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球虫环鸟苷酸依赖性蛋白激酶在运动性和侵袭中的作用。

A role for coccidian cGMP-dependent protein kinase in motility and invasion.

作者信息

Wiersma Helen I, Galuska Stefan E, Tomley Fiona M, Sibley L David, Liberator Paul A, Donald Robert G K

机构信息

Department of Human and Animal Infectious Disease Research, Merck Research Laboratories, Merck and Co Inc, PO Box 2000, Rahway, NJ 07065, USA.

出版信息

Int J Parasitol. 2004 Mar 9;34(3):369-80. doi: 10.1016/j.ijpara.2003.11.019.

Abstract

The coccidian parasite cGMP-dependent protein kinase is the primary target of a novel coccidiostat, the trisubstituted pyrrole 4-[2-(4-fluorophenyl)-5-(1-methylpiperidine-4-yl)-1H-pyrrol-3-yl] pyridine (compound 1), which effectively controls the proliferation of Eimeria tenella and Toxoplasma gondii parasites in animal models. The efficacy of compound 1 in parasite-specific metabolic assays of infected host cell monolayers is critically dependent on the timing of compound addition. Simultaneous addition of compound with extracellular E. tenella sporozoites or T. gondii tachyzoites inhibited [3H]-uracil uptake in a dose-dependent manner, while minimal efficacy was observed if compound addition was delayed, suggesting a block in host cell invasion. Immunofluorescence assays confirmed that compound 1 blocks the attachment of Eimeria sporozoites or Toxoplasma tachyzoites to host cells and inhibits parasite invasion and gliding motility. Compound 1 also inhibits the secretion of micronemal adhesins (E. tenella MIC1, MIC2 and T. gondii MIC2), an activity closely linked to invasion and motility in apicomplexan parasites. The inhibition of T. gondii MIC2 adhesin secretion by compound 1 was not reversed by treatment with calcium ionophores or by ethanol (a microneme secretagogue), suggesting a block downstream of calcium-dependent events commonly associated with the discharge of the microneme organelle in tachyzoites. Transgenic Toxoplasma strains expressing cGMP-dependent protein kinase mutant alleles that are refractory to compound 1 (including cGMP-dependent protein kinase knock-out lines complemented by such mutants) were used as tools to validate the potential role of cGMP-dependent protein kinase in invasion and motility. In these strains, parasite adhesin secretion, gliding motility, host cell attachment and invasion displayed a reduced sensitivity to compound 1. These data clearly demonstrate that cGMP-dependent protein kinase performs an important role in the host-parasite interaction.

摘要

球虫寄生虫环鸟苷酸依赖性蛋白激酶是新型抗球虫药三取代吡咯4-[2-(4-氟苯基)-5-(1-甲基哌啶-4-基)-1H-吡咯-3-基]吡啶(化合物1)的主要靶点,该药物在动物模型中能有效控制柔嫩艾美耳球虫和刚地弓形虫寄生虫的增殖。化合物1在感染宿主细胞单层的寄生虫特异性代谢试验中的疗效严重依赖于化合物添加的时间。化合物与细胞外柔嫩艾美耳球虫子孢子或刚地弓形虫速殖子同时添加以剂量依赖性方式抑制[3H]-尿嘧啶摄取,而如果延迟添加化合物则观察到最小疗效,提示宿主细胞入侵受阻。免疫荧光试验证实化合物1阻断艾美耳球虫子孢子或刚地弓形虫速殖子与宿主细胞的附着,并抑制寄生虫入侵和滑行运动。化合物1还抑制微线体粘附素(柔嫩艾美耳球虫MIC1、MIC2和刚地弓形虫MIC2)的分泌,这一活性与顶复门寄生虫的入侵和运动密切相关。化合物1对刚地弓形虫MIC2粘附素分泌的抑制作用不能通过钙离子载体处理或乙醇(一种微线体促分泌剂)逆转,提示在通常与速殖子微线体细胞器释放相关的钙依赖性事件下游存在阻断。表达对化合物1不敏感的环鸟苷酸依赖性蛋白激酶突变等位基因的转基因弓形虫株(包括由此类突变体互补的环鸟苷酸依赖性蛋白激酶敲除株)被用作工具来验证环鸟苷酸依赖性蛋白激酶在入侵和运动中的潜在作用。在这些菌株中,寄生虫粘附素分泌、滑行运动、宿主细胞附着和入侵对化合物1的敏感性降低。这些数据清楚地表明环鸟苷酸依赖性蛋白激酶在宿主-寄生虫相互作用中发挥重要作用。

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