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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Calcium inhibits diacylglycerol uptake by serum albumin.
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Calcium inhibits diacylglycerol uptake by serum albumin.

机译:钙抑制血清白蛋白摄取二酰基甘油。

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Serum albumin is an abundant protein in blood plasma, that is well-known for its ability to transport hydrophobic biomolecules and drugs. Recent hypotheses propose that serum albumin plays a role in the regulation of lipid metabolism in addition to its lipid transport properties. The present work explores the capacity of bovine serum albumin (BSA) to extract diacylglycerols (DAG) from phospholipid bilayers, and the inhibition of such interaction by divalent cations. Quantitative measurements using radioactive DAG and morphological evidence derived from giant unilamellar vesicles examined by confocal microscopy provide concurrent results. BSA extracts DAG from vesicles consisting of phosphatidylinositol/DAG. Long, saturated DAG species are incorporated more readily than the shorter-chain or unsaturated ones. Divalent cations hinder DAG uptake by BSA. For Ca(2+), the concentration causing half-maximal inhibition is approximately 10 muM; 90% inhibition is caused by 100 muM Ca(2+). Sr(2+) requires concentrations one order of magnitude higher, while Mg(2+) has virtually no effect. As an example on how DAG uptake by BSA, and its inhibition by Ca(2+), could play a regulating role in lipid metabolism, a PI-specific phospholipase C has been assayed in the presence of BSA and/or Ca(2+). BSA activates the enzyme by removing the end-product DAG, but the activation is reverted by Ca(2+) that inhibits DAG uptake.
机译:血清白蛋白是血浆中一种丰富的蛋白质,以其运输疏水性生物分子和药物的能力而闻名。最近的假说提出,血清白蛋白除了具有脂质转运特性外,还在脂质代谢的调节中起作用。本工作探讨了牛血清白蛋白(BSA)从磷脂双层提取二酰基甘油(DAG)的能力,以及二价阳离子对这种相互作用的抑制作用。共聚焦显微镜检查使用放射性DAG进行的定量测量以及从巨大的单层囊泡中提取的形态学证据可提供同步结果。 BSA从包含磷脂酰肌醇/ DAG的囊泡中提取DAG。长的,饱和的DAG种类比短链或不饱和的种类更容易掺入。二价阳离子阻碍BSA吸收DAG。对于Ca(2+),引起半最大抑制的浓度约为10μM; 90%抑制是由100μMCa(2+)引起的。 Sr(2+)需要的浓度要高一个数量级,而Mg(2+)实际上没有作用。例如,有关BSA吸收DAG及其被Ca(2+)抑制如何在脂质代谢中起调节作用的示例,已经在BSA和/或Ca(2+)存在下测定了PI特异性磷脂酶C )。 BSA通过去除最终产物DAG来激活酶,但是该激活被抑制DAG摄取的Ca(2+)恢复。

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