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首页> 外文期刊>Journal of cell biology >Ionophore-resistant mutant of Toxoplasma gondii reveals involvement of a sodium/hydrogen exchanger in calcium regulation
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Ionophore-resistant mutant of Toxoplasma gondii reveals involvement of a sodium/hydrogen exchanger in calcium regulation

机译:弓形虫的耐离子载体突变体显示钠/氢交换剂参与钙调节

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Calcium is a critical mediator of many intracellular processes in eukaryotic cells. In the obligate intracellular parasite Toxoplasma gondii , for example, a rise in [Ca2+] is associated with significant morphological changes and rapid egress from host cells. To understand the mechanisms behind such dramatic effects, we isolated a mutant that is altered in its responses to the Ca2+ ionophore A23187 and found the affected gene encodes a homologue of Na+/H+ exchangers (NHEs) located on the parasite's plasma membrane. We show that in the absence of TgNHE1, Toxoplasma is resistant to ionophore-induced egress and extracellular death and amiloride-induced proton efflux inhibition. In addition, the mutant has increased levels of intracellular Ca2+, which explains its decreased sensitivity to A23187. These results provide direct genetic evidence of a role for NHE1 in Ca2+ homeostasis and important insight into how this ubiquitous pathogen senses and responds to changes in its environment.
机译:钙是真核细胞中许多细胞内过程的关键介质。例如,在专性的细胞内寄生虫弓形虫中,[Ca2 +]的升高与明显的形态学变化和宿主细胞的快速流出有关。为了了解这种巨大作用背后的机制,我们分离了一个突变体,该突变体对Ca2 +离子载体A23187的反应发生了变化,发现受影响的基因编码位于寄生虫质膜上的Na + / H +交换子(NHE)的同源物。我们显示,在没有TgNHE1的情况下,弓形虫对离子载体诱导的出口和细胞外死亡以及阿米洛利诱导的质子外排抑制有抵抗力。另外,该突变体具有增加的细胞内Ca 2+水平,这解释了其对A23187的敏感性降低。这些结果为NHE1在Ca2 +体内平衡中的作用提供了直接的遗传证据,并提供了对这种普遍存在的病原体如何感测和响应其环境变化的重要见解。

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