Paraoxonase-I (PON-I) genotype and activity and in vivo oxidized plasma low-density lipoprotein in Type II diabetes

被引:30
|
作者
Sampson, MJ [1 ]
Braschi, S
Willis, G
Astley, SB
机构
[1] Bertram Diabet Res Unit, Norwich, Norfolk, England
[2] Norwich Univ Hosp, Norwich NR4 7UY, Norfolk, England
[3] Inst Food Res, Norwich NR4 7UA, Norfolk, England
[4] Dept Mol Genet, Norwich NR4 7UY, Norfolk, England
关键词
insulin resistance; low-density lipoprotein (LDL); paraoxonase (PON); polymorphism; NMR spectroscopy; Type II diabetes;
D O I
10.1042/CS20050089
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
The HDL (high-density lipoprotein)-associated enzyme PON (paraoxonase)-I protects LIDL (low-density lipoprotein) from oxidative modification in vitro, although it is unknown if this anti-atherogenic action occurs in vivo. In a cross-sectional study of 58 Type II diabetic subjects and 50 controls, we examined the fasting plasma LIDL basal conjugated diene concentration [a direct measurement of circulating oxLDL (oxidatively modified LIDL)], lipoprotein particle size by NMR spectroscopy, PON-I polymorphisms (coding region polymorphisms Q192R and L55M, and gene promoter polymorphisms - 108C/T and - 162G/A), PON activity (with paraoxon or phenyl acetate as the substrates) and dietary antioxidant intake. Plasma oxLDL concentrations were higher in Type II diabetic patients (males, P=0.048; females, P=0.009) and unrelated to NMR lipoprotein size, PON-I polymorphisms or PON activity (with paraoxon as the substrate) in any group. In men with Type II diabetes, however, there was a direct relationship between oxLDL concentrations and PON activity (with phenyl acetate as the substrate; r=0.611, P=0.0001) and an atherogenic NMR lipid profile in those who were PON-I 55LL homozygotes. Circulating oxLDL concentrations in vivo were unrelated to PON-I genotypes or activity, except in male Type 11 diabetics where there was a direct association between PON activity (with phenyl acetate as the substrate) and oxLDL levels. These in vivo data contrast with in vitro data, and may be due to confounding by dietary fat intake. Male Type II diabetic subjects with PON-I 55LL homozygosity have an atherogenic NMR lipid profile independent of LDL oxidation. These data do not support an in vivo action of PON on LIDL oxidation.
引用
收藏
页码:189 / 197
页数:9
相关论文
共 50 条
  • [21] Regulation of Apolipoprotein A-I Gene Expression in Human Macrophages by Oxidized Low-Density Lipoprotein
    Nekrasova, Ekaterina V.
    Larionova, Ekaterina E.
    Danko, Katerina
    Kuzmina, Darya O.
    Shavva, Vladimir S.
    Kudriavtsev, Igor V.
    Orlov, Sergey V.
    BIOCHEMISTRY-MOSCOW, 2021, 86 (10) : 1201 - 1213
  • [22] Biodistribution of 123I-labelled oxidized low-density lipoprotein (oxLDL) in normal mice
    Kawashima, Hidekazu
    Nakano, Atsushi
    Miyake, Yoshinori
    Zeniya, Tsutomu
    Koshino, Kazuhiro
    Yamamoto, Akihide
    Kakino, Akemi
    Fujita, Yoshiko
    Temma, Takashi
    Sawamura, Tatsuya
    Iida, Hidehiro
    JOURNAL OF LABELLED COMPOUNDS & RADIOPHARMACEUTICALS, 2017, 60 : S472 - S472
  • [23] Regulation of Apolipoprotein A-I Gene Expression in Human Macrophages by Oxidized Low-Density Lipoprotein
    Ekaterina V. Nekrasova
    Ekaterina E. Larionova
    Katerina Danko
    Darya O. Kuzmina
    Vladimir S. Shavva
    Igor V. Kudriavtsev
    Sergey V. Orlov
    Biochemistry (Moscow), 2021, 86 : 1201 - 1213
  • [24] Association between measured or calculated small dense low-density lipoprotein cholesterol and oxidized low-density lipoprotein in subjects with or without type 2 diabetes mellitus
    Kim, Hyun-Ki
    Hong, Jinyoung
    Ahn, Sunyoung
    Lee, Woochang
    Chun, Sail
    Min, Won-Ki
    JOURNAL OF CLINICAL LABORATORY ANALYSIS, 2023, 37 (01)
  • [25] Serum paraoxonase-I activity is unaffected by short-term administration of simvastatin, bezafibrate, and their combination in type 2 diabetes mellitus
    Dullaart, R. P. F.
    de Vries, R.
    Voorbij, H. A. M.
    Sluiter, W. J.
    van Tol, A.
    EUROPEAN JOURNAL OF CLINICAL INVESTIGATION, 2009, 39 (03) : 200 - 203
  • [26] Scavenger receptor class B type I as a receptor for oxidized low density lipoprotein
    Gillotte-Taylor, K
    Boullier, A
    Witztum, JL
    Steinberg, D
    Quehenberger, O
    JOURNAL OF LIPID RESEARCH, 2001, 42 (09) : 1474 - 1482
  • [27] Interactions between macrophages and oxidized low density lipoprotein in the presence of type I collagen
    Chen, Q
    Wei, EH
    Chen, XY
    Wang, N
    Jürgens, G
    BIOFACTORS, 1997, 6 (02) : 131 - 138
  • [28] Paraoxonase, oxidative stress, oxidized low density lipoprotein are associated with macrovascular complications in patients with type 2 diabetes mellitus
    Kaya, S.
    Sezgin, C.
    Aydin, S.
    Himmetoglu, S.
    Uzun, H.
    Yumuk, V.
    Hatemi, H.
    FEBS JOURNAL, 2006, 273 : 205 - 205
  • [29] Comparison of 125I- and 111In-labeled peptide probes for in vivo detection of oxidized low-density lipoprotein in atherosclerotic plaques
    Temma, Takashi
    Kondo, Naoya
    Yoda, Keiko
    Nishigori, Kantaro
    Onoe, Satoru
    Shiomi, Masashi
    Ono, Masahiro
    Saji, Hideo
    ANNALS OF NUCLEAR MEDICINE, 2018, 32 (06) : 425 - 429
  • [30] Immunogenic Oxidized Low-density Lipoprotein/β2-glycoprotein I Complexes in the Diagnostic Management of Atherosclerosis
    Lopez, Luis R.
    Kobayashi, Kazuko
    Matsunami, Yukana
    Matsuura, Eiji
    CLINICAL REVIEWS IN ALLERGY & IMMUNOLOGY, 2009, 37 (01) : 12 - 19