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构巢曲霉隔膜对于细胞壁压力的生存是必不可少的。

Aspergillus nidulans Septa Are Indispensable for Surviving Cell Wall Stress.

机构信息

Department of Chemical, Biochemical and Environmental Engineering, University of Maryland Baltimore County, Baltimore, Maryland, USA.

School of Biological Sciences, University of Nebraska, Lincoln, Nebraska, USA.

出版信息

Microbiol Spectr. 2022 Feb 23;10(1):e0206321. doi: 10.1128/spectrum.02063-21. Epub 2022 Feb 2.

Abstract

Septation in filamentous fungi is a normal part of development, which involves the formation of cross-hyphal bulkheads, typically containing pores, allowing cytoplasmic streaming between compartments. Based on previous findings regarding septa and cell wall stress, we hypothesized that septa are critical for survival during cell wall stress. To test this hypothesis, we used known Aspergillus nidulans septation-deficient mutants (Δ, Δ, Δ, and Δ) and six antifungal compounds. Three of these compounds (micafungin, Congo red, and calcofluor white) are known cell wall stressors which activate the cell wall integrity signaling pathway (CWIS), while the three others (cycloheximide, miconazole, and 2,3-butanedione monoxime) perturb specific cellular processes not explicitly related to the cell wall. Our results show that deficiencies in septation lead to fungi which are more susceptible to cell wall-perturbing compounds but are no more susceptible to other antifungal compounds than a control. This implies that septa play a critical role in surviving cell wall stress. The ability to compartmentalize potentially lethal damage via septation appears to provide filamentous fungi with a facile means to tolerate diverse forms of stress. However, it remains unknown whether this mechanism is deployed in response to all forms of stress or is limited to specific perturbations. Our results support the latter possibility by showing that presence of septa promotes survival in response to cell wall damage but plays no apparent role in coping with other unrelated forms of stress. Given that cell wall damage is a primary effect caused by exposure to the echinocandin class of antifungal agents, our results emphasize the important role that septa might play in enabling resistance to these drugs. Accordingly, the inhibition of septum formation could conceivably represent an attractive approach to potentiating the effects of echinocandins and mitigating resistance in human fungal pathogens.

摘要

丝状真菌的分隔是发育过程中的正常现象,它涉及到横隔菌丝的形成,通常含有孔,允许细胞质在隔室之间流动。基于先前关于隔膜和细胞壁应激的发现,我们假设隔膜对于细胞壁应激时的生存至关重要。为了验证这一假设,我们使用了已知的 Aspergillus nidulans 隔膜缺陷型突变体(Δ,Δ,Δ,和Δ)和六种抗真菌化合物。其中三种化合物(米卡芬净、刚果红和钙荧光白)已知是细胞壁应激物,它们激活细胞壁完整性信号通路(CWIS),而另外三种(环己酰亚胺、咪康唑和 2,3-丁二酮单肟)则扰乱与细胞壁不明确相关的特定细胞过程。我们的结果表明,隔膜缺陷导致真菌对细胞壁破坏化合物更敏感,但对其他抗真菌化合物的敏感性并不比对对照真菌更敏感。这意味着隔膜在应对细胞壁应激时起着关键作用。通过隔膜进行潜在致命损伤的分隔能力似乎为丝状真菌提供了一种简便的方法来耐受各种形式的应激。然而,目前尚不清楚这种机制是否被部署来应对所有形式的应激,或者是否仅限于特定的干扰。我们的结果通过显示隔膜的存在促进了对细胞壁损伤的存活反应,但在应对其他不相关的应激形式时没有明显作用,支持了后一种可能性。鉴于细胞壁损伤是暴露于棘白菌素类抗真菌药物后产生的主要影响,我们的结果强调了隔膜在赋予对这些药物的抗性方面可能发挥的重要作用。因此,抑制隔膜的形成可能是一种有吸引力的方法,可以增强棘白菌素类药物的效果,并减轻人类真菌病原体的耐药性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b9c/8809332/b10f2c8ed053/spectrum.02063-21-f001.jpg

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