCGGCTCTCCAGGGATCACAGGTTCAAAGGGAGATAT
GGGACTGCCCGGAGTTCCAGGATTTCAAGGTCAGAAAGGGCTTCCTGGTCTGCAGGGAGTGAAAGGAGAC
CAGGGAGACCAAGGTGTACCCGGCCCTAAAGGTCTCCAAGGTCCCCCTGGGCCTCCAGGTCCCTACGATG
TCATCAAAGGAGAACCAGGGCTCCCTGGTCCTGAGGGTCCCCCTGGTCTTAAAGGACTCCAGGGACCACC
AGGTCCAAAAGGACAGCAAGGTGTGACAGGCTCAGTGGGCTTGCCTGGACCTCCAGGTGTCCCTGGGTTC
GATGGTGCTCCTGGCCAGAAAGGAGAGACAGGACCCTTTGGACCACCTGGTCCAAGAGGGTTTCCTGGCC
CACCAGGCCCCGATGGGCTGCCAGGATCCATGGGTCCCCCAGGTACCCCATCTGTGGACCATGGCTTCCT
TGTGACCAGGCATAGTCAGACAACAGATGACCCACTGTGTCCCCCAGGGACCAAAATTCTTTACCATGGA
TACTCTCTGCTCTATGTCCAAGGCAACGAGCGTGCCCACGGGCAGGACTTGGGTACGGCTGGCAGCTGCC
TGCGTAAGTTCAGCACCATGCCCTTTCTCTTCTGCAACATCAACAACGTCTGCAACTTCGCCTCCAGGAA
CGACTACTCTTACTGGCTGTCCACGCCAGAGCCCATGCCCATGTCCATGGCACCCATCTCTGGGGACAAC
ATCCGGCCCTTCATTAGCAGGTGTGCGGTTTGTGAAGCACCGGCCATGGTGATGGCGGTACACAGTCAGA
CCATTCAGATTCCGCAGTGCCCTAACGGTTGGTCCTCACTGTGGATCGGCTATTCCTTCGTGATGCACAC
CAGCGCTGGTGCTGAAGGTTCCGGCCAAGCCCTCGCATCCCCCGGGTCCTGTCTGGAAGAGTTTAGAAGC
GCCCCATTCATCGAGTGCCACGGCAGAGGAACGTGCAATTACTACGCAAATGCTTACAGCTTTTGGCTCG
CCACCATAGAGAGAAGCGAGATGTTCAAGAAGCCCACGCCATCCACCTTGAAGGCAGGGGAGCTGCGAAC
ACACGTCAGCCGCTGCCAAGTGTGCATGAGAAGAACA


ACGCGTACGCGGCCGCTCGAG - GFP Tag - GTTTAA
>MG222881 representing NM_009931
Red=Cloning site Green=Tags(s)

MGPRLSVWLLLLFAALLLHEERSRAAAKGDCGGSGCGKCDCHGVKGQKGERGLPGLQGVIGFPGMQGPEG
PHGPPGQKGDAGEPGLPGTKGTRGPPGAAGYPGNPGLPGIPGQDGPPGPPGIPGCNGTKGERGPLGPPGL
PGFSGNPGPPGLPGMKGDPGEILGHVPGTLLKGERGFPGIPGMPGSPGLPGLQGPVGPPGFTGPPGPPGP
PGPPGEKGQMGSSFQGPKGDKGEQGVSGPPGVPGQAQVKEKGDFAPTGEKGQKGEPGFPGVPGYGEKGEP
GKQGPRGKPGKDGEKGERGSPGIPGDSGYPGLPGRQGPQGEKGEAGLPGPPGTVIGTMPLGEKGDRGYPG
APGLRGEPGPKGFPGTPGQPGPPGFPTPGQAGAPGFPGERGEKGDQGFPGVSLPGPSGRDGAPGPPGPPG
PPGQPGHTNGIVECQPGPPGDQGPPGTPGQPGLTGEVGQKGQKGESCLACDTEGLRGPPGPQGPPGEIGF
PGQPGAKGDRGLPGRDGLEGLPGPQGSPGLIGQPGAKGEPGEIFFDMRLKGDKGDPGFPGQPGMPGRAGT
PGRDGHPGLPGPKGSPGSIGLKGERGPPGGVGFPGSRGDIGPPGPPGVGPIGPVGEKGQAGFPGGPGSPG
LPGPKGEAGKVVPLPGPPGAAGLPGSPGFPGPQGDRGFPGTPGRPGIPGEKGAVGQPGIGFPGLPGPKGV
DGLPGEIGRPGSPGRPGFNGLPGNPGPQGQKGEPGIGLPGLKGQPGLPGIPGTPGEKGSIGGPGVPGEQG
LTGPPGLQGIRGDPGPPGVQGPAGPPGVPGIGPPGAMGPPGGQGPPGSSGPPGIKGEKGFPGFPGLDMPG
PKGDKGSQGLPGLTGQSGLPGLPGQQGTPGVPGFPGSKGEMGVMGTPGQPGSPGPAGTPGLPGEKGDHGL
PGSSGPRGDPGFKGDKGDVGLPGMPGSMEHVDMGSMKGQKGDQGEKGQIGPTGDKGSRGDPGTPGVPGKD
GQAGHPGQPGPKGDPGLSGTPGSPGLPGPKGSVGGMGLPGSPGEKGVPGIPGSQGVPGSPGEKGAKGEKG
QSGLPGIGIPGRPGDKGDQGLAGFPGSPGEKGEKGSAGTPGMPGSPGPRGSPGNIGHPGSPGLPGEKGDK
GLPGLDGVPGVKGEAGLPGTPGPTGPAGQKGEPGSDGIPGSAGEKGEQGVPGRGFPGFPGSKGDKGSKGE
VGFPGLAGSPGIPGVKGEQGFMGPPGPQGQPGLPGTPGHPVEGPKGDRGPQGQPGLPGHPGPMGPPGFPG
INGPKGDKGNQGWPGAPGVPGPKGDPGFQGMPGIGGSPGITGSKGDMGLPGVPGFQGQKGLPGLQGVKGD
QGDQGVPGPKGLQGPPGPPGPYDVIKGEPGLPGPEGPPGLKGLQGPPGPKGQQGVTGSVGLPGPPGVPGF
DGAPGQKGETGPFGPPGPRGFPGPPGPDGLPGSMGPPGTPSVDHGFLVTRHSQTTDDPLCPPGTKILYHG
YSLLYVQGNERAHGQDLGTAGSCLRKFSTMPFLFCNINNVCNFASRNDYSYWLSTPEPMPMSMAPISGDN
IRPFISRCAVCEAPAMVMAVHSQTIQIPQCPNGWSSLWIGYSFVMHTSAGAEGSGQALASPGSCLEEFRS
APFIECHGRGTCNYYANAYSFWLATIERSEMFKKPTPSTLKAGELRTHVSRCQVCMRRT

TRTRPLE - GFP Tag - V
Restriction Sites SgfI-MluI      Cloning Scheme for this gene      Plasmid Map     
ACCN NM_009931
ORF Size 5007 bp
OTI Disclaimer Due to the inherent nature of this plasmid, standard methods to replicate additional amounts of DNA in E. coli are highly likely to result in mutations and/or rearrangements. Therefore, OriGene does not guarantee the capability to replicate this plasmid DNA. Additional amounts of DNA can be purchased from OriGene with batch-specific, full-sequence verification at a reduced cost. Please contact our customer care team at custsupport@origene.com or by calling 301.340.3188 option 3 for pricing and delivery.

The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info
OTI Annotation This clone was engineered to express the complete ORF with an expression tag. Expression varies depending on the nature of the gene.
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_009931.2, NP_034061.2
RefSeq Size 6636 bp
RefSeq ORF 5010 bp
Locus ID 12826
UniProt ID P02463
Gene Summary This gene encodes the alpha-1 subunit of the type IV collagens, an essential component of basement membranes. The encoded protein forms a triple helical heterotrimer comprised of two alpha-1 and one alpha-2 subunits that assembles into a type IV collagen network. This gene is located adjacent to the gene encoding alpha-2 subunit. Mice lacking both the alpha-1 and alpha-2 subunits of collagen IV die in utero due to structural deficiencies in the basement membranes and certain mutations in this gene cause perinatal cerebral hemorrhage and porencephaly. Alternative splicing of this gene results in multiple transcript variants. [provided by RefSeq, Nov 2015]
*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...