Abstract

Apolipoprotein C-III (apoC-III) is an important regulator of lipoprotein metabolism. Radioisotope and stable isotope kinetic studies show differing results in relation to the kinetics of apoC-III in HDL. Kinetic analysis of HDL apoC-III may be difficult because of its low concentration, as well as the presence of other apoproteins at higher concentration, in the HDL fraction. We used Intralipid(R) (IL), known to preferentially extract apoC proteins from plasma, as a means of extracting apoC-III from HDL before apoprotein separation by isoelectric focusing gel electrophoresis for the measurement of tracer enrichment. Protein purity was assessed by an isoleucine-to-leucine (Ile/Leu) ratio, as apoC-III contains no isoleucine. We compared apoC-III kinetics in 14 men using a bolus infusion of deuterated leucine. The Ile/Leu ratio for IL-extracted HDL (IL-HDL) apoC-III (3.0 +/- 0.7%) was not different from that of VLDL apoC-III (2.6 +/- 0.6%) but was significantly lower than that of untreated HDL apoC-III (9.0 +/- 2.9%) (P < 0.001). The isotopic enrichment curves and fractional catabolic rates (FCRs) for IL-HDL apoC-III were not different from those of VLDL apoC-III. In contrast, HDL apoC-III had significantly lower isotopic enrichments and FCRs than IL-HDL apoC-III (P < 0.001). In conclusion, this simple IL method can be used to isolate apoC-III from HDL with minimal interference from other HDL apoproteins, and it demonstrates that the kinetics of apoC-III in VLDL and HDL are similar, supporting the concept of a single kinetically homogeneous pool of apoC-III in plasma.

Highlights

  • Apolipoprotein C-III is an important regulator of lipoprotein metabolism

  • With the Ile/Leu ratio as a criterion for purity, we demonstrated that IL extraction significantly improves the isolation of apoC-III from HDL compared with previous methods

  • Method, we provide new evidence that, contrary to previous isotopic tracer studies, apoC-III in VLDL and HDL has similar enrichment curves. This kinetic finding implies that apoC-III in VLDL and HDL has similar kinetics, supporting the complete and rapid exchange of apoC-III between these lipoproteins

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Summary

Introduction

Radioisotope and stable isotope kinetic studies show differing results in relation to the kinetics of apoC-III in HDL. The isotopic enrichment curves and fractional catabolic rates (FCRs) for IL-HDL apoC-III were not different from those of VLDL apoC-III. HDL apoC-III had significantly lower isotopic enrichments and FCRs than IL-HDL apoC-III (P , 0.001) This simple IL method can be used to isolate apoC-III from HDL with minimal interference from other HDL apoproteins, and it demonstrates that the kinetics of apoC-III in VLDL and HDL are similar, supporting the concept of a single kinetically homogeneous pool of apoC-III in plasma.—Nguyen, M. Recent endogenous stable isotope tracer studies have provided evidence of kinetically distinct pools of VLDL and HDL apoC-III [11, 22]

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