CYP3A5

  • Official Full Name

    cytochrome P450, family 3, subfamily A, polypeptide 5
  • Overview

    This gene,CYP3A5, encodes a member of the cytochrome P450 superfamily of enzymes. The cytochrome P450 proteins are monooxygenases which catalyze many reactions involved in drug metabolism and synthesis of cholesterol, steroids and other lipids. This protein localizes to the endoplasmic reticulum and its expression is induced by glucocorticoids and some pharmacological agents. The enzyme metabolizes drugs such as cyclosporine as well as the steroid hormones testosterone, progesterone and androstenedione. This gene is part of a cluster of cytochrome P450 genes on chromosome 7q21.1. This cluster includes a pseudogene, CYP3A5P1, which is very similar to CYP3A5. This similarity has caused some difficulty in determining whether cloned sequences represent the gene or the pseudogene. Multiple alternatively spliced transcript variants have been identified for this gene.
  • Synonyms

    CYP3A5;cytochrome P450, family 3, subfamily A, polypeptide 5;cytochrome P450, subfamily IIIA (niphedipine oxidase), polypeptide 5;cytochrome P450 3A5;CP35;P450PCN3;PCN3;cytochrome P-450;niphedipine oxidase;cytochrome P450 HLp2;cytochrome P450-PC

Recombinant Proteins

  • Human
  • Rhesus macaque
  • Cynomolgus
  • E.coli
  • Insect Cell
  • Mammalian Cell
  • HEK293
  • Wheat Germ
  • In Vitro Cell Free System
  • HEK293T
  • GST
  • Non
  • His
  • Myc&DDK
  • His&Fc&Avi
Cat.# Product name Source (Host) Species Tag Protein Length Price
CYP3A5-11785H Recombinant Human CYP3A5, GST-tagged E.coli Human GST 152-502a.a.
CYP3A5-11786H Active Recombinant Human CYP3A5 Insect Cell Human Non
CYP3A5-11787H Active Recombinant Human CYP3A5 Insect Cell Human Non
CYP3A5-549H Active Recombinant Human CYP3A5 E.coli Human Non
CYP3A5-1160R Recombinant Rhesus monkey CYP3A5 Protein, His-tagged Mammalian Cell Rhesus macaque His
CYP3A5-12H Recombinant Human CYP3A5 protein, MYC/DDK-tagged HEK293 Human Myc&DDK
CYP3A5-2276H Recombinant Human CYP3A5 Protein, GST-tagged Wheat Germ Human GST
CYP3A5-26690TH Recombinant Human CYP3A5 Wheat Germ Human Non 502 amino acids
CYP3A5-7106HCL Recombinant Human CYP3A5 293 Cell Lysate HEK293 Human Non
CYP3A5-01H Active Recombinant Human CYP3A5 Protein E.coli Human
CYP3A5-118HF Recombinant Full Length Human CYP3A5 Protein In Vitro Cell Free System Human Full L. 502 amino acids
CYP3A5-129C Active Recombinant Cynomolgus CYP3A5 Protein E.coli Cynomolgus
CYP3A5-2438HF Recombinant Full Length Human CYP3A5 Protein, GST-tagged In Vitro Cell Free System Human GST Full L. 502 amino acids
CYP3A5-3567H Recombinant Human CYP3A5 Protein, Myc/DDK-tagged, C13 and N15-labeled HEK293T Human Myc&DDK
CYP3A5-3766H Recombinant Human CYP3A5 protein, His-tagged E.coli Human His 1-502aa
CYP3A5-69H Active Recombinant Human CYP3A5 Protein E.coli Human
CYP3A5-82H Active Recombinant Human CYP3A5 Protein E.coli Human
CYP3A5-985R Recombinant Rhesus Macaque CYP3A5 Protein, His (Fc)-Avi-tagged HEK293 Rhesus macaque His&Fc&Avi
CYP3A5-985R-B Recombinant Rhesus Macaque CYP3A5 Protein Pre-coupled Magnetic Beads HEK293 Rhesus macaque
Kit-0903 CYP3A5 Green Screening Kit Non
Kit-0913 CYP3A5 Blue Screening Kit Non

    Involved Pathway

    CYP3A5 involved in several pathways and played different roles in them. We selected most pathways CYP3A5 participated on our site, such as Aflatoxin activation and detoxification,Biological oxidations,Chemical carcinogenesis, which may be useful for your reference. Also, other proteins which involved in the same pathway with CYP3A5 were listed below. Creative BioMart supplied nearly all the proteins listed, you can search them on our site.

    Pathway Name Pathway Related Protein
    Cytochrome P450 - arranged by substrate type CYP11B2,CYP2K17,CYP2C19,CYP4F12,CYP1B1,CYP11B1,CYP3A7-CYP3AP1,CYP11A1,FDX1,CYP2K8
    Drug metabolism - cytochrome P450 CYP2C8,ADH7,CYP2E1,CYP2D6,ADH2-1,CYP2C9,ADH5,ADH1C,ADH1A,CYP2C19
    Chemical carcinogenesis UGT1A9,SULT2A1,Nat3,CYP2A13,GSTT2,CYP2C37,UGT1A7C,AKR1C2,ADH2-1,ADH4
    Aflatoxin activation and detoxification CYP3C1,GGT6,DPEP1,ACY3,FAM84B,CYP2Y3,GGTLC1,CYP3C4,CYP1A2,CYP3A4
    Biological oxidations FDX1L,CYP2A7,CYP51A1,CYP4F12,AHCY,ADH8B,SULT1C2,UGT1B1,CYP2AD2,CYP24A1
    Metabolism FABP12,COX11,CYP2AD6,APOC2,MED22,PROZA,COX10,ACSF3,COQ6,LYPLA1
    Metabolic pathways POLE4,MTHFR,PPCS,CS,PKLR,UGP2B,SPHK1,PIGU,ENPP3,ATP5G1

    Protein Function

    CYP3A5 has several biochemical functions, for example, aromatase activity,heme binding,iron ion binding. Some of the functions are cooperated with other proteins, some of the functions could acted by CYP3A5 itself. We selected most functions CYP3A5 had, and list some proteins which have the same functions with CYP3A5. You can find most of the proteins on our site.

    Function Related Protein
    oxidoreductase activity TDH,CYP2X7,GPD1B,CYP11C1,CYP2AD2,CYP1A,C10orf33,CYP2A12,HIBADHA,CYP4V7
    oxygen binding CYP2J6,CYP19A1,HBB-Y,CYP2P7,CYP2D6,CYP2D10,CYP2D26,CYP3A7,CYGB1,NGB
    iron ion binding HBE,CYP7A1,HBM,CYP2D10,EGLN3,P4HA1B,HBB-BH1,P4HTM,CYP2D9,CYP2A7
    heme binding HBB-B2,CYP46A1.3,CYP4F22,NOX5,HBM,CYP2K16,SDHC,SUOX,CYP2V1,HBE1
    monooxygenase activity CYP1C2,CYP2K6,CYP2X9,FMO2,YWHAQB,CYP2P10,CYP2B19,CYP1A4,CYP1A,CYP2X10.2
    aromatase activity CYP2C50,CYP2C38,CYP2B19,CYP1A4,CYP1A2,CYP1D1,CYP4X1,CYP2C9,CYP1A1,CYP2A13

    Interacting Protein

    CYP3A5 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 CYP3A5 here. Most of them are supplied by our site. Hope this information will be useful for your research of CYP3A5.

    CYB5A;ETV5;RDH13;ATOH8

    Resources

    References

    • Uehara, S; Murayama, N; et al. Immunochemical detection of cytochrome P450 enzymes in small intestine microsomes of male and female untreated juvenile cynomolgus monkeys. XENOBIOTICA 44:769-774(2014).
    • Uehara, S; Murayama, N; et al. Immunochemical quantification of cynomolgus CYP2J2, CYP4A and CYP4F enzymes in liver and small intestine. XENOBIOTICA 45:124-130(2015).

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