Isaacs B S, Husten E J, Esmon C T, Johnson A E
Biochemistry. 1986 Aug 26;25(17):4958-69. doi: 10.1021/bi00365a036.
The larger subunit of blood coagulation factor Va was covalently labeled with iodoacetamido derivatives of fluorescein and rhodamine without loss of functional activity, as measured by either the one-stage clotting assay or the ability to accelerate prothrombin activation in a purified system. The spectral properties of the dyes were not altered by the presence or absence of the smaller subunit of factor Va, Ca2+, prothrombin, factor Xa, or phosphatidylcholine/phosphatidylserine (PC/PS, 4:1) vesicles. When fluorescein-labeled protein (factor VaF) was titrated with PC/PS vesicles containing either octadecylrhodamine or 5-(N-hexadecanoylamino)eosin, fluorescence energy transfer was observed between the protein-bound donor dyes and the acceptor dyes at the outer surface of the phospholipid bilayer. The extent of energy transfer correlated directly with the extent of protein binding to the vesicles monitored by light scattering. The distance of closest approach between the fluorescein on factor Va and the bilayer surface averaged 90 A for the two different acceptors. Association of factor VaF with factor Xa on the phospholipid surface reduced this separation by 7 A, but association with prothrombin did not alter the distance between the labeled domain on factor VaF and the surface. The efficiency of diffusion-enhanced energy transfer between rhodamine-labeled factor Va and terbium dipicolinate entrapped inside PC/PS vesicles was less than 0.01, consistent with the location of the dye far above the inner surface of the vesicle. Thus, a domain of membrane-bound factor Va is located a minimum of 90 A above the phospholipid surface.(ABSTRACT TRUNCATED AT 250 WORDS)
凝血因子Va的大亚基用荧光素和罗丹明的碘乙酰胺衍生物进行共价标记,通过单阶段凝血试验或在纯化系统中加速凝血酶原激活的能力来衡量,其功能活性并未丧失。无论凝血因子Va的小亚基、Ca2+、凝血酶原、因子Xa或磷脂酰胆碱/磷脂酰丝氨酸(PC/PS,4:1)囊泡是否存在,染料的光谱特性均未改变。当用含有十八烷基罗丹明或5-(N-十六烷酰氨基)曙红的PC/PS囊泡滴定荧光素标记的蛋白质(因子VaF)时,在磷脂双层外表面的蛋白质结合供体染料与受体染料之间观察到荧光能量转移。能量转移的程度与通过光散射监测的蛋白质与囊泡的结合程度直接相关。对于两种不同的受体,因子Va上的荧光素与双层表面之间的最接近距离平均为90埃。因子VaF与磷脂表面上的因子Xa结合使这种间距减少了7埃,但与凝血酶原结合并未改变因子VaF上标记结构域与表面之间的距离。罗丹明标记的因子Va与包裹在PC/PS囊泡内的吡啶二甲酸铽之间的扩散增强能量转移效率小于0.01,这与染料位于囊泡内表面上方较远位置一致。因此,膜结合因子Va的一个结构域位于磷脂表面上方至少90埃处。(摘要截短于250字)