Glycation Reduces the Stability of ApoAI and Increases HDL Dysfunction in Diet-Controlled Type 2 Diabetes

被引:63
作者
Kashyap, Sangeeta R. [1 ]
Osme, Abdullah [2 ]
Ilchenko, Serguei [2 ]
Golizeh, Makan [2 ]
Lee, Kwangwon [2 ]
Wang, Shuhui [3 ]
Bena, James [4 ]
Previs, Stephen F. [5 ]
Smith, Jonathan D. [3 ]
Kasumov, Takhar [2 ,6 ]
机构
[1] Cleveland Clin, Dept Endocrinol & Metab, Cleveland, OH 44195 USA
[2] Northeast Ohio Med Univ, Dept Pharmaceut Sci, 4209 StateRoute 44,POB 95, Rootstown, OH 44272 USA
[3] Cleveland Clin, Dept Cellular & Mol Med, Cleveland, OH 44195 USA
[4] Cleveland Clin, Dept Quantitat Hlth Sci, Cleveland, OH 44195 USA
[5] Merck Res Labs, Kenilworth, NJ 07033 USA
[6] Cleveland Clin, Dept Hepatol, Cleveland, OH 44195 USA
基金
美国国家卫生研究院;
关键词
APOLIPOPROTEIN-A-I; HIGH-DENSITY-LIPOPROTEIN; CHOLESTEROL-METABOLISM; STABLE-ISOTOPES; LIPID-BINDING; PLASMA; INSULIN; CATABOLISM; KINETICS; MELLITUS;
D O I
10.1210/jc.2017-01551
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Context: Hyperglycemia plays a key role in the pathogenesis of cardiovascular complications of diabetes. Type 2 diabetes mellitus (T2DM) is associated with high-density lipoprotein (HDL) dysfunction and increased degradation of apolipoprotein I (ApoAI). The mechanism(s) of these changes is largely unknown. Objective: To study the role of hyperglycemia-induced glycation on ApoAI kinetics and stability in patients with diet-controlled T2DM. Design: (H2O)-H-2-metabolic labeling approach was used to study ApoAI turnover in patients with diet-controlled T2DM [n = 9 (5 F); 59.3 +/- 8.5 years] and matched healthy controls [n = 8 (4 F); 50.7 +/- 11.6 years]. The effect of Amadori glycation on in vivo ApoAI stability and the antioxidant and cholesterol efflux properties of HDL were assessed using a proteomics approach and in vitro assays. Results: Patients with T2DM had increased turnover of ApoAI and impaired cholesterol efflux and antioxidant properties of HDL. Glycated hemoglobin was negatively correlated with the half-life of ApoAI and cholesterol efflux function of HDL. Proteomics analysis identified several nonenzymatic early (Amadori) glycations of ApoAI at lysine sites. The kinetics analysis of glycated and native ApoAI peptides in patients with T2DMrevealed that glycation resulted in a threefold shorter ApoAI half-life. Conclusions: The (H2O)-H-2 method allowed the detection of early in vivo impairments in HDL metabolism and function that were related to hyperglycemia-induced glycation of ApoAI in T2DM.
引用
收藏
页码:388 / 396
页数:9
相关论文
共 37 条
[1]   Response to Comment on: Bergenstal et al. A Randomized, Controlled Study of Once-Daily LY2605541, a Novel Long-Acting Basal Insulin, Versus Insulin Glargine in Basal Insulin Treated Patients With Type 2 Diabetes. Diabetes Care 2012;35:2140-2147 [J].
Bergenstal, Richard M. ;
Rosenstock, Julio ;
Arakaki, Richard F. ;
Prince, Melvin J. ;
Qu, Yongming ;
Sinha, Vikram P. ;
Howey, Daniel C. ;
Jacober, Scott J. .
DIABETES CARE, 2013, 36 (07) :E107-+
[2]  
BLUM CB, 1985, J LIPID RES, V26, P1079
[3]   Apolipoprotein A-I glycation by Glucose and Reactive Aldehydes Alters Phospholipid Affinity but Not Cholesterol Export from Lipid-Laden Macrophages [J].
Brown, Bronwyn E. ;
Nobecourt, Estelle ;
Zeng, Jingmin ;
Jenkins, Alicia J. ;
Rye, Kerry-Anne ;
Davies, Michael J. .
PLOS ONE, 2013, 8 (05)
[4]   Apolipoprotein A-I lysine modification: Effects on helical content, lipid binding and cholesterol acceptor activity [J].
Brubaker, G ;
Peng, DQ ;
Somerlot, B ;
Abdollahian, DJ ;
Smith, JD .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR AND CELL BIOLOGY OF LIPIDS, 2006, 1761 (01) :64-72
[5]   NON ENZYMATIC GLYCATION OF APOLIPOPROTEIN-A-I - EFFECTS ON ITS SELF-ASSOCIATION AND LIPID-BINDING PROPERTIES [J].
CALVO, C ;
TALUSSOT, C ;
PONSIN, G ;
BERTHEZENE, F .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1988, 153 (03) :1060-1067
[6]   NONENZYMATIC GLYCOSYLATION OF HDL AND IMPAIRED HDL-RECEPTOR MEDIATED CHOLESTEROL EFFLUX [J].
DUELL, PB ;
ORAM, JF ;
BIERMAN, EL .
DIABETES, 1991, 40 (03) :377-384
[7]   Inefficiency of insulin therapy to correct apolipoprotein A-I metabolic abnormalities in non-insulin-dependent diabetes mellitus [J].
Duvillard, L ;
Pont, F ;
Florentin, E ;
Gambert, P ;
Vergès, B .
ATHEROSCLEROSIS, 2000, 152 (01) :229-237
[8]  
Frank PG, 2000, J LIPID RES, V41, P853
[9]   HIGH-DENSITY-LIPOPROTEIN (HDL) METABOLISM IN NONINSULIN-DEPENDENT DIABETES-MELLITUS - MEASUREMENT OF HDL TURNOVER USING TRITIATED HDL [J].
GOLAY, A ;
ZECH, L ;
SHI, MZ ;
CHIOU, YAM ;
REAVEN, GM ;
CHEN, YDI .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1987, 65 (03) :512-518
[10]   ROLE OF LIPOPROTEIN-LIPASE IN THE REGULATION OF HIGH-DENSITY-LIPOPROTEIN APOLIPOPROTEIN METABOLISM - STUDIES IN NORMAL AND LIPOPROTEIN LIPASE-INHIBITED MONKEYS [J].
GOLDBERG, IJ ;
BLANER, WS ;
VANNI, TM ;
MOUKIDES, M ;
RAMAKRISHNAN, R .
JOURNAL OF CLINICAL INVESTIGATION, 1990, 86 (02) :463-473