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Relationship: 1728
Title
Lipid Peroxidation leads to Protein Adduct Formation
Upstream event
Downstream event
AOPs Referencing Relationship
| AOP Name | Adjacency | Weight of Evidence | Quantitative Understanding | Point of Contact | Author Status | OECD Status |
|---|---|---|---|---|---|---|
| CYP2E1 activation and formation of protein adducts leading to neurodegeneration | adjacent | High | High | Brendan Ferreri-Hanberry (send email) | Under development: Not open for comment. Do not cite |
Taxonomic Applicability
Sex Applicability
Life Stage Applicability
Two main products of lipid peroxidation are MDA and HNE which are highly reactive electrophilic aldehydes. Protein adduct formation by HNE-modification of proteins is the main reaction which occurs in cells after lipid peroxidation. HNE-adducts are also used as markers for lipid peroxidation. There are two main principles of HNE-modification of proteins, the Schiff’s Base Formation and the Michael Addition. Schiff’s Base Formation is the reaction of the aldehydic group of HNE with an amino group of a protein. Where the Michael Addition is a reaction of the HNE double bond to a protein side chain. HNE has the preference for amino acid modification Cys à His à Lys which results in a covalent adduct with the protein nucleophilic side chain.
| ID | Experimental Design | Species | Upstream Observation | Downstream Observation | Citation (first author, year) | Notes |
|---|
| Title | First Author | Biological Plausibility |
Dose Concordance |
Temporal Concordance |
Incidence Concordance |
|---|
Biological Plausibility
Dose Concordance Evidence
Temporal Concordance Evidence
Incidence Concordance Evidence
Uncertainties and Inconsistencies
Other aldehyde products of lipid peroxidation can also form protein adducts with proteins. Since HNE is specific for lipid peroxidation it is widely used as marker.