Husaini Y, Rai L C, Mallick N
Department of Botany, Banaras Hindu University, Varanasi, India.
Biometals. 1996 Jul;9(3):277-83. doi: 10.1007/BF00817928.
This study demonstrates a pH-dependent inhibition of Mg(2+)- and Ca(2+)-ATPase activities of Nostoc linckia and Chlorella vulgaris exposed to AlCl3, AlF3, NaF and AlCl3+NaF together. AlF3 and the combination of AlCl3+NaF were more inhibitory to both the enzymes as compared with AlCl3 and NaF. Toxicity of the test compounds increased with increasing acidity. Interaction of AlCl3+NaF was additive on N. linckia and C. vulgaris, respectively, at pH 7.5 and 6.8, and synergistic at pH 6.0 and 4.5. In the presence of 60 and 100 microM PO4(3-) an increased NaF concentration (in the AlCl3+NaF combination) was required to produce the same degree of inhibition in ATP synthesis and ATPase activity. Toxicity of fluoroaluminate was reduced in the presence of EDTA and citrate. Except for beryllium to some extent, combinations of cadmium, cobalt, iron, manganese, tin and zinc with fluoride were not as effective as aluminium in inhibiting the ATPase activity. The presence of a 100 kDa protein band in SDS-PAGE of both control as well as AlCl3+NaF-treated samples suggested that AlF4- inhibits the ATPase activity by acting as a functional barrier without affecting the structure of the enzyme.
本研究表明,暴露于氯化铝、氟化铝、氟化钠以及氯化铝与氟化钠混合物中的念珠藻和普通小球藻的镁离子和钙离子ATP酶活性受到pH依赖性抑制。与氯化铝和氟化钠相比,氟化铝以及氯化铝与氟化钠的混合物对这两种酶的抑制作用更强。测试化合物的毒性随酸度增加而增强。在pH 7.5和6.8时,氯化铝与氟化钠的相互作用在念珠藻和普通小球藻中分别表现为相加作用,而在pH 6.0和4.5时表现为协同作用。在存在60和100 microM磷酸根离子的情况下,(在氯化铝与氟化钠的混合物中)需要提高氟化钠浓度才能在ATP合成和ATP酶活性方面产生相同程度的抑制。在存在乙二胺四乙酸和柠檬酸盐的情况下,氟铝酸盐的毒性降低。除了铍在一定程度上有影响外,镉、钴、铁、锰、锡和锌与氟化物的组合在抑制ATP酶活性方面不如铝有效。对照样品以及经氯化铝与氟化钠处理的样品在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳中的100 kDa蛋白条带表明,四氟铝酸根离子通过充当功能屏障来抑制ATP酶活性,而不影响酶的结构。