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卡泊芬净影响细胞外囊泡的产生及其中的货物成分 。(原文句子不完整,推测补充完整后的翻译)

Caspofungin Affects Extracellular Vesicle Production and Cargo in .

作者信息

Amatuzzi Rafaela F, Zamith-Miranda Daniel, Munhoz da Rocha Isadora F, Lucena Aline C R, de Toledo Martins Sharon, Streit Rodrigo, Staats Charley C, Trentin Gabriel, Almeida Fausto, Rodrigues Marcio L, Nosanchuk Joshua D, Alves Lysangela R

机构信息

Gene Expression Regulation Laboratory, Carlos Chagas Institute, FIOCRUZ PR, Curitiba 81350-010, Brazil.

Department of Microbiology and Immunology, Albert Einstein College of Medicine, Bronx, NY 10461, USA.

出版信息

J Fungi (Basel). 2022 Sep 21;8(10):990. doi: 10.3390/jof8100990.

Abstract

Antifungal resistance has become more frequent, either due to the emergence of naturally resistant species or the development of mechanisms that lead to resistance in previously susceptible species. Among these fungal species of global threat, stands out for commonly being highly resistant to antifungal drugs, and some isolates are pan-resistant. The rate of mortality linked to infections varies from 28% to 78%. In this study, we characterized extracellular vesicles (EVs) in the presence of caspofungin, an echinocandin, which is the recommended first line antifungal for the treatment of infections due to this emerging pathogen. Furthermore, we also analyzed the protein and RNA content of EVs generated by cultivated with or without treatment with caspofungin. We observed that caspofungin led to the increased production of EVs, and treatment also altered the type and quantity of RNA molecules and proteins enclosed in the EVs. There were distinct classes of RNAs in the EVs with ncRNAs being the most identified molecules, and tRNA-fragments (tRFs) were abundant in each of the strains studied. We also identified anti-sense RNAs, varying from 21 to 55 nt in length. The differentially abundant mRNAs detected in EVs isolated from yeast subjected to caspofungin treatment were related to translation, nucleosome core and cell wall. The differentially regulated proteins identified in the EVs produced during caspofungin treatment were consistent with the results observed with the RNAs, with the enriched terms being related to translation and cell wall. Our study adds new information on how an echinocandin can affect the EV pathway, which is associated with the yeast cell being able to evade treatment and persist in the host. The ability of to efficiently alter the composition of EVs may represent a mechanism for the fungus to mitigate the effects of antifungal agents.

摘要

由于天然耐药菌种的出现或导致先前敏感菌种产生耐药性的机制的发展,抗真菌耐药性变得更加频繁。在这些具有全球威胁的真菌物种中, 尤为突出,因为它通常对抗真菌药物具有高度耐药性,并且一些分离株具有泛耐药性。与 感染相关的死亡率在28%至78%之间。在本研究中,我们对在棘白菌素卡泊芬净存在的情况下 的细胞外囊泡(EVs)进行了表征,卡泊芬净是治疗由这种新出现的病原体引起的感染的推荐一线抗真菌药物。此外,我们还分析了在有或没有卡泊芬净处理的情况下培养的 产生的EVs的蛋白质和RNA含量。我们观察到卡泊芬净导致EVs产量增加,并且处理还改变了EVs中所含RNA分子和蛋白质的类型和数量。EVs中有不同类别的RNA,其中非编码RNA(ncRNAs)是最常见的分子,并且在所研究的每个菌株中tRNA片段(tRFs)都很丰富。我们还鉴定出了反义RNA,长度在21至55个核苷酸之间。在接受卡泊芬净处理的酵母分离出的EVs中检测到的差异丰富的mRNA与翻译、核小体核心和细胞壁有关。在卡泊芬净处理期间产生的EVs中鉴定出的差异调节蛋白质与RNA观察结果一致,富集的术语与翻译和细胞壁有关。我们的研究增加了关于棘白菌素如何影响与酵母细胞逃避治疗并在宿主体内持续存在相关的EV途径的新信息。 有效改变EVs组成的能力可能代表了真菌减轻抗真菌剂作用的一种机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0696/9605528/9de9561aad15/jof-08-00990-g001.jpg

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