Andree H A, Willems G M, Hauptmann R, Maurer-Fogy I, Stuart M C, Hermens W T, Frederik P M, Reutelingsperger C P
Cardiovascular Research Institute Maastricht, EM Unit Department of Pathology, The Netherlands.
Biochemistry. 1993 May 4;32(17):4634-40. doi: 10.1021/bi00068a022.
A chimeric protein was produced with the N-terminal domain (amino acids 1-45) of annexin I and the core of annexin V (amino acids 19-320). This protein, annexin IN-VC, has a similar Ca2+ requirement for binding to phospholipid bilayers of 20% phosphatidylserine (PS)/80% phosphatidylcholine (PC) as annexin V. In contrast to annexin V, this protein has a strong potency to aggregate phospholipid vesicles as is shown by turbidimetric measurements and cryo-electron microscopy. Ellipsometry was employed to study quantitatively the phenomenon of phospholipid vesicle adhesion to annexin IN-VC bound to a planar phospholipid bilayer. The amount of phospholipid vesicles bound by annexin IN-VC on the planar bilayer is proportional to its surface coverage and can be inhibited by coadsorption of annexin V on the planar bilayer or by shielding the phospholipid surface of the vesicles with blood coagulation factor Va. Annexin IN-VC, like annexin V, does not bind to pure PC bilayers, but its adsorption on anionic phospholipid bilayers brings about the capacity to bind pure PC vesicles. This suggests that annexin IN-VC generates or exposes after binding to anionic phospholipids another phospholipid binding site, that differs from the annexin V phospholipid binding site. Collectively, the data suggest that two-dimensional cluster formation of annexin IN-VC on a bilayer with anionic phospholipids is involved in vesicle adherence.
一种嵌合蛋白由膜联蛋白I的N端结构域(氨基酸1 - 45)和膜联蛋白V的核心区域(氨基酸19 - 320)组成。这种蛋白,即膜联蛋白IN - VC,与膜联蛋白V一样,在结合到含有20%磷脂酰丝氨酸(PS)/80%磷脂酰胆碱(PC)的磷脂双层时对Ca2+有相似的需求。与膜联蛋白V不同的是,通过比浊测量和冷冻电子显微镜观察表明,这种蛋白具有很强的使磷脂囊泡聚集的能力。采用椭圆偏振光法对磷脂囊泡与结合在平面磷脂双层上的膜联蛋白IN - VC的粘附现象进行定量研究。膜联蛋白IN - VC在平面双层上结合的磷脂囊泡数量与其表面覆盖率成正比,并且可以通过在平面双层上共吸附膜联蛋白V或用凝血因子Va屏蔽囊泡的磷脂表面来抑制。与膜联蛋白V一样,膜联蛋白IN - VC不与纯PC双层结合,但其在阴离子磷脂双层上的吸附赋予了其结合纯PC囊泡的能力。这表明膜联蛋白IN - VC在与阴离子磷脂结合后产生或暴露了另一个与膜联蛋白V磷脂结合位点不同的磷脂结合位点。总体而言,数据表明膜联蛋白IN - VC在含有阴离子磷脂的双层上形成二维聚集体与囊泡粘附有关。