Cintra W M, Silva-Filho F C, De Souza W
J Submicrosc Cytol. 1986 Oct;18(4):773-81.
The surface charge of Toxoplasma gondii tachyzoites was evaluated by means of binding of colloidal iron hydroxide particles at pH 1.8, cationized ferritin particles at pH 7.2 and ruthenium red to the cell surface, as visualized by electron microscopy and by direct measurements of the electrophoretic mobility (EPM) of the cells suspended in solutions of different ionic strength and pH. At pH 7.2, T. gondii has a negative surface charge with a mean EPM of--1.1272 +/- 0.0917 micron.s-1 X V-1 X cm. No significant difference was observed between the EPM of living cells at 25 degrees C and that of glutaraldehyde-fixed cells. At lower pH, there is a decrease in the negative surface charge, with an isoelectric point at pH 3.5. At higher pH (greater than 10), there is an increase in the surface charge reaching an EPM of--1.5675 +/- 0.0848 micron.s-1 X V-1 X cm at pH 7.2. These results indicate that the surface of T. gondii contains both negatively and positively charged dissociating groups. Binding of cationized ferritin particles and ruthenium red throughout the cell surface of glutaraldehyde-fixed cells was observed. However, when living parasites were incubated at 4 degrees C in the presence of cationized ferritin some cells showed a uniform distribution of the label, others showed a patch-distribution and still in others no label was seen, indicating a process of mobility and shedding of surface anionic sites. Colloidal iron hydroxyde particles did not bind to the surface of T. gondii. Incubation of the parasites in the presence of neuraminidase from Clostridium perfringens or Vibrio cholerae or in the presence of proteolytic enzymes (trypsin or protease) did not interfere with the surface charge.(ABSTRACT TRUNCATED AT 250 WORDS)
通过在pH 1.8条件下氢氧化铁胶体颗粒、pH 7.2条件下阳离子铁蛋白颗粒以及钌红与细胞表面的结合来评估刚地弓形虫速殖子的表面电荷,通过电子显微镜观察以及直接测量悬浮于不同离子强度和pH值溶液中的细胞的电泳迁移率(EPM)来进行评估。在pH 7.2时,刚地弓形虫具有负表面电荷,平均EPM为-1.1272±0.0917微米·秒⁻¹×伏特⁻¹×厘米。在25℃下活细胞的EPM与戊二醛固定细胞的EPM之间未观察到显著差异。在较低pH值时,负表面电荷减少,在pH 3.5时有一个等电点。在较高pH值(大于10)时,表面电荷增加,在pH 7.2时EPM达到-1.5675±0.0848微米·秒⁻¹×伏特⁻¹×厘米。这些结果表明刚地弓形虫表面含有带负电荷和正电荷的解离基团。观察到阳离子铁蛋白颗粒和钌红在戊二醛固定细胞的整个细胞表面结合。然而,当活寄生虫在4℃下于阳离子铁蛋白存在的情况下孵育时,一些细胞显示标记均匀分布,其他细胞显示斑块分布,还有一些细胞未观察到标记,这表明表面阴离子位点存在移动和脱落过程。氢氧化铁胶体颗粒未与刚地弓形虫表面结合。在产气荚膜梭菌或霍乱弧菌的神经氨酸酶存在下或在蛋白水解酶(胰蛋白酶或蛋白酶)存在下孵育寄生虫不会干扰表面电荷。(摘要截短于250字)