Matteucci Elena, Giampietro Ottavio
Department of Internal Medicine, University of Pisa, Pisa, Italy.
Biomark Insights. 2007 Sep 17;2:321-9.
Erythrocytes are involved in the transport of oxygen and carbon dioxide in the body. Since pH is the influential factor in the Bohr-Haldane effect, pHi is actively maintained via secondary active transports Na(+)/H(+) exchange and HC(3) (-)/Cl(-) anion exchanger. Because of the redox properties of the iron, hemoglobin generates reactive oxygen species and thus, the human erythrocyte is constantly exposed to oxidative damage. Although the adult erythrocyte lacks protein synthesis and cannot restore damaged proteins, it is equipped with high activity of protective enzymes. Redox changes in the cell initiate various signalling pathways. Plasma membrane oxido-reductases (PMORs) are transmembrane electron transport systems that have been found in the membranes of all cells and have been extensively characterized in the human erythrocyte. Erythrocyte PMORs transfer reducing equivalents from intracellular reductants to extracellular oxidants, thus their most important role seems to be to enable the cell respond to changes in intra- and extra-cellular redox environments.So far the activity of erythrocyte PMORs in disease states has not been systematically investigated. This review summarizes present knowledge on erythrocyte electron transfer activity in humans (health, type 1 diabetes, diabetic nephropathy, and chronic uremia) and hypothesizes an integrated model of the functional organization of erythrocyte plasma membrane where electron pathways work in parallel with transport metabolons to maintain redox homeostasis.
红细胞参与体内氧气和二氧化碳的运输。由于pH是玻尔-哈代效应中的影响因素,细胞内pH(pHi)通过继发性主动转运即钠/氢交换和碳酸氢根/氯阴离子交换来主动维持。由于铁的氧化还原特性,血红蛋白会产生活性氧,因此,人类红细胞不断受到氧化损伤。尽管成年红细胞缺乏蛋白质合成能力,无法修复受损蛋白质,但它具有高活性的保护酶。细胞内的氧化还原变化会启动各种信号通路。质膜氧化还原酶(PMORs)是跨膜电子传递系统,已在所有细胞的膜中发现,并在人类红细胞中得到了广泛研究。红细胞PMORs将还原当量从细胞内还原剂转移到细胞外氧化剂,因此它们最重要的作用似乎是使细胞能够对细胞内和细胞外氧化还原环境的变化做出反应。到目前为止,尚未对疾病状态下红细胞PMORs的活性进行系统研究。本综述总结了目前关于人类(健康、1型糖尿病、糖尿病肾病和慢性尿毒症)红细胞电子传递活性的知识,并假设了一个红细胞质膜功能组织的综合模型,其中电子通路与运输代谢体并行工作以维持氧化还原稳态。