Trypanosoma cruzi is the agent of Chagas disease, and the finding that this parasite possesses a mitochondrial calcium uniporter (TcMCU) with characteristics similar to that of mammalian mitochondria was fundamental for the discovery of the molecular nature of MCU in eukaryotes. We report here that ablation of TcMCU, or its paralog TcMCUb, by clustered regularly interspaced short palindromic repeat (CRISPR)/Cas9 led to a marked decrease in mitochondrial Ca2+ uptake without affecting the membrane potential of these cells, whereas overexpression of each gene caused a significant increase in the ability of mitochondria to accumulate Ca2+ While TcMCU-knockout (KO) epimastigotes were viable and able to differentiate into trypomastigotes, infect host cells, and replicate normally, ablation of TcMCUb resulted in epimastigotes having an important growth defect, lower rates of respiration and metacyclogenesis, more pronounced autophagy changes under starvation, and significantly reduced infectivity. Overexpression of TcMCUb, in contrast to what was proposed for its mammalian ortholog, did not result in a dominant negative effect on TcMCU.IMPORTANCE The finding of a mitochondrial calcium uniporter (MCU) in Trypanosoma cruzi was essential for the discovery of the molecular nature of this transporter in mammals. In this work, we used the CRISPR/Cas9 technique that we recently developed for T. cruzi to knock out two components of the uniporter: MCU, the pore subunit, and MCUb, which was proposed as a negative regulator of MCU in human cells. In contrast to what occurs in human cells, MCU is not essential, while MCUb is essential for growth, differentiation, and infectivity; has a bioenergetic role; and does not act as a dominant negative subunit of MCU.

译文

克氏锥虫是恰加斯病的病原体,发现该寄生虫具有与哺乳动物线粒体相似的特征的线粒体钙单转运蛋白 (TcMCU),对于发现真核生物中MCU的分子性质至关重要。我们在这里报告说,通过聚集的规则间隔的短回文重复序列 (CRISPR)/Cas9消融TcMCU或其paralog TcMCUb导致线粒体Ca2吸收显着减少,而不影响这些细胞的膜电位,尽管每个基因的过表达导致线粒体积累Ca2的能力显着增加,而TcMCU基因敲除 (KO) epimastigotes存活并能够分化为锥虫,感染宿主细胞并正常复制,但TcMCUb的消融导致epimastigotes具有重要的生长缺陷,呼吸和代谢生成率较低,饥饿下自噬变化更明显,感染性明显降低。TcMCUb的过表达,与其哺乳动物直系同源物相比,并未对TcMCU产生明显的负面影响。重要性克氏锥虫中线粒体钙单转运蛋白 (MCU) 的发现对于发现哺乳动物中这种转运蛋白的分子性质至关重要。在这项工作中,我们使用了最近为T. cruzi开发的CRISPR/Cas9技术来敲除uniporter的两个组件: MCU,pore亚基和MCUb,后者被提议作为人类细胞中MCU的负调节器。与人类细胞中发生的情况相反,MCU不是必不可少的,而MCUb对于生长,分化和感染性至关重要; 具有生物能作用; 并且不充当MCU的主要负亚基。

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