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13C核磁共振研究中链脂肪酸与人血清白蛋白的结合

13C NMR studies of the binding of medium-chain fatty acids to human serum albumin.

作者信息

Kenyon M A, Hamilton J A

机构信息

Department of Biophysics, Housman Research Center, Boston University Medical School, MA 02118-2394.

出版信息

J Lipid Res. 1994 Mar;35(3):458-67.

PMID:8014580
Abstract

Binding of the medium-chain fatty acids (MCFA), octanoic (OCT) and decanoic (DEC) acid, to human serum albumin (HSA) has been studied by 13C NMR spectroscopy. NMR spectra at 35 degrees C showed an apparently homogeneous binding environment (a single, narrow resonance for the 13C-enriched carboxyl carbon) at different mole ratios and pH values. Changes in the chemical shift of this peak with mole ratio and protein concentration demonstrated rapid equilibration (< or = msec) of bound and unbound MCFA and permitted a direct quantitation of bound/unbound MCFA. Spectra of OCT/HSA mixtures at 6 degrees C revealed at least three distinct binding sites that fill sequentially. The observed heterogeneity of binding at low temperature, compared to 35 degrees C, is attributed to a slower exchange rate of OCT between binding sites. The highest affinity sites for both OCT and DEC have properties similar to those of binding sites for longer-chain fatty acids, such as the close proximity of the fatty acid carboxylate to basic amino acid residue(s). Interestingly, chemical shift data showed that the first mole of OCT and DEC either bind differently to the same site or bind to different sites on HSA. The rapid desorption of MCFA from HSA binding sites has implications for dietary regimens with medium chain triglycerols.

摘要

通过13C核磁共振光谱研究了中链脂肪酸(MCFA)辛酸(OCT)和癸酸(DEC)与人血清白蛋白(HSA)的结合。35℃下的核磁共振光谱显示,在不同的摩尔比和pH值下,结合环境明显均匀(13C富集羧基碳有单一、狭窄的共振峰)。该峰化学位移随摩尔比和蛋白质浓度的变化表明,结合态和未结合态的MCFA能快速达到平衡(≤毫秒),并允许直接定量结合/未结合的MCFA。6℃下OCT/HSA混合物的光谱显示至少有三个不同的依次填充的结合位点。与35℃相比,在低温下观察到的结合异质性归因于OCT在结合位点之间的交换速率较慢。OCT和DEC的最高亲和力位点具有与长链脂肪酸结合位点相似的性质,例如脂肪酸羧酸盐与碱性氨基酸残基紧密相邻。有趣的是,化学位移数据表明,第一摩尔的OCT和DEC要么与同一位点结合方式不同,要么与HSA上的不同位点结合。MCFA从HSA结合位点的快速解吸对中链甘油三酯的饮食方案有影响。

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