Increased accumulation of the glycoxidation product N-epsilon(carboxymethyl)lysine in human tissues in diabetes and aging

被引:607
作者
Schleicher, ED
Wagner, E
Nerlich, AG
机构
[1] UNIV TUBINGEN, DEPT INTERNAL MED, DIV ENDOCRINOL METAB PATHOBIOCHEM, D-72076 TUBINGEN, GERMANY
[2] DIABET RES INST, D-80804 MUNICH, GERMANY
[3] UNIV MUNICH, DEPT PATHOL, D-80337 MUNICH, GERMANY
关键词
glycation; oxidative stress; complications of diabetes; N-epsilon(carboxymethyl)lysine; atherosclerosis;
D O I
10.1172/JCI119180
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
N-epsilon-(Carboxymethyl)lysine (CML), a major product of oxidative modification of glycated proteins, has been suggested to represent a general marker of oxidative stress and longterm damage to proteins in aging, atherosclerosis, and diabetes. To investigate the occurrence and distribution of CML in humans an antiserum specifically recognizing protein-bound CML was generated. The oxidative formation of CML from glycated proteins was reduced by lipoic acid, aminoguanidine, superoxide dismutase, catalase, and particularly vitamin E and desferrioxamine. Immunolocalization of CML in skin, lung, heart, kidney, intestine, intervertebral discs, and particularly in arteries provided evidence for an age-dependent increase in CML accumulation in distinct locations, and acceleration of this process in diabetes. Intense staining of the arterial wall and particularly the elastic membrane was found. High levels of CML modification were observed within atherosclerotic plaques and in foam cells. The preferential location of CML immunoreactivity in lesions may indicate the contribution of glycoxidation to the processes occurring in diabetes and aging. Additionally, we found increased CML content in serum proteins in diabetic patients. The strong dependence of CML formation on oxidative conditions together with the increased occurrence of CML in diabetic serum and tissue proteins suggest a role for CML as endogenous biomarker for oxidative damage.
引用
收藏
页码:457 / 468
页数:12
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共 45 条
[41]   MECHANISM OF THE DEGRADATION OF NONENZYMATICALLY GLYCATED PROTEINS UNDER PHYSIOLOGICAL CONDITIONS - STUDIES WITH THE MODEL FRUCTOSAMINE, N-EPSILON-(1-DEOXY-D-FRUCTOS-1-YL)HIPPURYL-LYSINE [J].
SMITH, PR ;
THORNALLEY, PJ .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1992, 210 (03) :729-739
[42]   GLYCATION OF SKIN COLLAGEN IN TYPE-I DIABETES-MELLITUS - CORRELATION WITH LONG-TERM COMPLICATIONS [J].
VISHWANATH, V ;
FRANK, KE ;
ELMETS, CA ;
DAUCHOT, PJ ;
MONNIER, VM .
DIABETES, 1986, 35 (08) :916-921
[43]   HIGH-AFFINITY-RECEPTOR-MEDIATED UPTAKE AND DEGRADATION OF GLUCOSE-MODIFIED PROTEINS - A POTENTIAL MECHANISM FOR THE REMOVAL OF SENESCENT MACROMOLECULES [J].
VLASSARA, H ;
BROWNLEE, M ;
CERAMI, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1985, 82 (17) :5588-5592
[44]   EPISILON-AMINO-LYSINE-BOUND GLUCOSE IN HUMAN-TISSUES OBTAINED AT AUTOPSY - INCREASE IN DIABETES-MELLITUS [J].
VOGT, BW ;
SCHLEICHER, ED ;
WIELAND, OH .
DIABETES, 1982, 31 (12) :1123-1127
[45]   PATHWAYS OF FORMATION OF GLYCOXIDATION PRODUCTS DURING GLYCATION OF COLLAGEN [J].
WELLSKNECHT, MC ;
THORPE, SR ;
BAYNES, JW .
BIOCHEMISTRY, 1995, 34 (46) :15134-15141