Increased protein glycation in fructosamine 3-kinase-deficient mice

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Abstract

Amines, including those present on proteins, spontaneously react with glucose to form fructosamines in a reaction known as glycation. In the present paper, we have explored, through a targeted gene inactivation approach, the role of FN3K (fructosamine 3-kinase), an intracellular enzyme that phosphorylates free and protein-bound fructose-ε-lysines and which is potentially involved in protein repair. Fn3k-/- mice looked healthy and had normal blood glucose and serum fructosamine levels. However, their level of haemoglobin-bound fructosamines was approx. 2.5-fold higher than that of control (Fn3k +/+) or Fn3k+/- mice. Other intracellular proteins were also significantly more glycated in Fn3k-/- mice in erythrocytes (1.8-2.2-fold) and in brain, kidney, liver and skeletal muscle (1.2-1.8-fold), indicating that FN3K removes fructosamines from intracellular proteins in vivo. The urinary excretion of free fructose-ε-lysine was 10-20-fold higher in fed mice compared with mice starved for 36 h, and did not differ between fed Fn3k+/+ and Fn3k-/- mice, indicating that food is the main source of urinary fructose-ε-lysine in these mice and that FN3K does not participate in the metabolism of food-derived fructose-ε-lysine. However, in starved animals, the urinary excretion of fructose-ε-lysine was 2.5-fold higher in Fn3k-/- mice compared with Fn3k+/+ or Fn3k +/- mice. Furthermore, a marked increase (5-13-fold) was observed in the concentration of free fructose-ε-lysine in tissues of fed Fn3k -/- mice compared with control mice, indicating that FN3K participates in the metabolism of endogenously produced fructose-ε-lysine. Taken together, these data indicate that FN3K serves as a protein repair enzyme and also in the metabolism of endogenously produced free fructose-ε-lysine. © 2006 Biochemical Society.

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Veiga-Da-Cunha, M., Jacquemin, P., Delpierre, G., Godfraind, C., Théate, I., Vertommen, D., … Van Schaftingen, E. (2006). Increased protein glycation in fructosamine 3-kinase-deficient mice. Biochemical Journal, 399(2), 257–264. https://doi.org/10.1042/BJ20060684

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