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类异戊二烯生物合成抑制会破坏恶性疟原虫中Rab5的定位和食物泡完整性。

Isoprenoid biosynthesis inhibition disrupts Rab5 localization and food vacuolar integrity in Plasmodium falciparum.

作者信息

Howe Ruth, Kelly Megan, Jimah John, Hodge Dana, Odom Audrey R

机构信息

Department of Pediatrics, Washington University School of Medicine, St. Louis, Missouri, USA.

出版信息

Eukaryot Cell. 2013 Feb;12(2):215-23. doi: 10.1128/EC.00073-12. Epub 2012 Dec 7.

Abstract

The antimalarial agent fosmidomycin is a validated inhibitor of the nonmevalonate isoprenoid biosynthesis (methylerythritol 4-phosphate [MEP]) pathway in the malaria parasite, Plasmodium falciparum. Since multiple classes of prenyltransferase inhibitors kill P. falciparum, we hypothesized that protein prenylation was one of the essential functions of this pathway. We found that MEP pathway inhibition with fosmidomycin reduces protein prenylation, confirming that de novo isoprenoid biosynthesis produces the isoprenyl substrates for protein prenylation. One important group of prenylated proteins is small GTPases, such as Rab family members, which mediate cellular vesicular trafficking. We have found that Rab5 proteins dramatically mislocalize upon fosmidomycin treatment, consistent with a loss of protein prenylation. Fosmidomycin treatment caused marked defects in food vacuolar morphology and integrity, consistent with a defect in Rab-mediated vesicular trafficking. These results provide insights to the biological functions of isoprenoids in malaria parasites and may assist the rational selection of secondary agents that will be useful in combination therapy with new isoprenoid biosynthesis inhibitors.

摘要

抗疟药物磷霉素是疟原虫恶性疟原虫中非甲羟戊酸类异戊二烯生物合成(甲基赤藓糖醇4-磷酸[MEP])途径的有效抑制剂。由于多类异戊二烯基转移酶抑制剂可杀死恶性疟原虫,我们推测蛋白质异戊二烯化是该途径的基本功能之一。我们发现用磷霉素抑制MEP途径会减少蛋白质异戊二烯化,证实从头合成异戊二烯可产生用于蛋白质异戊二烯化的异戊二烯基底物。一类重要的异戊二烯化蛋白是小GTP酶,如Rab家族成员,它们介导细胞囊泡运输。我们发现,经磷霉素处理后,Rab5蛋白会出现明显的定位错误,这与蛋白质异戊二烯化的丧失一致。磷霉素处理导致食物泡形态和完整性出现明显缺陷,这与Rab介导的囊泡运输缺陷一致。这些结果为异戊二烯类化合物在疟原虫中的生物学功能提供了见解,并可能有助于合理选择可与新型异戊二烯生物合成抑制剂联合使用的辅助药物。

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