Tanabe K, Mikkelsen R B, Wallach D F
Ciba Found Symp. 1983;94:64-73. doi: 10.1002/9780470715444.ch5.
Throughout its erythrocytic cycle the plasmodial parasite modifies the plasma membrane of its host cell. Some changes derive from parasite metabolism. Intraerythrocytic forms use glucose at more than 10-fold normal red cell rates. The H+ accompanying the lactate end-product is exported into the host cell cytoplasm by an electrogenic proton pump in the parasite membrane. This maintains a pH greater than 7.0 in the parasite cytoplasm, but lowers erythrocyte cytoplasmic pH from approximately 7.2 to 6.5. Ca2+ transport across parasite membranes is coupled to the proton pump, possibly a Ca2+/H+ antiporter. The Ca2+, Mg2+-ATPase and Na+,K+-ATPase activities of erythrocyte membranes from schizont-infected erythrocytes have been studied. Under optimal assay conditions (pH = 7.0; [ATP] = 1 mM; +/- calmodulin) membranes from infected cells showed a 30% reduction in Ca2+,Mg2+-ATPase activity but no difference from normal in Na+,K+-ATPase activity. The calmodulin levels of infected cells were depressed by about 30%. The [ATP] in the cytoplasm of infected erythrocytes was only 0.2 mM (as against 1.3 mM in normals) and at this ATP concentration the activities of both ATPases are only 30% of normal. Shifting the pH from 7.0 to 6.5 decreases Na+,K+-ATPase activity by an additional 50% but is without effect on the Ca2+,Mg2+-ATPase. The results provide a partial explanation for the increased Ca2+ permeability and altered Na+/K+ content of plasmodia-infected erythrocytes.
在整个红细胞周期中,疟原虫会改变其宿主细胞的质膜。一些变化源于寄生虫的新陈代谢。红细胞内的疟原虫形式利用葡萄糖的速率比正常红细胞快10倍以上。乳酸终产物伴随的H+通过寄生虫膜中的电生质子泵输出到宿主细胞细胞质中。这使得寄生虫细胞质的pH值保持在7.0以上,但将红细胞细胞质的pH值从大约7.2降低到6.5。Ca2+跨寄生虫膜的转运与质子泵偶联,可能是一种Ca2+/H+反向转运体。已经研究了来自裂殖体感染红细胞的红细胞膜的Ca2+、Mg2+-ATP酶和Na+、K+-ATP酶活性。在最佳测定条件下(pH = 7.0;[ATP] = 1 mM;有无钙调蛋白),感染细胞的膜显示Ca2+、Mg2+-ATP酶活性降低30%,但Na+、K+-ATP酶活性与正常细胞无差异。感染细胞的钙调蛋白水平降低了约30%。感染红细胞细胞质中的[ATP]仅为0.2 mM(正常细胞为1.3 mM),在此ATP浓度下,两种ATP酶的活性仅为正常活性的30%。将pH从7.0变为6.5会使Na+、K+-ATP酶活性再降低50%,但对Ca2+、Mg2+-ATP酶没有影响。这些结果为疟原虫感染的红细胞中Ca2+通透性增加和Na+/K+含量改变提供了部分解释。