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Plasma proteins containing damaged L-isoaspartyl residues are increased in uremia: Implications for mechanism

Authors :
Enza di Carlo
Patrizia Galletti
Amelia Cimmino
Alessandra F. Perna
P Castaldo
Diego Ingrosso
Vincenzo Zappia
Natale G. De Santo
Perna, Alessandra
Castaldo, P
DE SANTO, Ng
DI CARLO, E
Cimmino, A
Galletti, P
Zappia, V
Ingrosso, Diego
Source :
Kidney International. 59(6):2299-2308
Publication Year :
2001
Publisher :
Elsevier BV, 2001.

Abstract

Plasma proteins containing damaged L-isoaspartyl residues are increased in uremia: Implications for mechanism.BackgroundSeveral alterations of protein structure and function have been reported in uremia. Impairment of a transmethylation-dependent protein repair mechanism possibly related to a derangement in homocysteine metabolism is also present in this condition, causing erythrocyte membrane protein damage. Homocysteine may affect proteins via the accumulation of its parent compound S-adenosylhomocysteine (AdoHcy), a powerful in vivo methyltransferase inhibitor. However, since plasma homocysteine is mostly protein bound, a direct influence on protein structures cannot be ruled out. We measured the levels of L-isoaspartyl residues in plasma proteins of uremic patients on hemodialysis. These damaged residues are markers of molecular age, which accumulate when transmethylation-dependent protein repair is inhibited and/or protein instability is increased.MethodsL-isoaspartyl residues in plasma proteins were quantitated using human recombinant protein carboxyl methyl transferase (PCMT). Plasma concentrations of homocysteine metabolites were also measured under different experimental conditions in hemodialysis patients.ResultsThe concentration of damaged plasma proteins was increased almost twofold compared to control (controls 147.83 ± 17.75, uremics 282.80 ± 26.40 pmol of incorporated methyl groups/mg protein, P < 0.003). The major protein involved comigrated with serum albumin. Although hyperhomocysteinemia caused a redistribution of thiols bound to plasma proteins, this mechanism did not significantly contribute to the increase in isoaspartyl residues. The S-adenosylmethionine (AdoMet)/AdoHcy concentration ratio, an indicator of the flux of methyl group transfer, was altered. This ratio was partially corrected by folate treatment (0.385 ± 0.046 vs. 0.682 ± 0.115, P < 0.01), but protein L-isoaspartate content was not.ConclusionsPlasma protein damage, as determined by protein L-isoaspartyl content, is increased in uremia. This alteration is to be ascribed to an increased protein structural instability, rather than the effect of hyperhomocysteinemia.

Details

ISSN :
00852538
Volume :
59
Issue :
6
Database :
OpenAIRE
Journal :
Kidney International
Accession number :
edsair.doi.dedup.....314b343a8f2393ded02e965e3a6d6bd9
Full Text :
https://doi.org/10.1046/j.1523-1755.2001.00747.x