Pfueller S L, Logan D, Tran T T, Bilston R A
Department of Medicine, Monash University Medical School, Alfred Hospital, Prahran, Victoria, Australia.
Clin Exp Immunol. 1990 Mar;79(3):367-73. doi: 10.1111/j.1365-2249.1990.tb08097.x.
Immunoblotting of platelets that have been subjected to SDS-PAGE has revealed that sera from normal individuals contain IgG which binds to many platelet components. This binding was seen with autologous and heterologous platelets using serum of males and of nulliparous females who had not received blood transfusions. Although binding patterns of different sera were not identical, almost all sera caused IgG binding to platelet components of 87-90 kD, 140 kD (identified as vinculin) and 220-240 kD (tentatively identified as talin and actin-binding protein). Purified IgG showed the same binding pattern as whole serum and F(ab')2 fragments retained their ability to bind to many components. The titre of IgG binding in serum was 1:50-1600 while that of alloantibodies to the PlA1 antigen was 1:3200. IgG binding components were not secreted when platelets were stimulated and were rarely associated with isolated membranes, but were located either in platelet cytoplasm or cytoskeletons. IgG binding was decreased by absorbing sera with lysed platelets or isolated cytoskeletons, but only slightly with intact platelets. Microaffinity purification of IgG which formed a major band on immunoblots showed that it was antibody with specificity for vinculin or its degradation products. These findings suggest that normal sera contain naturally occurring IgG antibodies with specificity for intracellular platelet antigens and that in some cases their titre approaches that of antibodies of pathological significance.
对经十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)处理的血小板进行免疫印迹分析显示,正常个体的血清中含有能与多种血小板成分结合的IgG。使用未接受过输血的男性和未生育女性的血清,在自体和异体血小板上均观察到这种结合。尽管不同血清的结合模式并不完全相同,但几乎所有血清都能使IgG与87 - 90kD、140kD(鉴定为纽蛋白)和220 - 240kD(暂定为踝蛋白和肌动蛋白结合蛋白)的血小板成分结合。纯化的IgG显示出与全血清相同的结合模式,并且F(ab')2片段保留了与多种成分结合的能力。血清中IgG结合的滴度为1:50 - 1600,而针对PlA1抗原的同种抗体的滴度为1:3200。当血小板受到刺激时,IgG结合成分不会分泌,并且很少与分离的膜相关联,而是位于血小板细胞质或细胞骨架中。用裂解的血小板或分离的细胞骨架吸收血清可降低IgG结合,但用完整血小板吸收时仅略有降低。对在免疫印迹上形成主要条带的IgG进行微亲和纯化表明,它是对纽蛋白或其降解产物具有特异性的抗体。这些发现表明,正常血清中含有对细胞内血小板抗原具有特异性的天然存在的IgG抗体,并且在某些情况下,它们的滴度接近具有病理意义的抗体的滴度。