Birgbauer E, Solomon F
Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.
J Cell Biol. 1989 Oct;109(4 Pt 1):1609-20. doi: 10.1083/jcb.109.4.1609.
The marginal band of nucleated erythrocytes is a microtubule organelle under rigorous quantitative and spatial control, with properties quite different from those of the microtubule organelles of cultured cells. Previous results suggest that proteins other than tubulin may participate in organizing the marginal band, and may interact with elements of the erythrocyte cytoskeleton in addition to microtubules. To identify such species, we raised mAbs against the proteins that assemble from chicken brain homogenates with tubulin. One such antibody binds to a single protein in chicken erythrocytes, and produces an immunofluorescence pattern colocalizing with marginal band microtubules. Several properties of this protein are identical to those of ezrin, a protein isolated from brush border and localized to motile elements of cultured cells. A significant proportion of the antigen is not soluble in erythrocytes, as determined by extraction with nonionic detergent. This cytoskeleton-associated fraction is unaffected by treatments that solubilize the marginal band microtubules. The protein has properties of both microtubule- and microfilament-associated proteins. In the accompanying manuscript (Goslin, K., E. Birgbauer, G. Banker, and F. Solomon. 1989. J. Cell Biol. 109:1621-1631), we show that the same antibody recognizes a component of growth cones with a similar dual nature. In early embryonic red blood cells, the antigen is dispersed throughout the cell and does not colocalize with assembled tubulin. Its confinement to the marginal band during development follows rather than precedes that of microtubules. These results, along with previous work, suggest models for the formation of the marginal band.
有核红细胞的边缘带是一种受到严格数量和空间控制的微管细胞器,其特性与培养细胞的微管细胞器截然不同。先前的结果表明,除微管蛋白外的其他蛋白质可能参与边缘带的组织,并且除微管外还可能与红细胞细胞骨架的成分相互作用。为了鉴定此类蛋白质,我们制备了针对从鸡脑匀浆与微管蛋白组装而成的蛋白质的单克隆抗体。其中一种抗体与鸡红细胞中的一种单一蛋白质结合,并产生与边缘带微管共定位的免疫荧光模式。这种蛋白质的几个特性与ezrin相同,ezrin是一种从刷状缘分离出来并定位于培养细胞运动元件的蛋白质。用非离子去污剂提取后发现,相当一部分抗原在红细胞中不溶。这种与细胞骨架相关的部分不受溶解边缘带微管的处理的影响。该蛋白质具有与微管和微丝相关蛋白质的特性。在随附的论文中(戈斯林,K.,E.比尔鲍尔,G.班克,和F.所罗门。1989.《细胞生物学杂志》。109:1621 - 1631),我们表明相同的抗体识别具有类似双重性质的生长锥成分。在早期胚胎红细胞中,抗原分散在整个细胞中,不与组装好的微管蛋白共定位。在发育过程中,它被限制在边缘带是在微管之后而不是之前。这些结果与先前的工作一起,提出了边缘带形成的模型。