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烟曲霉 Hsp90 与细胞壁完整性途径的主要成分相互作用,并在热休克和细胞壁应激适应中协同作用。

Aspergillus fumigatus Hsp90 interacts with the main components of the cell wall integrity pathway and cooperates in heat shock and cell wall stress adaptation.

机构信息

Departamento de Genética e Evolução, Centro de Ciências Biológicas e da Saúde, Universidade Federal de São Carlos, São Carlos, Brazil.

Instituto de Química de São Carlos, Universidade de São Paulo, São Carlos, Brazil.

出版信息

Cell Microbiol. 2021 Feb;23(2):e13273. doi: 10.1111/cmi.13273. Epub 2020 Oct 14.

Abstract

The initiation of Aspergillus fumigatus infection occurs via dormant conidia deposition into the airways. Therefore, conidial germination and subsequent hyphal extension and growth occur in a sustained heat shock (HS) environment promoted by the host. The cell wall integrity pathway (CWIP) and the essential eukaryotic chaperone Hsp90 are critical for fungi to survive HS. Although A. fumigatus is a thermophilic fungus, the mechanisms underpinning the HS response are not thoroughly described and important to define its role in pathogenesis, virulence and antifungal drug responses. Here, we investigate the contribution of the CWIP in A. fumigatus thermotolerance. We observed that the CWIP components PkcA, MpkA and RlmA are Hsp90 clients and that a PkcA mutation abolishes this interaction. PkcA also abolishes MpkA activation in the short-term response to HS. Biochemical and biophysical analyses indicated that Hsp90 is a dimeric functional ATPase, which has a higher affinity for ADP than ATP and prevents MpkA aggregation in vitro. Our data suggest that the CWIP is constitutively required for A. fumigatus to cope with the temperature increase found in the mammalian lung environment, emphasising the importance of this pathway in supporting thermotolerance and cell wall integrity.

摘要

烟曲霉感染的起始是通过休眠的分生孢子沉积到气道中发生的。因此,分生孢子的萌发以及随后的菌丝延伸和生长发生在由宿主促进的持续热激(HS)环境中。细胞壁完整性途径(CWIP)和必需的真核伴侣蛋白 Hsp90 对于真菌在 HS 中存活至关重要。尽管烟曲霉是一种嗜热真菌,但 HS 反应的机制尚未得到充分描述,这对于确定其在发病机制、毒力和抗真菌药物反应中的作用非常重要。在这里,我们研究了 CWIP 在烟曲霉耐热性中的作用。我们观察到 CWIP 成分 PkcA、MpkA 和 RlmA 是 Hsp90 的客户,而 PkcA 突变会破坏这种相互作用。PkcA 还会破坏 HS 短期反应中 MpkA 的激活。生化和生物物理分析表明,Hsp90 是一种二聚体功能性 ATP 酶,它对 ADP 的亲和力高于 ATP,并防止 MpkA 在体外聚集。我们的数据表明,CWIP 是烟曲霉应对哺乳动物肺部环境中发现的温度升高所必需的,这强调了该途径在支持耐热性和细胞壁完整性方面的重要性。

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