Pgk1 gene cDNA ORF clone, Rattus norvegicus(Norway rat) (original ) (raw )
Summary
Gene Symbol
Pgk1
Entrez Gene ID
24644
Full Name
phosphoglycerate kinase 1
Synonyms
Pgk
General protein information
Preferred Namesphosphoglycerate kinase 1 Namesphosphoglycerate kinase 1
Gene Type
protein-coding
Organism
Rattus norvegicus(Norway rat)
Genome
Chromosome: X Map Location: Xq22
Summary
kinase enzyme that is important for phosphoprotein glycolysis [RGD, Feb 2006].
mRNA and Protein(s)
mRNA
Protein
Name
NM_053291.3
NP_445743.2
phosphoglycerate kinase 1
Pathways from BioSystems
Homologies
Canis lupus familiaris (dog)
PGK1
XP_849992.1
Danio rerio (zebrafish)
pgk1
NP_998552.1
Schizosaccharomyces pombe (fission yeast)
pgk1
NP_596730.1
PGK1
XP_001100787.1
Drosophila melanogaster (fruit fly)
Pgk
NP_001259958.1
Anopheles gambiae (African malaria mosquito)
AgaP_AGAP008802
XP_314928.2
Arabidopsis thaliana (thale cress)
PGK1
NP_187884.1
Mus musculus (house mouse)
Pgk1
NP_032854.2
Rattus norvegicus (Norway rat)
Pgk1
NP_445743.2
Gallus gallus (chicken)
PGK1
NP_990316.1
Saccharomyces cerevisiae (baker's yeast)
PGK1
NP_009938.2
Arabidopsis thaliana (thale cress)
AT1G56190
NP_176015.1
Pan troglodytes (chimpanzee)
PGK1
NP_001129210.1
Caenorhabditis elegans (roundworm)
pgk-1
NP_491245.1
Kluyveromyces lactis
KLLA0A11011g
XP_451479.1
Eremothecium gossypii
AGOS_AEL038C
NP_984823.2
Magnaporthe oryzae (rice blast fungus)
MGG_05063
XP_003712576.1
Neurospora crassa
NCU07914
XP_962430.1
Homo sapiens (human)
PGK1
NP_000282.1
Bos taurus (cattle)
PGK1
NP_001029471.1
Xenopus tropicalis (tropical clawed frog)
pgk1
NP_001016545.1
Gene Ontology
Bibliography
Related articles in PubMedFlotillin-1 facilitates toll-like receptor 3 signaling in human endothelial cells. Fork C, Hitzel J, Nichols BJ, Tikkanen R, Brandes RP Basic research in cardiology109(6)439(2014)The application of selective reaction monitoring confirms dysregulation of glycolysis in a preclinical model of schizophrenia. Martins-de-Souza D, Alsaif M, Ernst A, Harris LW, Aerts N, Lenaerts I, Peeters PJ, Amess B, Rahmoune H, Bahn S, Guest PC BMC research notes5146(2012 Mar)Analysis of proteomic changes induced upon cellular differentiation of the human intestinal cell line Caco-2. Buhrke T, Lengler I, Lampen A Development, growth & differentiation53(3)411-26(2011 Apr)MHC class II-associated proteins in B-cell exosomes and potential functional implications for exosome biogenesis. Buschow SI, van Balkom BW, Aalberts M, Heck AJ, Wauben M, Stoorvogel W Immunology and cell biology88(8)851-6(2010 Nov-Dec)Defining the membrane proteome of NK cells. Ghosh D, Lippert D, Krokhin O, Cortens JP, Wilkins JA Journal of mass spectrometry : JMS45(1)1-25(2010 Jan)GeneRIFs: Gene References Into Functions What's a GeneRIF?
The following Pgk1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Pgk1 cDNA ORF which is encoded by the open reading frame (ORF) sequence. ORF sequences can be delivered in our standard vector, pcDNA3.1+/C-(K)DYK or the vector of your choice as an expression/transfection-ready ORF clone. Not the clone you want? Click here to find your clone.
1611211812413013614214815416016617217818419019611021108111411201
ATGTCGCTTT CTAACAAGCT GACTTTGGAC AAGCTGGACG TGAAGGGGAA GCGGGTCGTG ATGAGGGTGG ACTTCAATGT TCCTATGAAG AACAACCAGA TAACGAATAA CCAAAGGATC AAGGCTGCTG TCCCAAGCAT CAAATTCTGC TTGGACAATG GAGCCAAGTC GGTTGTGCTT ATGAGCCACC TGGGCCGTCC TGATGGTGTG CCCATGCCCG ACAAGTACTC CTTAGAGCCA GTTGCTGCAG AACTCAAATC TCTGCTGGGC AAGGATGTTC TGTTCTTGAA GGATTGTGTG GGCTCAGAAG TAGAGAATGC CTGTGCCAAC CCAGCGGCTG GGACTGTCAT CCTCCTGGAG AACCTCCGCT TTCATGTAGA GGAAGAAGGG AAGGGAAAAG ATGCTTCTGG GAACAAGGTT AAAGCTGAGC CAGCTAAAAT TGATGCTTTC CGAGCCTCCC TGTCCAAACT TGGAGATGTC TATGTCAATG ATGCTTTTGG GACTGCACAC AGAGCCCACA GTTCCATGGT GGGTGTGAAT CTGCCACAGA AGGCTGGTGG ATTTTTGATG AAGAAGGAGC TGAACTACTT TGCCAAGGCT TTGGAGAGTC CAGAGCGACC CTTCCTGGCT ATCTTGGGAG GAGCTAAAGT TGCAGACAAG ATCCAGCTGA TCAATAATAT GCTAGACAAA GTCAATGAGA TGATCATCGG TGGGGGAATG GCTTTTACCT TCCTTAAGGT GCTCAACAAC ATGGAGATTG GCACATCTCT GTATGATGAA GAGGGAGCCA AGATTGTCAA AGATCTCATG GCCAAAGCTG AGAAAAATGG TGTGAAGATT ACCTTGCCTG TTGACTTTGT CACTGCTGAC AAATTTGATG AGAATGCAAA GACTGGCCAA GCTACTGTGG CCTCTGGTAT ACCTGCTGGC TGGATGGGCT TGGACTGTGG TACTGAGAGC AGTAAGAAAT ATGCTGAGGC TGTGGCTCGA GCTAAGCAGA TTGTTTGGAA CGGTCCTGTT GGGGTATTTG AATGGGAAGC CTTTGCCAGG GGAACCAAGT CCCTCATGGA TGAGGTGGTG AAAGCCACGT CTAGGGGCTG CATCACTATC ATAGGAGGCG GAGACACCGC CACTTGCTGT GCCAAATGGA ACACAGAGGA TAAAGTCAGC CATGTGAGCA CTGGGGGCGG CGCCAGTCTA GAGCTCCTGG AAGGTAAAGT CCTTCCTGGG GTGGATGCTC TCAGCAATGT TTAG
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.
RefSeq
NP_445743.2
---------------
------------
CDS
5..1258
Translation
Target ORF information: RefSeq Version NM_053291.3 Organism Rattus norvegicus(Norway rat) Definition Rattus norvegicus phosphoglycerate kinase 1 (Pgk1), mRNA. Target ORF information: Epitope DYKDDDDK Bacterial selection AMPR Mammalian selection NeoR Vector pcDNA3.1+/C-(K)DYK
NM_053291.3
---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------
-----------------------------------------------------------------
ORF Insert Sequence:
1611211812413013614214815416016617217818419019611021108111411201
ATGTCGCTTT CTAACAAGCT GACTTTGGAC AAGCTGGACG TGAAGGGGAA GCGGGTCGTG ATGAGGGTGG ACTTCAATGT TCCTATGAAG AACAACCAGA TAACGAATAA CCAAAGGATC AAGGCTGCTG TCCCAAGCAT CAAATTCTGC TTGGACAATG GAGCCAAGTC GGTTGTGCTT ATGAGCCACC TGGGCCGTCC TGATGGTGTG CCCATGCCCG ACAAGTACTC CTTAGAGCCA GTTGCTGCAG AACTCAAATC TCTGCTGGGC AAGGATGTTC TGTTCTTGAA GGATTGTGTG GGCTCAGAAG TAGAGAATGC CTGTGCCAAC CCAGCGGCTG GGACTGTCAT CCTCCTGGAG AACCTCCGCT TTCATGTAGA GGAAGAAGGG AAGGGAAAAG ATGCTTCTGG GAACAAGGTT AAAGCTGAGC CAGCTAAAAT TGATGCTTTC CGAGCCTCCC TGTCCAAACT TGGAGATGTC TATGTCAATG ATGCTTTTGG GACTGCACAC AGAGCCCACA GTTCCATGGT GGGTGTGAAT CTGCCACAGA AGGCTGGTGG ATTTTTGATG AAGAAGGAGC TGAACTACTT TGCCAAGGCT TTGGAGAGTC CAGAGCGACC CTTCCTGGCT ATCTTGGGAG GAGCTAAAGT TGCAGACAAG ATCCAGCTGA TCAATAATAT GCTAGACAAA GTCAATGAGA TGATCATCGG TGGGGGAATG GCTTTTACCT TCCTTAAGGT GCTCAACAAC ATGGAGATTG GCACATCTCT GTATGATGAA GAGGGAGCCA AGATTGTCAA AGATCTCATG GCCAAAGCTG AGAAAAATGG TGTGAAGATT ACCTTGCCTG TTGACTTTGT CACTGCTGAC AAATTTGATG AGAATGCAAA GACTGGCCAA GCTACTGTGG CCTCTGGTAT ACCTGCTGGC TGGATGGGCT TGGACTGTGG TACTGAGAGC AGTAAGAAAT ATGCTGAGGC TGTGGCTCGA GCTAAGCAGA TTGTTTGGAA CGGTCCTGTT GGGGTATTTG AATGGGAAGC CTTTGCCAGG GGAACCAAGT CCCTCATGGA TGAGGTGGTG AAAGCCACGT CTAGGGGCTG CATCACTATC ATAGGAGGCG GAGACACCGC CACTTGCTGT GCCAAATGGA ACACAGAGGA TAAAGTCAGC CATGTGAGCA CTGGGGGCGG CGCCAGTCTA GAGCTCCTGG AAGGTAAAGT CCTTCCTGGG GTGGATGCTC TCAGCAATGT TTAG
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.
The application of selective reaction monitoring confirms dysregulation of glycolysis in a preclinical model of schizophrenia. BMC research notes5146(2012 Mar) Martins-de-Souza D,Alsaif M,Ernst A,Harris LW,Aerts N,Lenaerts I,Peeters PJ,Amess B,Rahmoune H,Bahn S,Guest PC
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