EFFECTS OF DIETARY-FAT ON HIGH-DENSITY-LIPOPROTEIN SUBCLASSES ARE INFLUENCED BY BOTH APOLIPOPROTEIN-E ISOFORMS AND LOW-DENSITY-LIPOPROTEIN SUBCLASS PATTERNS

被引:22
作者
WILLIAMS, PT
DREON, DM
KRAUSS, RM
机构
[1] Life Sciences Division, Lawrence Berkeley Laboratory, Berkeley, CA
[2] Life Sciences Division, Lawrence Berkeley Laboratory, Building 934, Berkeley
关键词
HIGH-DENSITY LIPOPROTEINS; DIETARY FAT; HIGH-CARBOHYDRATE DIET; APOLIPOPROTEIN E ISOFORMS; LOW-DENSITY-LIPOPROTEIN SUBCLASS PATTERN; GRADIENT GEL ELECTROPHORESIS; ADIPOSITY; INSULIN; FATTY ACIDS; LIPASE;
D O I
10.1093/ajcn/61.6.1234
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
We examined the effects of replacing dietary fat with carbohydrates on high-density-lipoprotein (HDL) subclasses as measured by nondenaturing polyacrylamide-gradient-gel electrophoresis. One hundred five men received a 6-wk low-fat diet (24% of total energy) and a 6-wk high-fat diet (46% of energy) in a crossover design. Absorbency of protein stain was measured within five HDL subclasses: HDL(3c) (7.2-7.8 nm), HDL(3b) (7.8-8.2 nm), HDL(3a) (8.2-8.9 nm), HDL(2a) (8.8-9.7 nm), and HDL(2b) (9.7-12 nm). The low-density-lipoprotein-(LDL) subclass pattern was determined by gradient-gel electrophoresis, with pattern B men defined as having an LDL-predominant peak diameter less than or equal to 25.5 mn and an LDL distribution skewed toward larger size particles. On the high-fat diet, 18 men exhibited LDL-subclass pattern B and 87 men exhibited the alternative LDL pattern A. Twelve men had the apolipoprotein (apo) epsilon 2. allele. Replacing dietary fat with carbohydrates 1) significantly decreased HDL(3a), HDL(2a), and HDL(2b); 2) reduced HDL(2b) significantly more in pattern A than in pattern B men; and 3) increased plasma HDL(3b), concentrations significantly more in those men with the epsilon 2 allele. Our results suggest that unfavorable HDL changes were significantly more Likely to occur in men who had LDL-subclass pattern A or the apo epsilon 2 allele than in men who had pattern B or lacked the epsilon 2 allele.
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收藏
页码:1234 / 1240
页数:7
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共 60 条
[51]  
Cheung M.C., Wolf A.C., In vitro transformation of apo A-I-containing lipoprotein subpopulations: Role of lecithin:cholesterol acyltransferase and apo B-containing lipoproteins, J Lipid Res, 30, pp. 499-509, (1989)
[52]  
Rader D.J., Castro G., Zech L.A., Fruchart J.-C., Brewer H.B., In vivo metabolism of apolipoprotein A-I on high density lipoprotein particles LpA-I and LpA-I.A-II, J Lipid Res, 32, pp. 1849-1859, (1991)
[53]  
Nichols A.V., Blanche P.J., Shore V.G., Gong E.L., Conversion of apolipoprotein-specific high-density lipoprotein populations during incubation of human plasma, Biochim Biophys Acta, 1001, pp. 325-337, (1989)
[54]  
Cheung M.C., Albers J.J., Characterization of lipoprotein particles isolated by immunoaffinity chromatography: Particles containing A-I and A-II and particles containing A-I but no A-II, J Biol Chem, 259, pp. 12201-12209, (1984)
[55]  
Delplanque B., Richard J.L., Jacotot B., Influence of diet on the plasma levels and distribution of apoA-I-containing lipoprotein particles, Prog Lipid Res, 30, pp. 159-170, (1991)
[56]  
Fumeron F., Brigant L., Parra H.-J., Bard J.-M., Fruchart J.-C., Apfelbaum M., Lowering of HDL<sub>2</sub>-cholesterol and lipoprotein A-I particle levels by increasing the ratio of polyunsaturated fat to saturated fatty acids, Am J Clin Nutr, 53, pp. 655-659, (1991)
[57]  
Weisgraber K.H., Apolipoprotein E distribution among human plasma lipoproteins: Role of the cysteine-arginine interchange at residue 112, J Lipid Res, 31, pp. 1503-1511, (1990)
[58]  
Tozuka M., Hidaka H., Miyachi M., Furihata K., Katsuyama T., Kanai M., Identification and characterization of apolipoprotein (AII-E2-AII) complex in human plasma lipoprotein, Biochim Biophys Acta, 1165, pp. 61-67, (1992)
[59]  
Weintraub M.S., Eisenberg S., Breslow J.L., Dietary fat clearance in normal subjects is regulated by genetic variation in apolipoprotein E, J Clin Invest, 80, pp. 1571-1577, (1987)
[60]  
Greeg R.E., Zech L.A., Schaefer E.J., Stark D., Wilson D., Brewer Jr. H.B., Abnormal in vivo metabolism of apolipoprotein E4 in humans, J Clin Invest, 78, pp. 815-821, (1986)