Aspects of the formation of lysinoalanine in milk and milk products
- 1 November 1982
- journal article
- research article
- Published by Cambridge University Press (CUP) in Journal of Dairy Research
- Vol. 49 (4) , 725-736
- https://doi.org/10.1017/s0022029900022858
Abstract
Treatment of food proteins with heat and/or alkali may convert some of the constituent amino acids into the unnatural amino acid lysinoalanine (LAL), which has been found to cause kidney damage (nephrocytomegaly) when fed to rats. LAL may be produced by β-elimination of a phosphoseryl, of a glycosylated seryl or of a cystyl residue followed by a nucleophilic addition to a lysyl residue. The formation of LAL in αs0-, αsl- and β-casein is discussed in relation to the location of phosphoseryl residues immediately adjacent to lysyl residues. The influence of pH, temperature and exposure time on the formation of LAL in whole casein is described in detail. The formation of LAL can be prevented by the addition of reducing agents, dephosphorylation or chemical modification of the є-amino group of lysine. The LAL content of foodstuffs can be measured accurately by ion-exchange chromatography and a survey is given of the LAL content of commercial milk and milk products.The biological effects of free and protein-bound LAL are discussed. It seems that renal changes due to the presence of LAL in the diet are species-specific to the rat although recent findings have shown that no effect is observed in rats fed a mixed diet containing proteins with and without protein-bound LAL. When LAL is removed from the diet, nephrocytomegaly disappears. From these results it may be concluded that the health risks for man, connected with the eating of proteins which have been subjected to treatment with heat and/or alkali, are small.The decrease in lysine content of milk and milk products due to formation of LAL is small (0–1 or 2%) in comparison with the decrease in available lysine possibly caused by the Maillard reaction (0–24%) and so the decrease in nutritive value of food products due to LAL formation may be neglected.This publication has 44 references indexed in Scilit:
- Biological effects of alkali-treated soya protein and lactalbumin in the rat and mouseFood and Cosmetics Toxicology, 1979
- Lysinoalanine formation in alkali-treated proteins and model peptidesFood and Cosmetics Toxicology, 1979
- Simultaneous determination of lysine, lysinoalanine, furosine, and pyridosine in food and feedZeitschrift für Lebensmittel-Untersuchung und Forschung, 1979
- Evauation of lysinoalanine determinations in food proteinsZeitschrift für Lebensmittel-Untersuchung und Forschung, 1978
- REVRSIBILITY OF NEPHROCYTOMEGALY CAUSED IN RATS BY LYSINOALANINE [Ne‐(DL‐2‐AMINO‐2‐CARBOXYETHYL)‐L‐LYSINE]Journal of Food Science, 1978
- INHIBITION OF LYSINOALANINE FORMATION IN FOOD PROTEINSJournal of Food Science, 1978
- Dégradation thermique des caséines αs et β de vache. IV. — Substances peptidiques libérées. Propriétés activatrices de la croissance des bactéries lactiquesAnnales de Biologie Animale Biochimie Biophysique, 1977
- Changes in the Available Methionine and Lysine Content of Isolates and Concentrates of Milk and Plant ProteinsAnnals of Nutrition and Metabolism, 1976
- LYSINOALANINE DETERMINATION IN PROTEINSJournal of Food Science, 1975
- Chemical and nutritional modifications of sunflower proteins due to alkaline processing. Formation of amino acid crosslinks and isomerization of lysine residuesJournal of Agricultural and Food Chemistry, 1975