Paraoxonase, a cardioprotective enzyme: continuing issues

被引:138
作者
Getz, GS [1 ]
Reardon, CA [1 ]
机构
[1] Univ Chicago, Dept Pathol MC 1089, Chicago, IL 60637 USA
关键词
paraoxonase; oxidative stress; HDL; oxidized LDL; atherosclerosis; macrophages;
D O I
10.1097/00041433-200406000-00005
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Purpose of review The paraoxonase family consists of three members (PON2 and PON3) that share structural properties and enzymatic activities, among Which is the ability to hydrolyze oxidized lipids in LDL. The exact function of the different family members is not clear although the conservation among the individual family members across species suggests a strong evolutionary pressure to preserve these functional differences. The purpose of this review is to highlight several problems with respect to the mechanism of action of paraoxonase and differences between the family members that merit further study. Recent findings PON1 transgenic mice are at lower risk for atherosclerosis, which is consistent with PON1 gene knockout studies in mice and human genetic polymorphism studies. The exact mechanism by which paraoxonase is cardio protective is not clear, although it is likely to be related to its antioxidant properties especially on LDL. PON1 levels are influenced by a variety of environmental factors, including statins and cytokines. The preferential association of PON1 with HDL is mediated in part by its signal peptide and by desorption from the plasma membrane of expressing cells by HDL or phospholipid. Apolipoprotein A-I is not necessary for PON1 association with HDL, but its activity is stabilized in the presence of the apolipoprotein. Only in the absence of both lecithin cholesterol acyltransferase and apolipoprotein E is paraoxonase associated with non-HDL lipoproteins. The displacement of paraoxonase by serum amyloid A may explain in part the proinflammatory nature of HDL in the acute phase. The mechanism by which PON3 associates with HDL has not been studied. In addition to the ability to hydrolyze oxidized lipids in LDL, paraoxonase also alters the oxidative state of macrophages. Exogenous POW is able to reverse the oxidative stress in macrophages in aged apolipoprotein E deficient and PON1 deficient mice. The increase in oxidative stress in macrophages from POW deficient mice occurs despite the expression of PON2 and PON3 in macrophages. POW has recently been shown to contain phospholipase A(2) activity, with the subsequent release of lysophosphatidylcholine that influences macrophage cholesterol biosynthesis. Summary POW mass and activity in the plasma significantly influence the risk of developing cardiovascular disease. This is likely mediated by its antioxidation properties on LDL and/or macrophages. The precise mechanism by which this HDL associated protein prevents or attenuates oxidation of LDL and the oxidative stress of macrophages remains to be clarified. The role of PON2 and PON3 in atherosclerosis and their antioxidant properties with respect to LIDL and macrophages also merit further investigation.
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收藏
页码:261 / 267
页数:7
相关论文
共 64 条
[1]   Paraoxonase-1 reduces monocyte chemotaxis and adhesion to endothelial cells due to oxidation of palmitoyl, linoleoyl glycerophosphorylcholine [J].
Ahmed, Z ;
Babaei, S ;
Maguire, GF ;
Draganov, D ;
Kuksis, A ;
La Du, BN ;
Connelly, PW .
CARDIOVASCULAR RESEARCH, 2003, 57 (01) :225-231
[2]   Multiple substrates for paraoxonase-1 during oxidation of phosphatidylcholine by peroxynitrite [J].
Ahmed, Z ;
Ravandi, A ;
Maguire, GF ;
Emili, A ;
Draganov, D ;
La Du, BN ;
Kuksis, A ;
Connelly, PW .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2002, 290 (01) :391-396
[3]   Inflammatory/antiinflammatory properties of high-density lipoprotein distinguish patients from control subjects better than high-density lipoprotein cholesterol levels and are favorably affected by simvastatin treatment [J].
Ansell, BJ ;
Navab, M ;
Hama, S ;
Kamranpour, N ;
Fonarow, G ;
Hough, G ;
Rahmani, S ;
Mottahedeh, R ;
Dave, R ;
Reddy, ST ;
Fogelman, AM .
CIRCULATION, 2003, 108 (22) :2751-2756
[4]   Paraoxonase active site required for protection against LDL oxidation involves its free sulfhydryl group and is different from that required for its arylesterase/paraoxonase activities - Selective action of human paraoxonase allozymes Q and R [J].
Aviram, M ;
Billecke, S ;
Sorenson, R ;
Bisgaier, C ;
Newton, R ;
Rosenblat, M ;
Erogul, J ;
Hsu, C ;
Dunlop, C ;
La Du, B .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 1998, 18 (10) :1617-1624
[5]   Human serum paraoxonase (PON 1) is inactivated by oxidized low density lipoprotein and preserved by antioxidants [J].
Aviram, M ;
Rosenblat, M ;
Billecke, S ;
Erogul, J ;
Sorenson, R ;
Bisgaier, CL ;
Newton, RS ;
La Du, B .
FREE RADICAL BIOLOGY AND MEDICINE, 1999, 26 (7-8) :892-904
[6]   Paraoxonase inhibits high-density lipoprotein oxidation and preserves its functions - A possible peroxidative role for paraoxonase [J].
Aviram, M ;
Rosenblat, M ;
Bisgaier, CL ;
Newton, RS ;
Primo-Parmo, SL ;
La Du, BN .
JOURNAL OF CLINICAL INVESTIGATION, 1998, 101 (08) :1581-1590
[7]   Ghrelin can bind to a species of high density lipoprotein associated with paraoxonase [J].
Beaumont, NJ ;
Skinner, VO ;
Tan, TMM ;
Ramesh, BS ;
Byrne, DJ ;
MacColl, GS ;
Keen, JN ;
Bouloux, PM ;
Mikhailidis, DP ;
Bruckdorfer, KR ;
Vanderpump, MP ;
Srai, KS .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (11) :8877-8880
[8]   Leptin decreases plasma paraoxonase 1 (PON1) activity and induces oxidative stress: the possible novel mechanism for proatherogenic effect of chronic hyperleptinemia [J].
Beltowski, J ;
Wojcicka, G ;
Jamroz, A .
ATHEROSCLEROSIS, 2003, 170 (01) :21-29
[9]  
Beltowski J, 2002, POL J PHARMACOL, V54, P661
[10]  
Beltowski J, 2002, J PHYSIOL PHARMACOL, V53, P463