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内格里虫属代谢。

Naegleria gruberi metabolism.

机构信息

Research Unit for Tropical Diseases, de Duve Institute, Université catholique de Louvain, B-1200 Brussels, Belgium.

出版信息

Int J Parasitol. 2011 Aug 1;41(9):915-24. doi: 10.1016/j.ijpara.2011.04.004. Epub 2011 Jun 16.

Abstract

The completion of the genome project for Naegleria gruberi provides a unique insight into the metabolic capacities of an organism, for which there is an almost complete lack of experimental data. The metabolism of Naegleria seems to be extremely versatile, as can be expected for a free-living amoeboflagellate, but although considered to be fully aerobic, its genome also predicts important anaerobic traits. Other predictions are that carbohydrates are oxidised to carbon dioxide and water when oxygen is not limiting and that in the absence of oxygen the end-products will be succinate, acetate and minor quantities of ethanol and D-lactate. The hybrid mitochondrion/hydrogenosome has both cytochromes and an [Fe] hydrogenase, but seems to lack pyruvate-ferredoxin oxidoreductase. Genomic information also provides the possibility to identify drugs with a possible mode of action in the fatal primary amoebic meningoencephalitis caused by the closely related opportunistic pathogen Naegleria fowleri.

摘要

完成了格氏纳虫基因组项目,为我们深入了解一种代谢能力很强的生物体提供了独特的视角,而对于这种生物体,我们几乎完全缺乏实验数据。纳氏虫的代谢似乎非常多样,这在自由生活的变形虫中是可以预期的,但尽管被认为是完全需氧的,它的基因组也预测了重要的厌氧特征。其他预测是,当氧气不受限制时,碳水化合物会被氧化为二氧化碳和水,而在没有氧气的情况下,终产物将是琥珀酸盐、乙酸盐和少量的乙醇和 D-乳酸。混合的线粒体/氢化体既有细胞色素又有[Fe]氢化酶,但似乎缺乏丙酮酸-ferredoxin 氧化还原酶。基因组信息还提供了一种可能性,可以识别出与密切相关的机会性病原体福氏纳虫引起的致命性原发性阿米巴脑膜脑炎有潜在作用机制的药物。

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