CEE (GET4) (NM_015949) Human 3' UTR Clone

CAT#: SC211952

3' UTR clone of chromosome 7 open reading frame 20 (C7orf20) for miRNA target validation



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CNY 4845.00


货期*
3周

规格
    • 10 ug

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Firefly luciferase assay kit, 150 assays
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DH5α Chemically Competent Cells (≥10^8 cfu/μg of pUC19 DNA)
    • 5 x 200 ul

CNY 1280.00

Specifications

Product Data
Product Name CEE (GET4) (NM_015949) Human 3' UTR Clone
Vector pMirTarget
Synonyms C7orf20; CEE; CGI-20; TRC35
ACCN NM_015949
Insert Size 1044 bp
Sequence Data
>SC211952 3’UTR clone of NM_015949
The sequence shown below is from the reference sequence of NM_015949. The complete sequence of this clone may contain minor differences, such as SNPs.
Blue=Stop Codon Red=Cloning site

GGCAAGTTGGACGCCCGCAAGATCCGCGAGATTCTCATTAAGGCCAAGAAGGGCGGAAAGATCGCCGTG
TAACAATTGGCAGAGCTCAGAATTCAAGCGATCGCC
AGCGACGGCAGCCCCATCGAGCTGGACTGAACTGGCCAGGCCACGTGGAGACACCACGGTCGACGACGG
CTGGAGGGACGTTTCAGAGGCGAGTCCTGGGTGGCTCCTCGCCTTGGGGGCTCCTGGCCCTGAGGCTGG
CGGTGGCCGCATGCCGGCGCGTGTCTGTTTCTGTGCGGCGGCTCAGGGTGGCGCGGCTGCTGCTCACTG
TGCTGCTGGGACCCAAGAGTGGGGCGTCGCCCCTGCTGGCCGCCGCGTCCCCCGAGATTGACCCACAAT
AAAGCACAGGCCTTACCGCGGCGTCACCCTCTCCCACTCCTTTGTTCTGGGTCCTTTCGGGAGGGCTGA
TGGGCAGCACAGGAGGCCCGTCCTCGGGGGGCTGCGCACATCACGCTCCTTGCCGGGCGTCCGGCACAG
CTGCGGTCACCAAAGCAGGTGCTGGCCCTCGGACCTGAGAGCCCAGCCAGGGCCCATGTGGTCTGCAAA
TGGGAGCGGCTGTTTTTGAACACGGGGTCATTCTGCAGTCAGGACGAACCGGTCCCCGTCGCAGACGGA
GTGCACGTGCCCTGCGCCACATCCTCACGCTCGGTGGAGGGACGCGTGCGGCGGGACGGTGCCTACGGG
TACTTGCAGCTGTGTCCCATGTGGCATCCCAGAGCTGCGCCCTGCTGGTCTCTGTGAGCGCCACGCTGC
TGTGCTGGAAATGCCGCTTTAAAAAGGGATACCGTGGGACTCTGCCCGTCTCTTTCATAACGCAATATT
TATTTGTATTGGGTGATGATTGATTCTTTCGACCTAACATTTTGGGTTTTAACCAAATAACCGGTCCAG
GAGTGAGCAGCTCCGTTCTGTCAGATGCTACTCCAAATGTTACCAGAACGATGACAAAAGGGGAGACGC
TCTATTTTTTCACAGTTAAATGACAGTTGTAGATTGATACGCAGTTGTGCATGGGAAGGGGAAACGCAC
AGCTTTATTTACTGTAAAGTGGAATTTCAGGAAGGCTTGTGTGAACCGTTGCGCATAAATAAACCCTTT
CTACCGGGC
AGCGGACCGACTTACGCGTAAGCGGCCGCGGCATCTAGATTCGAAGAAAATGACCGACCAAGCGACGCC
CAACCTGCCATCACGAGATTTCGATTCCACCGCCGC
Restriction Sites SgfI-RsrII     
OTI Disclaimer Our molecular clone sequence data has been matched to the sequence identifier above as a point of reference. Note that the complete sequence of this clone is largely the same as the reference sequence but may contain minor differences , e.g., single nucleotide polymorphisms (SNPs).
Reference Data
RefSeq NM_015949.3
Synonyms C7orf20; CEE; CGI-20; TRC35
Summary As part of a cytosolic protein quality control complex, the BAG6/BAT3 complex, maintains misfolded and hydrophobic patches-containing proteins in a soluble state and participates to their proper delivery to the endoplasmic reticulum or alternatively can promote their sorting to the proteasome where they undergo degradation (PubMed:20676083, PubMed:21636303, PubMed:21743475, PubMed:28104892). The BAG6/BAT3 complex is involved in the post-translational delivery of tail-anchored/type II transmembrane proteins to the endoplasmic reticulum membrane. Recruited to ribosomes, it interacts with the transmembrane region of newly synthesized tail-anchored proteins and together with SGTA and ASNA1 mediates their delivery to the endoplasmic reticulum (PubMed:20676083, PubMed:28104892, PubMed:25535373). Client proteins that cannot be properly delivered to the endoplasmic reticulum are ubiquitinated and sorted to the proteasome (PubMed:28104892). Similarly, the BAG6/BAT3 complex also functions as a sorting platform for proteins of the secretory pathway that are mislocalized to the cytosol either delivering them to the proteasome for degradation or to the endoplasmic reticulum (PubMed:21743475). The BAG6/BAT3 complex also plays a role in the endoplasmic reticulum-associated degradation (ERAD), a quality control mechanism that eliminates unwanted proteins of the endoplasmic reticulum through their retrotranslocation to the cytosol and their targeting to the proteasome. It maintains these retrotranslocated proteins in an unfolded yet soluble state condition in the cytosol to ensure their proper delivery to the proteasome (PubMed:21636303).[UniProtKB/Swiss-Prot Function]
Locus ID 51608
MW 39.1
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