[Selective binding in vitro of a modified form of the C3 component of complement to human erythrocytes].

Annales d'immunologie Pub Date : 1983-03-01
C Micouin, E Hudry-Clergeon, B Roussel, N Battail, A Tournoud, M G Colomb
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Abstract

C3 was bound to human erythrocytes from autologous plasma or from serum brought to low ionic strength (mu less than or equal to 0.03) and pH between 4.0 and 5.0, then subsequently incubated with erythrocytes (50/1, v/v) for 20 min at 0 degree C. This capacity was preserved up to 72 h by prolonged incubation at 20, 25 or 37 degrees C, whereas it was quickly lost by incubation at 0 degree C. C3 binding did not require complement activation and was not observed with neuraminidase-treated erythrocytes. Crossed immunoelectrophoretic analysis of the pretreated serum or plasma revealed that a fraction having more cathodal migration than that of native C3 was generated upon incubation in the above-mentioned conditions. This fraction appeared able to selectively bind to the erythrocytes. Cell-bound C3 reacted positively to antisera against C3a, C3c, C3d or native C3; they rosetted positively with EAC3b, clearly showing that this C3 binding was not dependent on the proteolysis of C3 and that it concerned the acceptor sites on the cells, since C3b receptors were free. The functional significance of this C3 binding was also investigated: EC3 were not able to lyse through the alternative pathway, whereas lysis clearly increased when C3 was found to AET-treated erythrocytes. This finding, together with the modulation in the capacity of EC3 or E(AET)C3 to form an alternative pathway convertase by antibodies to C3c or C3d, strongly suggests a contribution of bound C3 to such a convertase. In contrast to "C3b-like" C3, this modified C3 was able to bind to acceptor sites on erythrocytes but, like the former, it retained the capacity to form an alternative pathway convertase. In this light, it may represent an intermediate between C3 and "C3b-like" C3.

[补体C3成分修饰形式与人红细胞的体外选择性结合]。
C3与来自自体血浆或血清的红细胞结合,在低离子强度(mu小于或等于0.03)和pH在4.0到5.0之间,然后与红细胞(50/1,v/v)在0℃下孵育20分钟,在20、25或37℃下延长孵育时间,这种能力可保持72小时。而在0度c的孵育下,C3的结合不需要补体激活,也没有在神经氨酸酶处理的红细胞中观察到。对预处理血清或血浆的交叉免疫电泳分析显示,在上述条件下孵育后产生的部分比天然C3具有更多的阴极迁移。这个部分似乎能够选择性地与红细胞结合。细胞结合C3对C3a、C3c、C3d或天然C3抗血清反应阳性;它们与EAC3b阳性结合,清楚地表明C3结合不依赖于C3的蛋白水解,它与细胞上的受体位点有关,因为C3b受体是游离的。我们还研究了这种C3结合的功能意义:EC3不能通过替代途径裂解,而当aet处理的红细胞中发现C3时,裂解明显增加。这一发现,加上EC3或E(AET)C3通过C3c或C3d抗体形成替代途径转化酶的能力的调节,强烈表明结合的C3对这种转化酶有贡献。与“c3b样”C3相比,这种修饰的C3能够与红细胞上的受体位点结合,但与前者一样,它保留了形成替代途径转化酶的能力。在这种情况下,它可能代表C3和“类似c3b”的C3之间的中间物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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