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三磷酸化人β-酪蛋白的相互作用:单体表征及自缔合的流体动力学研究

Interactions of triply phosphorylated human beta-casein: monomer characterization and hydrodynamic studies of self-association.

作者信息

Sood S M, Chang P, Slattery C W

机构信息

Department of Biochemistry, Loma Linda University School of Medicine, California 92350.

出版信息

Arch Biochem Biophys. 1990 Mar;277(2):415-21. doi: 10.1016/0003-9861(90)90598-s.

Abstract

The triply phosphorylated form of human beta-casein comprises about 15% of that fraction and is thus a significant component about midway between the two extremes of zero and five phosphoryls. Its partial specific volume, v, of 0.74 +/- 0.01 and absorbancy, E1% 1 cm, 280 nm, of 6.2 +/- 0.2 are almost identical to the other human beta-caseins. Equilibrium dialysis gave an average of 3.1 +/- 0.4 major Ca2+ binding sites at 37 degrees C with Kdiss = 8.6 x 10(-4) M. Sedimentation and viscosity at low temperatures or in 3.3 M urea suggested a prolate ellipsoidal monomer with 1.4 g H2O/g protein, 10 nm in length and 1.4 nm in width. The concentrated charge of the phosphoryls may be near one end of the ellipsoid, allowing the molecules to align with the flow in the viscometer at low concentration but, due to intermolecular electrostatic interactions, not when concentration is high. This would provide a reason for the heretofore unexplained curvature in the plots of reduced viscosity, eta red, vs beta-casein protein concentration. Self-association increased with temperature. At 37 degrees C in low salt buffer, s20,W was 16 S, which increased to about 33 S as ionic strength, I, was increased to 0.2 and above. At the same time, eta red in low salt buffer decreased from about 22 ml/g at 4 degrees C to a constant value of about 5 ml/g above 23 degrees C. A similar value for eta red at 37 degrees C, which was almost independent of protein concentration, was obtained at I greater than 0.25, giving an extrapolated intrinsic viscosity value of [eta] = 4.0 ml/g. Using this value and assuming a spherical aggregate, calculations suggest a radius of 9 nm with about 48 monomers and 0.86 g H2O/g protein.

摘要

人β-酪蛋白的三磷酸化形式约占该组分的15%,因此是介于零磷酸化和五磷酸化这两个极端之间的一个重要组分。其偏比容v为0.74±0.01,280nm波长下的吸光率E1% 1cm为6.2±0.2,与其他人β-酪蛋白几乎相同。平衡透析表明,在37℃时平均有3.1±0.4个主要的Ca2+结合位点,解离常数Kdiss = 8.6×10(-4)M。低温或在3.3M尿素中的沉降和粘度表明,其单体为长轴椭球体,每克蛋白质结合1.4克水,长10nm,宽1.4nm。磷酰基的集中电荷可能靠近椭球体的一端,使得分子在低浓度时能在粘度计中与流动方向对齐,但在高浓度时,由于分子间的静电相互作用则不能。这将为之前无法解释的比浓粘度ηred与β-酪蛋白蛋白质浓度关系图中的曲率提供一个原因。自缔合作用随温度升高而增强。在低盐缓冲液中,37℃时的沉降系数s20,W为16S,当离子强度I增加到0.2及以上时,该值增加到约33S。同时,低盐缓冲液中的比浓粘度ηred从4℃时的约22ml/g降至23℃以上的恒定值约5ml/g。在I大于0.25时,37℃下得到的ηred值几乎与蛋白质浓度无关,外推得到的特性粘度值[η] = 4.0ml/g。利用该值并假设为球形聚集体进行计算,结果表明其半径为9nm,约有48个单体,每克蛋白质结合0.86克水。

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