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豚鼠补体的成分。II. 免疫溶血所需血清组分的分离

COMPONENTS OF GUINEA PIG COMPLEMENT. II. SEPARATION OF SERUM FRACTIONS ESSENTIAL FOR IMMUNE HEMOLYSIS.

作者信息

LINSCOTT W D, NISHIOKA K

出版信息

J Exp Med. 1963 Nov 1;118(5):795-815. doi: 10.1084/jem.118.5.795.

Abstract

The elution characteristics from DEAE cellulose are presented for four components of guinea pig serum, which are capable of interacting sequentially with sheep erythrocytes sensitized with antibody and the first, fourth, and second components of complement (EAC'1,4,2) to cause immune hemolysis, and information is given regarding some of the properties of these components, termed C'3c, C'3b, C'3a, and C'3d. All can react in the presence of ethylene-diaminetetraacetate, and are non-dialyzable. C'3c is quite stable at 56 degrees C, but is rapidly inactivated at low pH or by contact with hydrazine or ammonium hydroxide. C'3b is moderately heat-stable, quite susceptible to low pH, and less readily destroyed by hydrazine. C'3a is very heat-labile, but relatively stable at low pH, while C'3d is heat-labile, sensitive to low pH, and insensitive to bydrazine. EAC'1,4,2 reacts with C'3c to form EAC'1,4,2,3c, which reacts then with C'3b to give the intermediate, EAC'1,4,2,3cb. The following reaction with C'3a yields EAC'1,4,2,3cba, which reacts finally with C'3d to give EAC'1,4, 2,3cbad (E*). The first and last reactions proceed moderately well at 0 degrees C, but more rapidly at 30-37 degrees C. The reaction with C'3b is almost completely inhibited at 0 degrees C, while that involving C'3a proceeds almost as rapidly at 0 degrees C as at higher temperatures. EAC'1,4,2,3cba cells have an increased fragility as compared with the other intermediate forms. Depletion studies with purified fractions and appropriate intermediate complexes showed a high degree of depletion of C'3c, somewhat less of C'3b, and little or no depletion of C'3a from the fluid phase. Examination of a beta(1C) globulin prepared from fresh human serum revealed high C'3c and C'3b activity, and very little C'3a or C'3d.

摘要

本文介绍了豚鼠血清中四种成分从二乙氨基乙基纤维素上的洗脱特性,这四种成分能够依次与用抗体致敏的绵羊红细胞以及补体的第一、第四和第二成分(EAC'1,4,2)相互作用,引发免疫溶血,并给出了这些被称为C'3c、C'3b、C'3a和C'3d的成分的一些特性信息。所有这些成分在乙二胺四乙酸存在的情况下都能发生反应,且不可透析。C'3c在56摄氏度时相当稳定,但在低pH值下或与肼或氢氧化铵接触时会迅速失活。C'3b具有中等热稳定性,对低pH值相当敏感,且较不易被肼破坏。C'3a对热非常不稳定,但在低pH值下相对稳定,而C'3d对热不稳定,对低pH值敏感,对肼不敏感。EAC'1,4,2与C'3c反应形成EAC'1,4,2,3c,然后EAC'1,4,2,3c与C'3b反应生成中间体EAC'1,4,2,3cb。接下来与C'3a的反应产生EAC'1,4,2,3cba,EAC'1,4,2,3cba最终与C'3d反应生成EAC'1,4,2,3cbad(E*)。第一个和最后一个反应在0摄氏度时进行得较为顺利,但在30 - 37摄氏度时进行得更快。与C'3b的反应在0摄氏度时几乎完全受到抑制,而涉及C'3a的反应在0摄氏度时进行的速度几乎与在较高温度下一样快。与其他中间形式相比,EAC'1,4,2,3cba细胞的脆性增加。用纯化组分和适当的中间复合物进行的消耗研究表明,液相中C'3c的消耗程度很高,C'3b的消耗程度稍低,而C'3a的消耗很少或没有消耗。对从新鲜人血清中制备的一种β(1C)球蛋白的检测显示,其具有高C'3c和C'3b活性,而C'3a或C'3d的活性非常低。

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