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恶性疟原虫的叶酸代谢网络。

The folate metabolic network of Falciparum malaria.

作者信息

Salcedo-Sora J Enrique, Ward Steve A

机构信息

Department of Parasitology, Liverpool School of Tropical Medicine, Pembroke Place, Liverpool L3 5QA, UK.

出版信息

Mol Biochem Parasitol. 2013 Mar;188(1):51-62. doi: 10.1016/j.molbiopara.2013.02.003. Epub 2013 Feb 27.

Abstract

The targeting of key enzymes in the folate pathway continues to be an effective chemotherapeutic approach that has earned antifolate drugs a valuable position in the medical pharmacopoeia. The successful therapeutic use of antifolates as antimalarials has been a catalyst for ongoing research into the biochemistry of folate and pterin biosynthesis in malaria parasites. However, our understanding of the parasites folate metabolism remains partial and patchy, especially in relation to the shikimate pathway, the folate cycle, and folate salvage. A sizeable number of potential folate targets remain to be characterised. Recent reports on the parasite specific transport of folate precursors that would normally be present in the human host awaken previous hypotheses on the salvage of folate precursors or by-products. As the parasite progresses through its life-cycle it encounters very contrasting host cell environments that present radically different metabolic milieus and biochemical challenges. It would seem probable that as the parasite encounters differing environments it would need to modify its biochemistry. This would be reflected in the folate homeostasis in Plasmodium. Recent drug screening efforts and insights into folate membrane transport substantiate the argument that folate metabolism may still offer unexplored opportunities for therapeutic attack.

摘要

针对叶酸途径中的关键酶仍然是一种有效的化疗方法,这使抗叶酸药物在医学药典中获得了重要地位。抗叶酸药物作为抗疟药的成功治疗应用,推动了对疟原虫叶酸和蝶呤生物合成生物化学的持续研究。然而,我们对疟原虫叶酸代谢的理解仍然是片面和不完整的,特别是在莽草酸途径、叶酸循环和叶酸补救方面。大量潜在的叶酸靶点仍有待表征。最近关于疟原虫特异性转运通常存在于人类宿主中的叶酸前体的报道,唤起了先前关于叶酸前体或副产物补救的假设。随着疟原虫在其生命周期中发展,它会遇到截然不同的宿主细胞环境,这些环境呈现出截然不同的代谢环境和生化挑战。随着疟原虫遇到不同的环境,它似乎很可能需要改变其生物化学。这将反映在疟原虫的叶酸稳态中。最近的药物筛选努力和对叶酸膜转运的见解证实了这样的观点,即叶酸代谢可能仍然提供尚未探索的治疗攻击机会。

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