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ApoA-IV 360His variant, not CETP or LCAT activity, explains why some people respond more to dietary fat changes (J Lipid Res 1997)

Original title: Effect of 360His mutation in apolipoprotein A-IV on plasma HDL-cholesterol response to dietary fat

J Lipid Res · · 4

Jansen S, Lopez-Miranda J, Ordovas JM, Zambrana JL, Marin C, Ostos MA, Castro P, McPherson R, Lopez Segura F, Blanco A, Jimenez Pereperez JA, Perez-Jimenez F

This study tested whether genetic variability in apolipoprotein A-IV explains differences in lipid profile improvement when dietary saturated fat is replaced by carbohydrates or monounsaturated fat, studying 41 healthy men (33 homozygous for 360Gln, 8 heterozygous 360His carriers) through three consecutive 4-week diets: high saturated fat, low fat (NCEP-I), and high monounsaturated fat. No baseline lipid differences existed between groups on the saturated fat diet. Switching to the low-fat diet, 360His carriers showed a greater HDL-cholesterol decrease (-10 vs -1 mg/dL, P less than 0.004) and apoA-I decrease (-19 vs -8 mg/dL, P less than 0.037) than 360Gln homozygotes; switching to the monounsaturated-fat diet produced a greater HDL-cholesterol increase (9 vs 1 mg/dL, P less than 0.003) and apoA-I increase (9 vs 2 mg/dL, P less than 0.036) in 360His carriers. LCAT and CETP activities and apoA-IV levels showed no genotype-related differences. The authors conclude the apoA-IV 360His mutation partly determines HDL-cholesterol and apoA-I response to dietary fat changes.

PubMed

Original abstract

In order to determine whether genetic variability of apolipoprotein (apo) A-IV is responsible for the improvement in lipid profile when dietary saturated fats are replaced by carbohydrates or monounsaturated fats, 41 healthy male subjects were studied: 33 were homozygous for the 360Gln allele and 8 were heterozygote carriers of the 360His allele. These were administered three consecutive 4-week diets. The first was a diet rich in saturated fat (SAT diet, with 38% fat, 20% saturated. This was followed by a low fat diet (NCEP-I, with < 30% fat, < 10% saturated). The final diet was rich in monounsaturated fat (MUFA diet, with 38% fat, 22% monounsaturated). There was no difference in plasma lipid and apolipoprotein levels of both groups of individuals after consuming the SAT diet. Switching from this diet to the NCEP-I diet, carriers of the 360His allele presented a greater decrease in high density lipoprotein-cholesterol (HDL-C) (-10 vs. -1 mg/dL, P < 0.004) and apoA-I levels (-19 vs. -8 mg/dL, P < 0.037). Similarly, replacement of carbohydrates by monounsaturated fats produced a greater increase in HDL-C (9 vs. 1 mg/dL, P < 0.003) and apoA-I levels (9 vs. 2 mg/dL, P < 0.036) in carriers of the 360His mutation. Lecithin:cholesterol acyltransferase (LCAT) and cholesteryl ester transfer protein (CETP) activities and apoA-IV levels were also measured. However, no genotype-related differences were observed for these parameters. Our results suggest that variability in HDL-C and apoA-I response to diet is, at least partially, determined by the 360His mutation of apoA-IV.

geneticsHDL biology

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.