Mechanism based inhibition of human cytochrome P450 2A6, partition ratio - BioAssay Summary
The inhibition of human cytochrome P450s (CYPs) is one of the most common mechanisms which can lead to drug-drug interactions. The inhibition of CYPs can be reversible (competitive or non-competitive) or irreversible. Irreversible inhibition usually derives from activation of a drug by CYPs into a reactive metabolite, which tightly binds to the enzyme active site, leading to a long lasting more ..
_
   
 Tested Compounds
 Tested Compounds
All(1)
 
 
Unspecified(1)
 
 
 Tested Substances
 Tested Substances
All(1)
 
 
Unspecified(1)
 
 
AID: 589182
Data Source: ChEMBL (738421)
Depositor Category: Literature, Extracted
BioAssay Version:
Deposit Date: 2012-02-15
Modify Date: 2013-05-15

Data Table (Complete):           All
Target
Sequence: RecName: Full=Cytochrome P450 2A6; AltName: Full=1,4-cineole 2-exo-monooxygenase; AltName: Full=CYPIIA6; AltName: Full=Coumarin 7-hydroxylase; AltName: Full=Cytochrome P450 IIA3; AltName: Full=Cytochrome P450(I)
Description ..   
Protein Family: Cytochrome P450
Comment ..   

Gene:CYP2A6     Related Protein 3D Structures
Tested Compound:
Description:
Title: Cytochrome p450 enzymes mechanism based inhibitors: common sub-structures and reactivity.

Abstract: The inhibition of human cytochrome P450s (CYPs) is one of the most common mechanisms which can lead to drug-drug interactions. The inhibition of CYPs can be reversible (competitive or non-competitive) or irreversible. Irreversible inhibition usually derives from activation of a drug by CYPs into a reactive metabolite, which tightly binds to the enzyme active site, leading to a long lasting inactivation. This process is called "mechanism based inhibition" or "suicide inhibition". The irreversible inactivation usually implies the formation of a covalent bond between the metabolite and the enzyme, which can lead to hapten formation and can in some cases trigger an autoimmune-response. For these reasons it is of utmost importance to study the mechanism of the CYP inhibition of new potential drugs as early as possible during the drug discovery process. The literature on CYPs is vast and covers numerous aspects of their biology and biochemistry, however to our knowledge there is no general and systematic review focusing on mechanism-based inhibitors; we have reviewed the literature and compiled all the available data on chemical entities, which are known to be CYP suicide inhibitors. Each compound is reported together with its chemical structure, the CYP isoform and the parameters describing the inactivation. Literature references are reported together with their PMID (PubMed ID number) to allow a fast retrieval of the papers. This review offers a quick reference to help predict liabilities of new chemical entities without carrying out extensive in vitro work, and will hopefully help in designing safer drugs.
(PMID: 16248836)
Categorized Comment
ChEMBL Assay Type: ADMET

ChEMBL Assay Data Source: Scientific Literature

ChEMBL Assay Test Type: In vitro

ChEMBL Target ID: 20073

ChEMBL target type: Target is a single protein chain

Result Definitions
TIDNameDescriptionHistogramTypeUnit
OutcomeThe BioAssay activity outcomeOutcome
1Partition ratio activity commentPartition ratio activity commentString
2Partition ratio standard flagPartition ratio standard flagInteger
3Partition ratio qualifierPartition ratio qualifierString
4Partition ratio published valuePartition ratio published valueFloat
5Partition ratio standard valuePartition ratio standard valueFloat

Data Table (Concise)
Classification
PageFrom: