Identification of Crotonaldehyde As a Hepatic Microsomal Metabolite Formed by Alpha-hydroxylation of the Carcinogen N-nitrosopyrrolidine
Overview
Affiliations
Crotonaldehyde (2-butenal), which reacts with DNA and is mutagenic and carcinogenic, was identified as a hepatic microsomal metabolite of the hepatocarcinogen N-nitrosopyrrolidine. Incubation mixtures of N-nitrosopyrrolidine, cofactors, and hepatic microsomes from Aroclor pretreated or control F344 rats were derivatized with (2,4-dinitrophenyl)hydrazine reagent and the resulting mixtures analyzed by high-performance liquid chromatography. Crotonaldehyde (2,4-dinitrophenyl)hydrazone was identified by its retention time in two different systems and by its ultraviolet and mass spectrum. The ratio of 4-hydroxybutyraldehyde, which has previously been identified as a metabolite of NPYR, to crotonaldehyde was 1.5-2 over a range of substrate concentrations. The approximate values of Km and nu max for crotonaldehyde were 5.8 mM and 0.6 nmol/min/mg of protein and for 4-hydroxybutyraldehyde 14.1 mM and 1.7 nmol/min/mg of protein, for substrate concentrations between 1 and 8 mM, with microsomes from Aroclor pretreated rats. The ratio of 4-hydroxybutyraldehyde to crotonaldehyde was 1.9 upon esterase-catalyzed solvolysis of alpha-acetoxy-N-nitrosopyrrolidine, a stable precursor to the initial product of N-nitrosopyrrolidine alpha-hydroxylation. These results demonstrate that crotonaldehyde is formed upon metabolic alpha-hydroxylation of N-nitrosopyrrolidine and suggest that it may be involved in N-nitrosopyrrolidine-macromolecule interactions.
Li Y, Hecht S Int J Mol Sci. 2022; 23(9).
PMID: 35562949 PMC: 9105260. DOI: 10.3390/ijms23094559.
Interplay between Cellular Metabolism and the DNA Damage Response in Cancer.
Moretton A, Loizou J Cancers (Basel). 2020; 12(8).
PMID: 32722390 PMC: 7463900. DOI: 10.3390/cancers12082051.
Jin L, Jagatheesan G, Lynch J, Guo L, Conklin D Toxicol Appl Pharmacol. 2020; 398:115012.
PMID: 32320793 PMC: 7375699. DOI: 10.1016/j.taap.2020.115012.
Gruz P, Shimizu M, Sugiyama K, Yamada M, Honma M Genes Environ. 2020; 42:14.
PMID: 32211083 PMC: 7092418. DOI: 10.1186/s41021-020-00154-2.
Gallelli C, Calcagnini S, Romano A, Koczwara J, de Ceglia M, Dante D Antioxidants (Basel). 2018; 7(7).
PMID: 30021985 PMC: 6070960. DOI: 10.3390/antiox7070093.