Chd5 (NM_029216) Mouse Untagged Clone

CAT#: MC225040

Chd5 (untagged) - Mouse chromodomain helicase DNA binding protein 5 (Chd5), transcript variant 2, (10ug)



  "NM_029216" in other vectors (2)

CNY 30,690.00


货期*
14周

规格
    • 10 ug

Product images

经常一起买 (3)
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 Mouse Untagged Clone
Tag Tag Free
Synonyms 4930532L22Rik; AW060752; B230399N07Rik; CHD-5
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC225040 representing NM_029216
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGCGGGGCCCGCTGGGCACCGAGGAGGAGCTGCCGCGGCTGTTCGCGGAGGAGATGGAGAACGAGGAGG
AGATGTCAGAAGAAGAAGACGGTGGCCTTGAAGGCTTTGAGGACTTCTTCCCTGCAGAGCCCGTGAGTCT
TCCCAAGAAGAAGCCGAAGAAGCTGAAAGAGAGCAAGTCCTCCAAAGGTAAAAGGAAGAAGAAAGAGGGG
AGCAATGACGAGATGTCAGACAACGAGGAGGACCTGGAAGAGAAGTCAGAGAGCGAAGGTAGCGACTACT
CCCCCACCAAGAAGAAGAAGAAGAAACTGAAGGAGAAGAAGGAGAAGAAGGAGAAGAAGGAGAAGCGGAA
AAAGAGGGGTGAGGATGAAGATGATAACGACGACGGAGGCTTGAAGGAGCCCAAGTCCTCGGGACAACTC
ATGGCGGAGTGGGGGCTGGACGACGTGGACTACCTGTTTTCTGAGGATGACTACCACACACTGACCAACT
ACAAAGCCTTCAGCCAGTTCCTCAGGCCCCTTATTGCCAAGAAGAATCCGAAGATCCCCATGTCCAAAAT
GATGACTGTCCTGGGGGCCAAGTGGCGAGAATTCAGCGCCAACAACCCGTTTAAGGGTAGCTCGGCAGCA
GCAGCTGCGGCGGCCGTGGCCGCGGCCGTGGAGACAGTGACCATTGCTCCTCCCTTGGCCATCAGTCCCC
AGCAAGTGCCCCAGACTCTGCCCATACGAAAGGCCAAGACCAAAGAGGGCAAGGGGCCCGGAGTGAGGAA
GAAGAACAAAGGCGCCAAAGATTCCAAGAAAAAGGGCAGGGGCAAGAGAGTGGCAGGGCTCAAGTTCCGC
TTCGGAGGGATCAGCAAGAGGAAGAAGGGTTCCTCGAGCGAGGAGGATGAACGGGAGGACTCAGACTTGG
ACAATGCCAGCATCCACAGCTCTTCTGTGCGTTCTGAGTGCTCTGCAGCTCTGGGCAAGAAGAACAAGAG
GAGGCGCAAGAAGAAGAGGATTGACGATGGTGACGGCTATGAGACAGACCACCAGGACTACTGTGAGGTG
TGCCAGCAGGGAGGCGAGATCATTCTCTGTGACACCTGCCCGAGGGCATATCACCTAGTCTGCCTGGACC
CGGAGCTGGAGAAGGCTCCAGAGGGCAAGTGGAGCTGCCCACACTGTGAGAAGGAGGGGATCCAGTGGGA
GCCGAAGGATGATGATGAAGAGGAGGAGGAGGGCGGCTGCGAGGAAGAGGAGGATGACCACATGGAGTTC
TGCCGCGTGTGCAAGGACGGTGGCGAGCTCCTGTGCTGTGATGCCTGTCCCTCCTCCTACCACTTGCACT
GCCTCAACCCGCCGCTGCCGGAGATACCGAACGGTGAATGGCTCTGCCCGCGCTGTACATGTCCCCCGCT
GAAGGGCAAAGTTCAGCGGATCCTACACTGGAGGTGGACAGAACCCCCGGCTCCCTTTGTGGTGGGGCTG
CCAGGACCAGAGGTGGAGCCAGGCATGCCCCCGCCCAGGCCTCTGGAGGGCATTCCTGAGAGAGAGTTCT
TTGTCAAGTGGGCTGGTCTCTCCTACTGGCACTGCTCCTGGGTGAAGGAGCTACAGTTGGAGCTGTACCA
CACCGTGATGTATCGCAACTACCAAAGAAAGAATGACATGGACGAACCGCCACCCTTTGATTACGGCTCT
GGCGATGAGGATGGTAAGAGCGAGAAACGGAAGAACAAGGACCCTCTCTACGCCAAGATGGAGGAACGCT
TCTACCGCTACGGCATCAAGCCCGAGTGGATGATGGTTCACCGCATCCTGAACCACAGCTTTGACAAGAA
GGGGGACATACATTACCTGATCAAGTGGAAGGACCTGCCCTACGACCAGTGCACCTGGGAGATTGATGAG
ATTGACATTCCCTACTACGACAACCTGAAGCAGGCCTACTGGGGCCACAGGGAGCTGATGCTGGGGGAAG
ATGCCAGGCTGCCCAAGCGGCTGGTGAAGAAGGGCAAGAAGCTGAAGGACGATAAACAAGAGAAGCCACC
CGATACGCCCATCGTGGACCCCACAGTCAAGTTCGACAAGCAGCCGTGGTACATCGACGCCACAGGAGGC
ACGCTGCACCCTTACCAGCTGGAGGGCCTTAACTGGTTACGCTTCTCCTGGGCCCAGGGCACCGACACTA
TCCTGGCTGACGAGATGGGTTTGGGGAAGACAGTACAGACCATTGTGTTTCTCTATTCTCTGTACAAGGA
GGGCCACTCCAAGGGGCCTTACCTGGTCAGCGCGCCCCTGTCCACCATCATCAACTGGGAACGGGAGTTT
GAGATGTGGGCGCCTGACTTTTACGTGGTCACCTACACGGGGGACAAGGAGAGCCGCTCTGTGATCCGTG
AGAACGAGTTTTCCTTTGAGGACAACGCCATTCGCGGTGGCAAGAAAGTATTCCGCATGAAGAAGGAAGT
GCAGATCAAATTCCACGTGCTGCTCACCTCTTATGAGCTCATCACCATTGACCAAGCCATCCTGGGCTCC
ATCGAGTGGGCCTGCCTCGTGGTGGACGAGGCCCACCGGCTCAAGAACAACCAGTCCAAGTTCTTTAGGG
TCTTGAATAGCTACAAGATCGACTACAAGCTGCTGCTGACAGGGACCCCCCTCCAGAACAACCTGGAGGA
ACTGTTCCATCTCCTCAACTTCCTGACTCCAGAGAGGTTCAACAATCTGGAAGGCTTCTTGGAGGAGTTT
GCTGACATATCCAAGGAAGATCAGATCAAAAAGCTGCATGATCTATTGGGGCCGCACATGCTTCGGCGGC
TCAAGGCCGACGTGTTCAAGAACATGCCGGCTAAGACAGAGCTGATTGTCCGAGTGGAGCTGAGCCAGAT
GCAGAAGAAGTACTACAAGTTCATCCTGACTCGGAACTTTGAGGCGCTCAATTCCAAGGGGGGTGGCAAC
CAGGTGTCTCTACTCAATATCATGATGGATCTGAAGAAGTGCTGCAACCATCCGTACCTCTTCCCTGTGG
CTGCTGTGGAAGCCCCTGTACTGCCCAATGGCTCCTACGATGGCAGCTCCCTGGTCAAGTCTTCGGGGAA
GCTCATGCTATTGCAGAAGATGCTCAAGAAACTGCGGGATGAAGGGCACAGAGTGCTGATCTTCTCCCAG
ATGACCAAGATGTTGGACCTCTTGGAGGACTTCCTGGAGTACGAGGGCTACAAGTATGAGCGGATCGACG
GTGGCATCACTGGGGGCCTCCGGCAAGAGGCCATCGACAGATTCAACGCTCCTGGGGCCCAACAGTTCTG
CTTCCTGCTCTCAACACGTGCCGGTGGCCTGGGCATCAACCTGGCCACAGCAGACACGGTCATCATCTAT
GACTCGGACTGGAACCCTCACAATGACATCCAGGCCTTCAGCCGTGCTCACCGCATCGGGCAGAACAAGA
AGGTCATGATCTATCGCTTCGTGACACGGGCCTCCGTGGAGGAGCGCATCACTCAGGTGGCCAAGCGTAA
GATGATGCTCACACACCTGGTGGTGCGGCCTGGCTTGGGCTCCAAGTCGGGCTCCATGACCAAGCAGGAA
CTGGATGATATCCTTAAGTTCGGGACAGAGGAGCTTTTCAAGGACGACGTGGAAGGCGATAACAAAGATG
TAGAAGACAGCAGTGTGATCCATTATGACGACGCAGCCATATCCAAGCTGCTGGATCGGAACCAGGACGC
CACGGATGACACCGAGCTGCAGAACATGAACGAGTACCTGAGCTCCTTCAAGGTGGCACAGTATGTGGTC
CGCGAGGAAGATGGCGTGGAGGAGGTAGAGAGGGAGGTGATCAAGCAGGAGGAGAACGTGGACCCTGACT
ACTGGGAGAAGCTGCTGCGCCATCACTATGAACAGCAGCAGGAGGACTTGGCCCGCAACCTGGGCAAGGG
CAAGCGCATCCGCAAGCAGGTCAACTACAATGATGCCTCCCAGGAGGACCAGGAGTGGCAGGATGAGCTC
TCGGACAACCAGTCGGAGTATTCCATCGGTTCTGAGGATGAGGACGAGGACTTTGAGGAGCGACCAGAAG
GGCAGAGTGGACGACGACAATCCAGGAGGCAGCTTAAGAGTGACAGGGACAAGCCCCTGCCTCCCCTTCT
GGCTCGGGTTGGGGGCAACATTGAGGTTCTGGGCTTCAATGCCAGACAGAGGAAGGCTTTTTTGAACGCC
ATCATGCGCTGGGGCATGCCGCCTCAGGATGCCTTCAACTCCCACTGGCTGGTGCGGGACCTTCGAGGGA
AGAGTGAGAAGGAATTTAGGGCCTATGTATCACTCTTCATGCGCCACCTGTGTGAGCCGGGCGCAGACGG
CGCGGAGACCTTCGCAGACGGCGTGCCCCGGGAGGGCCTGTCTAGGCAGCACGTGCTCACGCGTATTGGG
GTCATGTCGCTGGTTAGGAAGAAGGTGCAGGAGTTTGAGCATGTCAACGGCAAGTACAGCACCCCAGACC
TGGTCCCCGAGGGGGCCGAGGGCAAGAAGCCGGGCGAGGTCATCTCCTCAGACCCCAACACACCTGTGCC
TGCCAGCCCTGCACAGCTTCCACCGGCCCCACTGGGCCTGACAGACAAAATGGAAGCCCAGCTGGGCTAC
ACAGATGAGAAGGAGTCAGGCATGCAGAAGCCAAAGAAGTCCCTGGAAATCCAGACCCTGCCAACTGCCC
TGGACAGAGTAGAGGGTGAAGACAAACATCAGAGCTCAGACAGCAAGGACAGGGCTCGGGAGGAGAGGAC
AGAAGAGGTGGAGAAGGCCCAGGGGTCTCCAGAGCAGCCACTGAAAGAGGAAGTGCTGCCGGACAAGGAG
CCGATCCCAGACAAGCCGGAGCTGAGCTTGGGTCACAGCGGGGATTTCAGGCCAGATGACCCCAAGACTG
AGGAGAAGGAGCCCGGGGAGACTCAGCAAAACGGCGACAGAGAGGAAGATGAGGAAGGCAAGAAAGAAGA
CAAAAATGGGAAATTCAAATTCATGTTCAACATTGCAGATGGCGGTTTCACAGAGCTGCACACTCTGTGG
CAGAACGAGGAGCGGGCGGCTGTGTCCTCGGGGAAAATCTACGAAATCTGGCACCGCCGTCACGACTACT
GGCTGCTGGCAGGCATTGTGACGCATGGCTATGCCCGCTGGCAGGACATTCAGAATGACCCGAGATACAT
GATCCTAAATGAACCTTTCAAGTCTGAGATCCACAAGGGCAACTACTTGGAGATGAAGAACAAGTTTTTG
GCCCGTAGGTTCAAGCTGCTGGAGCAGGCGCTGGTGATTGAGGAGCAGCTCCGGAGGGCAGCGTACCTCA
ACATGACCCAGGATCCCAACCACCCAGCCATGGCGCTCAATGCTCGCCTGGCAGAGGTGGAGTGCCTTGC
CGAGAGCCACCAGCACCTATCCAAGGAGTCCCTCGCCGGAAACAAGCCTGCCAATGCTGTCCTGCACAAG
GTCCTAAACCAGCTGGAGGAGCTGCTGAGTGACATGAAAGCAGATGTGACACGCTTGCCCTCCATGTTGT
CACGCATCCCCCCGGTGGCCGCCCGTCTGCAGATGTCTGAACGCAGCATCTTGAGTCGCCTGACCAACCG
AGCTGGTGACCCCACCATCCAGCAGGGCGCTTTCGGCTCCTCTCAGATGTACAACAACAGCTTTGGGCCC
AACTTCCGGGGCCCTGGACCGGGAGGGATTGTCAACTACAACCAGATGCCCCTGGGGCCCTATGTGACTG
ACATCTAG


AGCGGACCGACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCC
TGGATTACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-RsrII     
ACCN NM_029216
Insert Size 5748 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.
Note Plasmids are not sterile.  For experiments where strict sterility is required, filtration with 0.22um filter is required.
Reference Data
RefSeq NM_029216.2, NP_083492.2
RefSeq Size 9375 bp
RefSeq ORF 5748 bp
Locus ID 269610
Gene Summary Chromatin-remodeling protein that binds DNA through histones and regulates gene transcription. May specifically recognize and bind trimethylated 'Lys-27' (H3K27me3) and non-methylated 'Lys-4' of histone H3. Plays a role in the development of the nervous system by activating the expression of genes promoting neuron terminal differentiation. In parallel, it may also positively regulate the trimethylation of histone H3 at 'Lys-27' thereby specifically repressing genes that promote the differentiation into non-neuronal cell lineages. Tumor suppressor, it regulates the expression of genes involved in cell proliferation and differentiation. Downstream activated genes may include CDKN2A that positively regulates the p53/TP53 pathway, which in turn, prevents cell proliferation. In spermatogenesis, it probably regulates histone hyperacetylation and the replacement of histones by transition proteins in chromatin, a crucial step in the condensation of spermatid chromatin and the production of functional spermatozoa.[UniProtKB/Swiss-Prot Function]
Transcript Variant: This variant (2) lacks an in-frame exon, compared to variant 1. It encodes isoform 2 which is shorter than isoform 1. Sequence Note: The RefSeq transcript and protein were derived from genomic sequence to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on 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.

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