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烟曲霉中碱性和钙介导信号的相互独立性驳斥了保守的可药物作用信号连接点的存在。

Mutual independence of alkaline- and calcium-mediated signalling in Aspergillus fumigatus refutes the existence of a conserved druggable signalling nexus.

作者信息

Loss Omar, Bertuzzi Margherita, Yan Yu, Fedorova Natalie, McCann Bethany L, Armstrong-James Darius, Espeso Eduardo A, Read Nick D, Nierman William C, Bignell Elaine M

机构信息

Microbiology Section, Centre for Molecular Microbiology and Infection, Imperial College London, London SW7 2AZ, UK.

Manchester Fungal Infection Group, Division of Infection, Immunity and Respiratory Medicine, University of Manchester, Manchester M13 9NT, UK.

出版信息

Mol Microbiol. 2017 Dec;106(6):861-875. doi: 10.1111/mmi.13840. Epub 2017 Nov 14.

Abstract

Functional coupling of calcium- and alkaline responsive signalling occurs in multiple fungi to afford efficient cation homeostasis. Host microenvironments exert alkaline stress and potentially toxic concentrations of Ca , such that highly conserved regulators of both calcium- (Crz) and pH- (PacC/Rim101) responsive signalling are crucial for fungal pathogenicity. Drugs targeting calcineurin are potent antifungal agents but also perturb human immunity thereby negating their use as anti-infectives, abrogation of alkaline signalling has, therefore, been postulated as an adjunctive antifungal strategy. We examined the interdependency of pH- and calcium-mediated signalling in Aspergillus fumigatus and found that calcium chelation severely impedes hyphal growth indicating a critical requirement for this ion independently of ambient pH. Transcriptomic responses to alkaline pH or calcium excess exhibited minimal similarity. Mutants lacking calcineurin, or its client CrzA, displayed normal alkaline tolerance and nuclear translocation of CrzA was unaffected by ambient pH. Expression of a highly conserved, alkaline-regulated, sodium ATPase was tolerant of genetic or chemical perturbations of calcium-mediated signalling, but abolished in null mutants of the pH-responsive transcription factor PacC, and PacC proteolytic processing occurred normally during calcium excess. Taken together our data demonstrate that in A. fumigatus the regulatory hierarchy governing alkaline tolerance circumvents calcineurin signalling.

摘要

钙响应信号和碱性响应信号的功能偶联在多种真菌中发生,以实现有效的阳离子稳态。宿主微环境会施加碱性应激以及潜在的有毒钙浓度,因此,钙响应(Crz)和pH响应(PacC/Rim101)信号的高度保守调节因子对真菌致病性至关重要。靶向钙调神经磷酸酶的药物是有效的抗真菌剂,但也会干扰人体免疫,从而使其无法用作抗感染药物,因此,废除碱性信号传导被认为是一种辅助抗真菌策略。我们研究了烟曲霉中pH介导信号和钙介导信号的相互依赖性,发现钙螯合严重阻碍菌丝生长,这表明该离子独立于环境pH具有关键需求。对碱性pH或钙过量的转录组反应显示出最小的相似性。缺乏钙调神经磷酸酶或其底物CrzA的突变体表现出正常的碱性耐受性,并且CrzA的核转位不受环境pH的影响。一种高度保守的、碱性调节的钠ATP酶的表达对钙介导信号的遗传或化学干扰具有耐受性,但在pH响应转录因子PacC的缺失突变体中被消除,并且在钙过量期间PacC的蛋白水解加工正常发生。综上所述,我们的数据表明,在烟曲霉中,控制碱性耐受性的调节层次绕过了钙调神经磷酸酶信号传导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/684a/5725717/af44229ed0b2/MMI-106-861-g001.jpg

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