EPRS

  • Official Full Name

    glutamyl-prolyl-tRNA synthetase
  • Overview

    Aminoacyl-tRNA synthetases are a class of enzymes that charge tRNAs with their cognate amino acids. The protein encoded by this gene is a multifunctional aminoacyl-tRNA synthetase that catalyzes the aminoacylation of glutamic acid and proline tRNA species. Alternative splicing has been observed for this gene, but the full-length nature and biological validity of the variant have not been determined.
  • Synonyms

    EPRS;glutamyl-prolyl-tRNA synthetase;QARS, QPRS;bifunctional glutamate/proline--tRNA ligase;EARS;GLUPRORS;glutamate tRNA ligase;PARS;proline tRNA ligase;proline-tRNA ligase;prolyl-tRNA synthetase;glutaminyl-tRNA synthetase;proliferation-induci

Recombinant Proteins

  • Human
  • Chicken
  • Mouse
  • Zebrafish
  • E.coli
  • Mammalian Cell
  • HEK293T
  • HEK293
  • GST
  • His
  • His&T7
  • Myc&DDK
  • His&Fc&Avi
Cat.# Product name Source (Host) Species Tag Protein Length Price
EPRS-12504H Recombinant Human EPRS, GST-tagged E.coli Human GST C-term-350a.a.
EPRS-3461H Recombinant Human EPRS protein, His-tagged E.coli Human His 1163-1512 aa
EPRS-1540C Recombinant Chicken EPRS Mammalian Cell Chicken His
EPRS-5264M Recombinant Mouse EPRS Protein Mammalian Cell Mouse His
EPRS-8223H Recombinant Human EPRS protein, His & T7-tagged E.coli Human His&T7 Asp749~Thr956
Eprs-8224M Recombinant Mouse Eprs protein, His & T7-tagged E.coli Mouse His&T7 Gly1007~Tyr1512
EPRS-8402Z Recombinant Zebrafish EPRS Mammalian Cell Zebrafish His
EPRS-2208H Recombinant Human EPRS Protein, Myc/DDK-tagged, C13 and N15-labeled HEK293T Human Myc&DDK
EPRS-2826M Recombinant Mouse EPRS Protein, His (Fc)-Avi-tagged HEK293 Mouse His&Fc&Avi
EPRS-2826M-B Recombinant Mouse EPRS Protein Pre-coupled Magnetic Beads HEK293 Mouse
Eprs-331M Recombinant Mouse Eprs Protein, MYC/DDK-tagged HEK293T Mouse Myc&DDK

    Involved Pathway

    EPRS involved in several pathways and played different roles in them. We selected most pathways EPRS participated on our site, such as Porphyrin and chlorophyll metabolism,Aminoacyl-tRNA biosynthesis,Metabolic pathways, which may be useful for your reference. Also, other proteins which involved in the same pathway with EPRS were listed below. Creative BioMart supplied nearly all the proteins listed, you can search them on our site.

    Pathway Name Pathway Related Protein
    Metabolic pathways AKR1B7,NDUFV2,ST6GAL2A,POLR2I,ASS1,POLR1A,PIK3C2B,DAO.2,SDSL,CMPK2
    Aminoacyl-tRNA biosynthesis VARS,NARS2,TARS2,SARS,YARS,WARS,FARSB,GATB,GARS,DARS2
    Porphyrin and chlorophyll metabolism HMOX2A,UGT1A6A,CPOX,HEPH,HMOX1,HMOX2,PPOX,UGT2A2,UGT2A1,UGT2B15

    Protein Function

    EPRS has several biochemical functions, for example, ATP binding,GTPase binding,RNA stem-loop binding. Some of the functions are cooperated with other proteins, some of the functions could acted by EPRS itself. We selected most functions EPRS had, and list some proteins which have the same functions with EPRS. You can find most of the proteins on our site.

    Function Related Protein
    protein binding COMMD3,GGA1,ZNF514,HLA-A,DZIP1,KTN1,FOXC2,IFT57,CBLB,ZNF207
    glutamate-tRNA ligase activity EARS2
    GTPase binding GNB3,GM5506,STOML2,GNB2,PTPRN,RAB3D,HSP90AA1,SPTBN1,RASA1,VPS41
    ATP binding DAPK2,TOR2A,MTHFD1,MAP3K6,CAMK1DB,ERBB4A,PSMC1A,PFKFB2A,NME4,EIF4A1B
    proline-tRNA ligase activity PARS2
    RNA stem-loop binding CPEB3,DDX3X,DAZAP1

    Interacting Protein

    EPRS has direct interactions with proteins and molecules. Those interactions were detected by several methods such as yeast two hybrid, co-IP, pull-down and so on. We selected proteins and molecules interacted with EPRS here. Most of them are supplied by our site. Hope this information will be useful for your research of EPRS.

    IARS;HSP90AA1;gag;NFKBIE;IKBKB;MAP3K7;SYNCRIP;ATG12;ETS1;TFE3;MCC;EEF1D

    Resources

    References

    • Shin, C; Hwang, GS; et al. H-1, C-13 and N-15 resonance assignment of WHEP domains of human glutamyl-prolyl tRNA synthetase. BIOMOLECULAR NMR ASSIGNMENTS 9:25-30(2015).
    • Saga, K; Hasegawa, F; et al. Comparative evaluation of wet and dry processes for recovering hydrocarbon from Botryococcus Braunii. APPLIED ENERGY 141:90-95(2015).

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