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首页> 外文期刊>Rheumatology >Annexin A5 binding to giant phospholipid vesicles is differentially affected by anti-beta2-glycoprotein I and anti-annexin A5 antibodies.
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Annexin A5 binding to giant phospholipid vesicles is differentially affected by anti-beta2-glycoprotein I and anti-annexin A5 antibodies.

机译:与巨磷脂囊泡结合的膜联蛋白A5受抗β2-糖蛋白I和抗膜联蛋白A5抗体的影响不同。

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OBJECTIVES: Anti-phospholipid antibodies have been recognized to play a role in vascular thrombosis and pregnancy morbidity. They were first thought to be directed to phospholipids, but it is now known that the majority of pathogenic antibodies recognizes epitopes on phospholipid-binding plasma proteins such as beta2-glycoprotein I (beta2GPI) or possibly also annexin A5 (ANXA5). The mechanism of their prothrombotic action is still not completely understood. The aim of the present study was to observe the effect of antibodies against ANXA5 (aANXA5) and antibodies against beta2GPI (abeta2GPI) on the binding of ANXA5 to the negatively charged phospholipid membrane. METHODS: Giant phospholipid vesicles (GPVs) were used as a simple model of the membrane surface. GPVs composed of phosphatidylserine and phosphatidylcholine were produced in an aqueous medium. A single GPV was transferred to the solution containing ANXA5 conjugated with Alexa Fluor 488 (FANXA5) and (i) aANXA5 or abeta2GPI and (ii) different concentrations of abeta2GPI together with beta2GPI. The emission of the fluorescent light from the GPV surface, as the result of FANXA5 binding, was measured. RESULTS: Beta2GPI together with abeta2GPI reduced the binding of FANXA5 to GPVs. On the contrary, aANXA5 enhanced the binding of ANXA5 to the GPV surface. CONCLUSIONS: Our results point to the competition between FANXA5 and complexes of beta2GPI-abeta2GPI for the same binding sites and therefore support the hypothesis of the disruption of the ANXA5 protective shield on procoagulant phospholipid surface. The influence of increased cell surface ANXA5 concentration in the presence of aANXA5 on coagulation needs to be further studied.
机译:目的:已确认抗磷脂抗体在血管血栓形成和妊娠发病中起作用。首先认为它们是针对磷脂的,但现在知道大多数致病性抗体都可以识别结合磷脂的血浆蛋白(例如β2-糖蛋白I(β2GPI)或可能还有膜联蛋白A5(ANXA5))上的表位。它们的血栓形成作用机理仍未完全了解。本研究的目的是观察抗ANXA5的抗体(aANXA5)和抗β2GPI的抗体(abeta2GPI)对ANXA5与带负电的磷脂膜结合的影响。方法:巨磷脂囊泡(GPVs)被用作膜表面的简单模型。由磷脂酰丝氨酸和磷脂酰胆碱组成的GPV在水性介质中产生。将单个GPV转移到含有与Alexa Fluor 488(FANXA5)和(i)aANXA5或abeta2GPI共轭的ANXA5和(ii)不同浓度的abeta2GPI与beta2GPI结合的溶液中。测量了FANXA5结合的结果,从GPV表面发射的荧光。结果:Beta2GPI与abeta2GPI一起减少了FANXA5与GPV的结合。相反,aANXA5增强了ANXA5与GPV表面的结合。结论:我们的研究结果表明,FANXA5与beta2GPI-abeta2GPI的复合物之间存在相同的结合位点竞争,因此支持了在促凝磷脂表面上破坏ANXA5保护罩的假说。在存在aANXA5的情况下细胞表面ANXA5浓度增加对凝血的影响需要进一步研究。

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