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环磷酸腺苷(cAMP)依赖性信号通路作为抑制血液阶段的潜在靶点。

cAMP-Dependent Signaling Pathways as Potential Targets for Inhibition of Blood Stages.

作者信息

Lasonder Edwin, More Kunal, Singh Shailja, Haidar Malak, Bertinetti Daniela, Kennedy Eileen J, Herberg Friedrich W, Holder Anthony A, Langsley Gordon, Chitnis Chetan E

机构信息

Department of Applied Sciences, Faculty of Health and Life Sciences, Northumbria University, Newcastle upon Tyne, United Kingdom.

Unité de Biologie de Plasmodium et Vaccins, Département de Parasites et Insectes Vecteurs, Institut Pasteur, Paris, France.

出版信息

Front Microbiol. 2021 May 24;12:684005. doi: 10.3389/fmicb.2021.684005. eCollection 2021.

Abstract

We review the role of signaling pathways in regulation of the key processes of merozoite egress and red blood cell invasion by and, in particular, the importance of the second messengers, cAMP and Ca, and cyclic nucleotide dependent kinases. cAMP-dependent protein kinase (PKA) is comprised of cAMP-binding regulatory, and catalytic subunits. The less well conserved cAMP-binding pockets should make cAMP analogs attractive drug leads, but this approach is compromised by the poor membrane permeability of cyclic nucleotides. We discuss how the conserved nature of ATP-binding pockets makes ATP analogs inherently prone to off-target effects and how ATP analogs and genetic manipulation can be useful research tools to examine this. We suggest that targeting PKA interaction partners as well as substrates, or developing inhibitors based on PKA interaction sites or phosphorylation sites in PKA substrates, may provide viable alternative approaches for the development of anti-malarial drugs. Proximity of PKA to a substrate is necessary for substrate phosphorylation, but the genome encodes few recognizable A-kinase anchor proteins (AKAPs), suggesting the importance of PKA-regulatory subunit myristylation and membrane association in determining substrate preference. We also discuss how Pf14-3-3 assembles a phosphorylation-dependent signaling complex that includes PKA and calcium dependent protein kinase 1 (CDPK1) and how this complex may be critical for merozoite invasion, and a target to block parasite growth. We compare altered phosphorylation levels in intracellular and egressed merozoites to identify potential PKA substrates. Finally, as host PKA may have a critical role in supporting intracellular parasite development, we discuss its role at other stages of the life cycle, as well as in other apicomplexan infections. Throughout our review we propose possible new directions for the therapeutic exploitation of cAMP-PKA-signaling in malaria and other diseases caused by apicomplexan parasites.

摘要

我们综述了信号通路在疟原虫裂殖子逸出和红细胞入侵等关键过程调控中的作用,特别是第二信使环磷酸腺苷(cAMP)和钙离子(Ca)以及环核苷酸依赖性激酶的重要性。cAMP依赖性蛋白激酶(PKA)由cAMP结合调节亚基和催化亚基组成。保守性较差的cAMP结合口袋应使cAMP类似物成为有吸引力的药物先导物,但这种方法因环核苷酸的膜通透性差而受到影响。我们讨论了ATP结合口袋的保守性质如何使ATP类似物天生易于产生脱靶效应,以及ATP类似物和基因操作如何成为用于研究此问题的有用工具。我们认为,靶向PKA相互作用伙伴及其底物,或基于PKA相互作用位点或PKA底物中的磷酸化位点开发抑制剂,可能为抗疟药物的开发提供可行的替代方法。PKA与底物接近是底物磷酸化所必需的,但疟原虫基因组编码的可识别的A激酶锚定蛋白(AKAPs)很少,这表明PKA调节亚基的肉豆蔻酰化和膜结合在决定底物偏好方面的重要性。我们还讨论了疟原虫14-3-3蛋白如何组装一个包括PKA和钙依赖性蛋白激酶1(CDPK1)的磷酸化依赖性信号复合物,以及该复合物如何可能对裂殖子入侵至关重要,并且是阻断寄生虫生长的一个靶点。我们比较了细胞内和逸出的裂殖子中磷酸化水平的变化,以鉴定潜在的PKA底物。最后,由于宿主PKA可能在支持细胞内寄生虫发育中起关键作用,我们讨论了其在生命周期其他阶段以及其他顶复门感染中的作用。在我们的综述中,我们提出了在疟疾和由顶复门寄生虫引起的其他疾病中对cAMP-PKA信号进行治疗性利用的可能新方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9314/8183823/4e2411e713f2/fmicb-12-684005-g001.jpg

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