Pytowski B, Maxfield F R, Michl J
Department of Pathology, State University of New York, Brooklyn 11203.
J Cell Biol. 1990 Mar;110(3):661-8. doi: 10.1083/jcb.110.3.661.
Reports from several laboratories suggest that neutrophils arrested during locomotion preferentially bind immune complexes at the front of the cell. Such asymmetry of binding has been interpreted as indicating an active modulation of phagocytic receptors to the anterior of the cell. To investigate this further, we have used digital analysis of fluorescence images to determine the binding patterns of mAbs directed against the Fc receptors, the receptors for the C3bi fragment of C3, and a neutrophil-specific antigen. We found that all three proteins are distributed nearly identically along the length of migrating neutrophils, and their distribution very closely parallels the anterior to posterior distribution of the plasma membrane. The use of mAbs offered an important advantage in that the binding of antireceptor antibodies, unlike the binding of ligands, should be independent of potential changes in the affinity of the receptors. We conclude that the anterior distribution of the phagocytic receptors in the plasma membrane of locomoting neutrophils parallels the overall increase in membrane area at the front of a migrating cell and that specific translocation of phagocytic receptors does not occur.
来自多个实验室的报告表明,在运动过程中停滞的中性粒细胞优先在细胞前端结合免疫复合物。这种结合的不对称性被解释为表明吞噬受体向细胞前部的主动调节。为了进一步研究这一点,我们使用荧光图像的数字分析来确定针对Fc受体、C3的C3bi片段受体和中性粒细胞特异性抗原的单克隆抗体的结合模式。我们发现,这三种蛋白质沿迁移中性粒细胞的长度分布几乎相同,并且它们的分布与质膜从前到后的分布非常相似。使用单克隆抗体具有一个重要优势,即抗受体抗体的结合与配体的结合不同,应该与受体亲和力的潜在变化无关。我们得出结论,运动中性粒细胞质膜中吞噬受体的前部分布与迁移细胞前端膜面积的总体增加平行,并且吞噬受体不会发生特异性易位。