Tavassoli M, Kosower N S, Halverson C, Aoki M, Kosower E M
Biochim Biophys Acta. 1980 Oct 2;601(3):544-58. doi: 10.1016/0005-2736(80)90557-x.
Red cells of different species respond differently to the treatment with the membrane mobility agent, A2C, with respect to both the A2C interaction and the subsequent cell-cell interaction. Depending on whether both, one or neither of the processes are effective, some red cells (e.g., nucleated Leghorn hen red cells, rat red cells) fuse easily, some (human red cells) show morphological changes but do not fuse, and others (nucleated Rock hen red cells) show little or no response. Mixed fusion (i.e., between fusible cells of different species) is readily obtained, indicating that no species-specific recognition sites are required for A2C-induced fusion. the potential for fusion is a transferable characteristic. In the presence of fusible cells, A2C induces both heterologous and homologous fusion of otherwise 'non-fusible' cells. Electron micrographs of fusing cells after treatment with A2C reveal 'onion-ring' structures ('whorls'), free of intramembranous protein particles but different from the smooth appearance of A(2)C particles. Whorls are considered to arise from fusion-potent membrane areas. Fusion is apparent at multiple sites along the contact line between apposed membranes. The postulated appearance of vesicle-like structures along the fusion line (Kosower, E.M., Kosower, N.S. and Wegman, P. (1977) Biochim. Biophys. Acta 471, 311-329) is confirmed by micrographs. The mechanism of this fusion process is duscussed and compared to other types of fusion process.
不同物种的红细胞对膜流动性剂A2C的处理反应不同,在A2C相互作用以及随后的细胞间相互作用方面均是如此。根据这两个过程是都有效、只有一个有效还是都无效,一些红细胞(例如,有核来亨鸡红细胞、大鼠红细胞)容易融合,一些(人类红细胞)表现出形态变化但不融合,而另一些(有核原鸡红细胞)几乎没有反应或没有反应。很容易实现混合融合(即不同物种的可融合细胞之间的融合),这表明A2C诱导的融合不需要物种特异性识别位点。融合潜力是一种可转移的特性。在存在可融合细胞的情况下,A2C诱导原本“不可融合”细胞的异源和同源融合。用A2C处理后融合细胞的电子显微镜照片显示出“洋葱环”结构(“涡旋”),没有膜内蛋白质颗粒,但与A(2)C颗粒的光滑外观不同。涡旋被认为是由具有融合潜力的膜区域产生的。融合在相邻膜之间接触线的多个位点很明显。沿融合线推测出现的囊泡状结构(Kosower, E.M., Kosower, N.S.和Wegman, P. (1977) Biochim. Biophys. Acta 471, 311 - 329)得到了显微照片的证实。讨论了这种融合过程的机制,并与其他类型的融合过程进行了比较。