Department of Microbiology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore.
Parasitol Res. 2009 Nov;105(6):1715-22. doi: 10.1007/s00436-009-1612-9. Epub 2009 Sep 30.
Although ATP-dependent caseinolytic protease (Clp) complexes are important for regulating the pathogenicity, survival, and development of many pathogens, their physiological roles in the pathogenicity of malarial parasites remain unknown. This study reports the cloning, authentication, and characterization of a putative Clp protease subunit from Plasmodium falciparum (PfClpP). Heterologous expression studies showed that signal peptide hindered the soluble expression of the full-length PfClpP. Biochemical analyses of the recombinant PfClpP showed that it did not cleave the known ClpP substrate, succinyl-leucine-tyrosine-7-amido-4-methylcoumarin hydrochloride (AMC). Instead, PfClpP readily hydrolyzed a different substrate, glycine-arginine-AMC. The distinctive substrate preference of PfClpP suggests structural uniqueness in its substrate-binding sites that might be exploitable in anti-malarial drug development. Whether PfClpP resembles most eukaryotic ClpPs in being localized to the mitochondria and chloroplasts was also investigated using a mammalian surrogate host system. The results observed showed that green-fluorescence protein tagged PfClpP proteins were localized to the nucleus. PfClpP may have a unique and specialized role in the plasmodial nucleus. Taken together, this study has shown that PfClpP has a unique peptide cleavage function that is localized at the plasmodial nucleus, probably positioned to elicit a regulatory role in the parasite's pathogenicity.
虽然 ATP 依赖的蛋白酶体(Clp)复合物对于调节许多病原体的致病性、生存和发育非常重要,但它们在疟原虫致病性中的生理作用仍不清楚。本研究报告了从恶性疟原虫(PfClpP)中克隆、鉴定和表征的一种假定的 Clp 蛋白酶亚基。异源表达研究表明,信号肽阻碍了全长 PfClpP 的可溶性表达。对重组 PfClpP 的生化分析表明,它不能切割已知的 ClpP 底物琥珀酰-亮氨酸-酪氨酸-7-氨基-4-甲基香豆素盐酸盐(AMC)。相反,PfClpP 容易水解另一种底物甘氨酰-精氨酸-AMC。PfClpP 的独特底物偏好表明其底物结合位点具有结构独特性,这可能可用于抗疟药物的开发。使用哺乳动物替代宿主系统还研究了 PfClpP 是否与大多数真核 ClpPs 一样定位于线粒体和叶绿体。观察到的结果表明,绿色荧光蛋白标记的 PfClpP 蛋白定位于细胞核。PfClpP 在疟原虫核中可能具有独特而专门的作用。综上所述,本研究表明 PfClpP 具有独特的肽切割功能,定位于疟原虫的核内,可能在寄生虫的致病性中发挥调节作用。