Role of complement receptor type three and serum opsonins in the neutrophil response to yeast.

J A Cain, S L Newman, G D Ross
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引用次数: 80

Abstract

Previous studies have suggested that neutrophil complement receptor type three (CR3) has two binding sites: (1) a site for fixed iC3b that does not trigger ingestion or a superoxide (O2-) burst, and (2) a function-triggering site for the beta-glucan component of yeast (Saccharomyces cerevisiae) cell walls. In the present study it was found that yeast (Y) coated with C3b (YC3b) or iC3b (YC3bi), prepared with purified complement in an IgG-free system, were avidly ingested ans stimulated a vigorous O2- burst, whereas sheep erythrocytes (E) bearing C3b or iC3b, were not ingested and did not give an O2- burst. YC3b and YC3bi contained an amount of fixed C3 that was approximately equal to serum-opsonized Y (OY), and produced O2- bursts comparable to OY. Experiments utilizing rabbit F(ab')2 anticomplement receptor type one (anti-CR1) to block fixed C3b binding to CR1, and monoclonal anti-CR3 (MN-41 or OKM1) to block fixed iC3b and Y cell wall binding to CR3, indicated that the O2- burst response to OY was primarily due to fixed iC3b and Y cell wall binding to CR3. Fixed C3b (that represented 33% of the fixed C3 on OY) and IgG anti-Y antibodies that bound to CR1 and Fc receptors, respectively, were found to contribute little to the response. Although YC3b did bind avidly to neutrophil CR1, the results suggested that the O2- burst response to YC3b was triggered after the initial YC3b binding by the secondary attachment of Y cell wall components to CR3. When neutrophils were treated with anti-CR3, 90% of neutrophils bound YC3b (via CR1), but phagocytosis and an O2- burst were completely absent. Similar findings were made with OKM1-treated neutrophils and YC3bi. Responses of OKM1-treated neutrophils were inhibited because only the iC3b-binding site of CR3 was ligated by the YC3bi. Thus, fixed C3b or iC3b on Y mediate avid binding of Y to neutrophils via CR1 or the iC3b-binding site of CR3, respectively, but ingestion and an O2- burst response are only triggered when glucans in the Y cell wall secondarily bind to neutrophils via the beta-glucan binding site of CR3.

补体受体3型和血清调理素在中性粒细胞对酵母反应中的作用。
先前的研究表明,中性粒细胞补体受体3型(CR3)有两个结合位点:(1)固定iC3b的位点,不会引发摄入或超氧化物(O2-)爆发;(2)酵母(Saccharomyces cerevisiae)细胞壁的β -葡聚糖成分的功能触发位点。在目前的研究中,发现酵母(Y)包被C3b (YC3b)或iC3b (YC3bi),在无igg系统中纯化补体制备,被大量摄入并刺激了剧烈的O2-爆发,而绵羊红细胞(E)携带C3b或iC3b,不被摄入,也不产生O2-爆发。YC3b和YC3bi含有一定量的固定C3,大约等于血清调理的Y (OY),并产生与OY相当的O2-爆发。利用兔F(ab’)2 1型抗补体受体(anti-CR1)阻断固定的C3b与CR1的结合,利用单克隆抗CR3 (MN-41或OKM1)阻断固定的iC3b和Y细胞壁与CR3的结合,实验表明OY的O2- burst反应主要是由于固定的iC3b和Y细胞壁与CR3的结合。研究发现,分别与CR1和Fc受体结合的固定C3b(占OY上固定C3的33%)和IgG抗y抗体对应答贡献不大。虽然YC3b确实与中性粒细胞CR1强烈结合,但结果表明,YC3b的O2- burst反应是在YC3b首次结合后,通过Y细胞壁成分与CR3的二次附着而触发的。当中性粒细胞用抗cr3处理时,90%的中性粒细胞结合YC3b(通过CR1),但完全没有吞噬和O2-爆发。在okm1处理的中性粒细胞和YC3bi中也有类似的发现。由于只有CR3的ic3b结合位点被YC3bi连接,okm1处理的中性粒细胞的反应被抑制。因此,Y上固定的C3b或iC3b分别通过CR1或CR3的iC3b结合位点介导Y与中性粒细胞的强烈结合,但只有当Y细胞壁上的葡聚糖通过CR3的β -葡聚糖结合位点继发与中性粒细胞结合时,才会触发摄入和O2- burst反应。
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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