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Human apo A-I and rat transferrin are the principal plasma proteins that bind wine catechins

机译:人载脂蛋白A-I和大鼠转铁蛋白是结合葡萄酒儿茶素的主要血浆蛋白

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The processes of absorption, blood transport, tissular distribution, metabolism, and excretion are at present understood very little. The aim of this study was to investigate blood transport and identify which principal plasma proteins in humans and rats bind to monomeric catechin and procyanidins In red wine ex vivo. Human and rat plasma and serum were incubated with (+)-catechin and procyanidins from grape seed, the origin of red wine catechins. Proteins were separated by SDS-PAGE and native-PAGE to determine which proteins bound to these compounds. The principal protein that bound to (+)-Gatechin in each species was sequenced. SDS-PAGE showed that (+)-catechin and procyanidins mainly bound to a protein of about 80 kDa in rats and 35 kDa in humans. Their sequencing indicated that these proteins were apo A-1 in humans and transferrin in rats. The fact that red wine procyanidins bind to both proteins suggests that they may have a role in reverse cholesterol transport and in the oxidizing action of iron.
机译:目前对吸收,血液运输,组织分布,新陈代谢和排泄的过程了解甚少。这项研究的目的是调查血液运输,并确定离体红酒中人和大鼠中哪些主要血浆蛋白与单体儿茶素和原花青素结合。将人和大鼠的血浆和血清与(+)-儿茶素和葡萄籽中的原花青素一起培养,葡萄籽是儿茶素的来源。通过SDS-PAGE和天然PAGE分离蛋白质,以确定哪些蛋白质与这些化合物结合。对每个物种中与(+)-Gatechin结合的主要蛋白质进行了测序。 SDS-PAGE表明,(+)-儿茶素和原花青素主要与大鼠约80kDa的蛋白质结合,而与人约35kDa的蛋白质结合。他们的测序表明,这些蛋白质在人类中是apo A-1,在大鼠中是转铁蛋白。红酒原花青素与两种蛋白质结合的事实表明它们可能在胆固醇逆向转运和铁的氧化作用中起作用。

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