Analytical Chemistry and Biomedicine Group, Exacts and Natural Sciences Faculty, University of Cartagena, 130015 Cartagena, Colombia.
Analytical Chemistry and Biomedicine Group, Pharmaceuticals Sciences Faculty, University of Cartagena, 130015 Cartagena, Colombia.
Int J Mol Sci. 2019 Nov 16;20(22):5769. doi: 10.3390/ijms20225769.
The presence of hemoglobin A-S (HbAS) in erythrocytes has been related to the high production of reactive oxygen species (ROS) and an increased in intracellular oxidative stress that affects the progress of erythrocytic cycle life and attenuates its serious clinical symptoms. Nevertheless, oxidative effects on proteome across the intraerythrocytic cycle in the presence of HbAS traits have not been described yet. Here, an immune dot-blot assay was used to quantify the carbonyl index (C.I) on 3D7 proteome at the different asexual erythrocytic stages. Protein carbonylation on parasites cultivated in erythrocytes from two donors with HbAS increased 5.34 ± 1.42 folds at the ring stage compared to control grown in hemoglobin A-A (HbAA) red blood cells. Whereas at trophozoites and schizonts stages were augmented 2.80 ± 0.52 and 3.05 ± 0.75 folds, respectively. Besides proteins involved in processes of the stress response, recognition and invasion were identified from schizonts carbonylated bands by combining SDS-PAGE with MALDI-TOF-TOF analysis. Our results reinforce the hypothesis that such oxidative modifications do not appear to happen randomly, and the sickle cell trait affects mainly a small fraction of parasite proteins particularly sensitive to ROS.
红细胞中血红蛋白 A-S(HbAS)的存在与活性氧(ROS)的高产生有关,并且细胞内氧化应激增加,影响红细胞周期寿命的进展,并减轻其严重的临床症状。然而,HbAS 特征存在时,针对细胞内周期的蛋白质组的氧化作用尚未被描述。在这里,使用免疫斑点印迹法来定量 3D7 蛋白质组在不同无性红细胞阶段的羰基指数(C.I)。与在血红蛋白 A-A(HbAA)红细胞中培养的对照相比,在来自携带 HbAS 的两个供体的红细胞中培养的寄生虫的蛋白质羰基化在环阶段增加了 5.34±1.42 倍。而在滋养体和裂殖体阶段分别增加了 2.80±0.52 和 3.05±0.75 倍。除了涉及应激反应、识别和入侵过程的蛋白质外,还通过将 SDS-PAGE 与 MALDI-TOF-TOF 分析相结合,从裂殖体羰基化带中鉴定出裂殖体的碳带。我们的结果强化了这样一种假设,即这种氧化修饰似乎不是随机发生的,镰状细胞特征主要影响对 ROS 特别敏感的寄生虫蛋白的一小部分。