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利用基因编码传感器鉴定弓形虫钙离子信号传导抑制剂。

Using a Genetically Encoded Sensor to Identify Inhibitors of Toxoplasma gondii Ca2+ Signaling.

作者信息

Sidik Saima M, Hortua Triana Miryam A, Paul Aditya S, El Bakkouri Majida, Hackett Caroline G, Tran Fanny, Westwood Nicholas J, Hui Raymond, Zuercher William J, Duraisingh Manoj T, Moreno Silvia N J, Lourido Sebastian

机构信息

From the Whitehead Institute for Biomedical Research, Cambridge, Massachusetts 02142.

the Center for Tropical and Emerging Global Diseases, Department of Cellular Biology, University of Georgia, Athens, Georgia 30602.

出版信息

J Biol Chem. 2016 Apr 29;291(18):9566-80. doi: 10.1074/jbc.M115.703546. Epub 2016 Mar 1.

Abstract

The life cycles of apicomplexan parasites progress in accordance with fluxes in cytosolic Ca(2+) Such fluxes are necessary for events like motility and egress from host cells. We used genetically encoded Ca(2+) indicators (GCaMPs) to develop a cell-based phenotypic screen for compounds that modulate Ca(2+) signaling in the model apicomplexan Toxoplasma gondii In doing so, we took advantage of the phosphodiesterase inhibitor zaprinast, which we show acts in part through cGMP-dependent protein kinase (protein kinase G; PKG) to raise levels of cytosolic Ca(2+) We define the pool of Ca(2+) regulated by PKG to be a neutral store distinct from the endoplasmic reticulum. Screening a library of 823 ATP mimetics, we identify both inhibitors and enhancers of Ca(2+) signaling. Two such compounds constitute novel PKG inhibitors and prevent zaprinast from increasing cytosolic Ca(2+) The enhancers identified are capable of releasing intracellular Ca(2+) stores independently of zaprinast or PKG. One of these enhancers blocks parasite egress and invasion and shows strong antiparasitic activity against T. gondii The same compound inhibits invasion of the most lethal malaria parasite, Plasmodium falciparum Inhibition of Ca(2+)-related phenotypes in these two apicomplexan parasites suggests that depletion of intracellular Ca(2+) stores by the enhancer may be an effective antiparasitic strategy. These results establish a powerful new strategy for identifying compounds that modulate the essential parasite signaling pathways regulated by Ca(2+), underscoring the importance of these pathways and the therapeutic potential of their inhibition.

摘要

顶复门寄生虫的生命周期随着胞质Ca(2+)的变化而推进。这种变化对于诸如运动和从宿主细胞逸出等事件是必需的。我们使用基因编码的Ca(2+)指示剂(GCaMPs),针对可调节模式顶复门寄生虫刚地弓形虫中Ca(2+)信号传导的化合物,开发了一种基于细胞的表型筛选方法。在此过程中,我们利用了磷酸二酯酶抑制剂扎普司特,我们发现它部分通过环鸟苷酸依赖性蛋白激酶(蛋白激酶G;PKG)起作用,以提高胞质Ca(2+)的水平。我们将由PKG调节的Ca(2+)池定义为一个与内质网不同的中性储存库。通过筛选一个包含823种ATP模拟物的文库,我们鉴定出了Ca(2+)信号传导的抑制剂和增强剂。其中两种化合物构成了新型PKG抑制剂,可阻止扎普司特增加胞质Ca(2+)。所鉴定的增强剂能够独立于扎普司特或PKG释放细胞内Ca(2+)储存库。其中一种增强剂可阻断寄生虫的逸出和入侵,并对刚地弓形虫表现出强大的抗寄生虫活性。同一种化合物可抑制最致命的疟原虫恶性疟原虫的入侵。对这两种顶复门寄生虫中与Ca(2+)相关表型的抑制表明,增强剂耗尽细胞内Ca(2+)储存库可能是一种有效的抗寄生虫策略。这些结果建立了一种强大的新策略来鉴定调节由Ca(2+)调控的重要寄生虫信号通路的化合物,强调了这些通路的重要性及其抑制的治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36ff/4850295/bba530d66d15/zbc0191642380001.jpg

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