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人血浆中游离脂肪酸的未结合谱以及未结合棕榈油酸酯的意外缺失。

Unbound free fatty acid profiles in human plasma and the unexpected absence of unbound palmitoleate.

作者信息

Huber Andrew H, Kleinfeld Alan M

机构信息

Membrane Sciences, San Diego, CA 92121.

Membrane Sciences, San Diego, CA 92121

出版信息

J Lipid Res. 2017 Mar;58(3):578-585. doi: 10.1194/jlr.M074260. Epub 2017 Jan 12.

Abstract

We determined for the first time the profiles of the nine most abundant unbound FFAs (FFAus) in human plasma. Profiles were determined for a standard reference plasma of pooled healthy adults for which the Lipid MAPSMAPS Consortium had determined the total FFA profiles. Measurements were performed by using 20 different acrylodan-labeled fatty acid binding protein mutants (probes), which have complementary specificities for the nine FFAs that comprise more than 96% of long-chain plasma FFA. The acrylodan fluorescence emission for each probe changes upon binding a FFAu. The plasma concentrations of each of the nine FFAus were determined by combining the measured fluorescence ratios of the 20 probes. The total molar FFAu concentration accounted for <10 of the total FFA concentration, and the mole fractions of the FFAu profiles were substantially different than the total FFA profiles. Myristic acid, for example, comprises 22% of the unbound versus 2.8% of the total. The most surprising difference is our finding of zero unbound -9-palmitoleic acid (POA), whereas the total POA was 7.2%. An unidentified plasma component appears to specifically prevent the release of POA. FFAus are the physiologically active FFAs, and plasma FFAu profiles may provide novel information about human health.

摘要

我们首次测定了人类血浆中九种最丰富的游离脂肪酸(FFAus)的分布情况。对脂质地图集联盟已测定总游离脂肪酸分布的健康成年人混合标准参考血浆进行了分布情况测定。使用20种不同的丙烯罗丹标记脂肪酸结合蛋白突变体(探针)进行测量,这些突变体对构成超过96%的长链血浆游离脂肪酸的九种游离脂肪酸具有互补特异性。每种探针的丙烯罗丹荧光发射在结合游离脂肪酸时会发生变化。通过结合20种探针的测量荧光比率来测定九种游离脂肪酸中每种的血浆浓度。游离脂肪酸总摩尔浓度占总游离脂肪酸浓度的比例不到10%,游离脂肪酸分布的摩尔分数与总游离脂肪酸分布有很大不同。例如肉豆蔻酸,其在游离状态下占22%而在总游离脂肪酸中占2.8%。最令人惊讶的差异是我们发现游离 -9-棕榈油酸(POA)为零,而总POA为7.2%。一种未鉴定的血浆成分似乎能特异性地阻止POA释放。游离脂肪酸是具有生理活性的游离脂肪酸,血浆游离脂肪酸分布情况可能会提供有关人类健康的新信息。

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