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未结合胆红素-IXα在pH 10.0的水溶液中的自缔合以及与胆汁盐单体和胶束的物理化学相互作用。

Self-association of unconjugated bilirubin-IX alpha in aqueous solution at pH 10.0 and physical-chemical interactions with bile salt monomers and micelles.

作者信息

Carey M C, Koretsky A P

出版信息

Biochem J. 1979 Jun 1;179(3):675-89. doi: 10.1042/bj1790675.

Abstract

Spectrophotometric measurements of bilirubin-IX alpha in water and in aqueous/organic solvent mixtures at pH 10.0 as a function of bilirubin-IX alpha concentration (approx. 0.6--400 microM) are consistent with the formation of dimers (KD - 1.5 microM) in dilute (less than 10 microM) aqueous solution and further self-aggregation to multimers at higher concentrations. Added urea (to 10M) and increases in temperature (to 62 degrees C) obliterate the dimer-multimer transition at 10 microM, but added NaCl (to 0.30 M) promotes strong aggregation of dimers over a narrow concentration range, suggesting a 'micellization' phenomenon. Concentrations of dioxan or ethanol greater than 60% (v/v) in water were required to obtain the absorption spectrum of bilirubin-IX alpha monomers, suggesting that both hydrophobic and electrostatic (pi-orbital) interactions are involved in stabilizing the dimeric state in water. Micellar concentrations of sodium dodecyl sulphate induced spectrophotometric shifts in the dimer absorption spectrum of bilirubin-IX alpha consistent with progressive partitioning of bilirubin-IX alpha monomers into a relatively non-polar region of the micelles and allowed a deduction of the apparent critical micellar concentration that closely approximated the literature values. The pattern of bilirubin IX alpha association with bile salts is complex, since the absorption spectrum shifts hypsochromically below and bathochromically above the critical micellar concentration of the bile salts. Consistent with these observations, bilirubin IX alpha appears to bind to the polar face of bile salt monomers and to the polar perimeter of small bile salt micelles. At higher bile salt concentrations some-bilirubin-IX alpha monomers partition into the hydrophobic interior of the bile salt micelles. Our results suggest that under physiological conditions the natural conjugates of bilirubin-IX alpha may exhibit similar physical chemical properties in bile, in that dimers, highly aggregated multimers and bile salt-associated monomers may co-exist.

摘要

在pH 10.0条件下,对水中以及水/有机溶剂混合物中的胆红素-IXα进行分光光度测量,测量结果作为胆红素-IXα浓度(约0.6 - 400μM)的函数,结果表明在稀水溶液(小于10μM)中会形成二聚体(KD - 1.5μM),而在较高浓度下会进一步自聚合成多聚体。添加尿素(至10M)和升高温度(至62℃)会消除10μM时的二聚体 - 多聚体转变,但添加NaCl(至0.30M)会在狭窄的浓度范围内促进二聚体的强烈聚集,这表明存在“胶束化”现象。在水中,需要二氧六环或乙醇的浓度大于60%(v/v)才能获得胆红素-IXα单体的吸收光谱,这表明疏水相互作用和静电(π轨道)相互作用都参与了稳定水中的二聚体状态。十二烷基硫酸钠的胶束浓度会引起胆红素-IXα二聚体吸收光谱的分光光度位移,这与胆红素-IXα单体逐渐分配到胶束的相对非极性区域一致,并由此推断出的表观临界胶束浓度与文献值非常接近。胆红素IXα与胆盐的缔合模式很复杂,因为在胆盐的临界胶束浓度以下吸收光谱发生紫移,而在其以上发生红移。与这些观察结果一致,胆红素IXα似乎与胆盐单体的极性面以及小胆盐胶束的极性周边结合。在较高的胆盐浓度下,一些胆红素-IXα单体分配到胆盐胶束的疏水内部。我们的结果表明,在生理条件下,胆红素-IXα的天然共轭物在胆汁中可能表现出类似的物理化学性质,即二聚体、高度聚集的多聚体和与胆盐相关的单体可能共存。

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