Meek W D, Davis W L
In Vitro Cell Dev Biol. 1986 Dec;22(12):725-37. doi: 10.1007/BF02621090.
The potent fungal metabolite cytochalasin D (CD) and cationized ferritin (CF) are used in combination to test for negative charge distribution on blebs (knobs). Two established human epithelial cell lines, WISH and HeLa, that display blebs in various phases of the cell cycle or under certain culture conditions are investigated. CD alone, applied at a low concentration (1.0 micrograms/ml) and for a short time period (3 min), causes blebs to appear as the prevalent surface feature. These are filled mainly with free ribosomes. Additionally, feltlike mats, presumed to be disorganized, compacted microfilaments, are formed directly beneath the cell membrane. These are especially evident in the cortical cytoplasm below the blebs or bleb clusters. CF (0.345 mg/ml), applied for a 5-min period after CD administration (1.0 microgram/ml) for 3 min, appears along the surface of microvilli, at the base of blebs, and in vesicles beneath the bleb clusters. In some cases, microfilaments (6 nm in diameter) are closely related to the vesicles. CF does not preferentially bind to the apical cell membrane of blebs. Above areas of the subplasmalemmal microfilaments, CF membrane binding is apparent, even under circumstances where the filaments are disorganized by cytochalasin treatment. These results seem to show the following: bleb membranes are different from the remainder of the cell and do exhibit a loss of negative charge and surface charge may be dependent on the presence or structural integrity of membrane-related 6-nm microfilaments.
强效真菌代谢产物细胞松弛素D(CD)和阳离子铁蛋白(CF)联合用于检测泡(瘤)上的负电荷分布。研究了两种已建立的人类上皮细胞系WISH和HeLa,它们在细胞周期的不同阶段或在特定培养条件下会出现泡。单独使用低浓度(1.0微克/毫升)的CD并短时间(3分钟)处理,会使泡成为主要的表面特征。这些泡主要充满游离核糖体。此外,在细胞膜正下方会形成毡状垫子,推测是杂乱、紧密排列的微丝。这些在泡或泡簇下方的皮质细胞质中尤为明显。在给予3分钟的CD(1.0微克/毫升)后,再施加5分钟的CF(0.345毫克/毫升),CF会出现在微绒毛表面、泡的基部以及泡簇下方的囊泡中。在某些情况下,微丝(直径6纳米)与囊泡密切相关。CF不会优先结合到泡的顶端细胞膜上。在质膜下微丝区域上方,即使在微丝因细胞松弛素处理而紊乱的情况下,CF与膜的结合也很明显。这些结果似乎表明:泡膜与细胞的其余部分不同,确实表现出负电荷的丧失,并且表面电荷可能取决于与膜相关的6纳米微丝的存在或结构完整性。