Gilbert G E, Drinkwater D
Medicine Division, Brockton/West Roxbury VA Medical Center, MA 02132.
Biochemistry. 1993 Sep 21;32(37):9577-85. doi: 10.1021/bi00088a009.
Phosphatidylserine, a negatively charged lipid, is exposed on the platelet membrane following cell stimulation, correlating with the expression of factor VIII receptors. We have explored the importance of the negative electrostatic potential of phosphatidylserine vs chemical moieties of phosphatidylserine for specific membrane binding of factor VIII. Fluorescein-labeled factor VIII bound to membranes containing 15% phosphatidic acid, a negatively charged phospholipid, with low affinity compared to phosphatidylserine-containing membranes. Binding was not specific as it was inhibited by other proteins in plasma. Factor VIII bound to membranes containing 10% phosphatidylserine in spite of a varying net charge provided by 0-15% stearylamine, a positively charged lipid. The soluble phosphatidylserine moiety, O-phospho-L-serine, inhibited factor VIII binding to phosphatidylserine-containing membranes with a Ki of 20 mM, but the stereoisomer, O-phospho-D-serine, was 5-fold less effective. Furthermore, binding of factor VIII to membranes containing synthetic phosphatidyl-D-serine was 5-fold less than binding to membranes containing phosphatidyl-L-serine. Membranes containing synthetic phosphatidyl-L-homoserine, differing from phosphatidylserine by a single methylene, supported high-affinity binding, but it was not specific as factor VIII was displaced by other plasma proteins. O-Phospho-L-serine also inhibited the binding of factor VIII to platelet-derived microparticles with a Ki of 20 mM, and the stereoisomer was 4-fold less effective. These results indicate that membrane binding of factor VIII is mediated by a stereoselective recognition O-phospho-L-serine of phosphatidylserine and that negative electrostatic potential is of lesser importance.
磷脂酰丝氨酸是一种带负电荷的脂质,在细胞受到刺激后会暴露于血小板膜上,这与因子VIII受体的表达相关。我们探究了磷脂酰丝氨酸的负静电势与磷脂酰丝氨酸的化学基团对于因子VIII特异性膜结合的重要性。与含磷脂酰丝氨酸的膜相比,荧光素标记的因子VIII与含15%磷脂酸(一种带负电荷的磷脂)的膜结合时亲和力较低。这种结合不具有特异性,因为它会受到血浆中其他蛋白质的抑制。尽管有0 - 15%硬脂胺(一种带正电荷的脂质)提供不同的净电荷,因子VIII仍能与含10%磷脂酰丝氨酸的膜结合。可溶性磷脂酰丝氨酸部分,即O - 磷酰 - L - 丝氨酸,以20 mM的抑制常数(Ki)抑制因子VIII与含磷脂酰丝氨酸的膜的结合,但立体异构体O - 磷酰 - D - 丝氨酸的抑制效果要低5倍。此外,因子VIII与含合成磷脂酰 - D - 丝氨酸的膜的结合比与含磷脂酰 - L - 丝氨酸的膜的结合低5倍。含合成磷脂酰 - L - 高丝氨酸的膜与磷脂酰丝氨酸仅相差一个亚甲基,能支持高亲和力结合,但不具有特异性,因为因子VIII会被其他血浆蛋白取代。O - 磷酰 - L - 丝氨酸也以20 mM的Ki抑制因子VIII与血小板衍生微粒的结合,其立体异构体的抑制效果低4倍。这些结果表明,因子VIII的膜结合是由对磷脂酰丝氨酸的O - 磷酰 - L - 丝氨酸的立体选择性识别介导的,而负静电势的重要性较小。