Environmental fungi target thiol homeostasis to compete with Mycobacterium tuberculosis.

IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences
PLoS Biology Pub Date : 2024-12-03 eCollection Date: 2024-12-01 DOI:10.1371/journal.pbio.3002852
Neha Malhotra, Sangmi Oh, Peter Finin, Jessica Medrano, Jenna Andrews, Michael Goodwin, Tovah E Markowitz, Justin Lack, Helena I M Boshoff, Clifton Earl Barry
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Abstract

Mycobacterial species in nature are found in abundance in sphagnum peat bogs where they compete for nutrients with a variety of microorganisms including fungi. We screened a collection of fungi isolated from sphagnum bogs by co-culture with Mycobacterium tuberculosis (Mtb) to look for inducible expression of antitubercular agents and identified 5 fungi that produced cidal antitubercular agents upon exposure to live Mtb. Whole genome sequencing of these fungi followed by fungal RNAseq after Mtb exposure allowed us to identify biosynthetic gene clusters induced by co-culture. Three of these fungi induced expression of patulin, one induced citrinin expression and one induced the production of nidulalin A. The biosynthetic gene clusters for patulin and citrinin have been previously described but the genes involved in nidulalin A production have not been described before. All 3 of these potent electrophiles react with thiols and treatment of Mtb cells with these agents followed by Mtb RNAseq showed that these natural products all induce profound thiol stress suggesting a rapid depletion of mycothiol. The induction of thiol-reactive mycotoxins through 3 different systems in response to exposure to Mtb suggests that fungi have identified this as a highly vulnerable target in a similar microenvironment to that of the caseous human lesion.

环境真菌目标硫醇稳态与结核分枝杆菌竞争。
自然界中的分枝杆菌种类在泥炭沼泽中被大量发现,在那里它们与包括真菌在内的各种微生物争夺营养。我们通过与结核分枝杆菌(Mycobacterium tuberculosis, Mtb)共培养从泥沼中分离的真菌进行筛选,寻找抗结核药物的诱导表达,并鉴定出5种在暴露于活结核分枝杆菌后产生杀伤性抗结核药物的真菌。对这些真菌进行全基因组测序,然后对Mtb暴露后的真菌RNAseq进行测序,使我们能够鉴定由共培养诱导的生物合成基因簇。这些真菌中有三种诱导棒曲霉素的表达,一种诱导柑橘霉素的表达,另一种诱导棒曲霉素A的产生。棒曲霉素和柑橘霉素的生物合成基因簇之前已经被描述过,但参与棒曲霉素A产生的基因在以前还没有被描述过。所有这3种强效亲电试剂都与硫醇发生反应,用这些试剂和Mtb RNAseq处理结核分枝杆菌细胞表明,这些天然产物都诱导了深刻的硫醇应激,表明结核分枝杆菌硫醇的迅速消耗。暴露于结核分枝杆菌后,通过3种不同的系统诱导巯基反应性真菌毒素,这表明真菌已将结核分枝杆菌识别为与人类灰质病变相似的微环境中高度脆弱的靶标。
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来源期刊
PLoS Biology
PLoS Biology BIOCHEMISTRY & MOLECULAR BIOLOGY-BIOLOGY
CiteScore
15.40
自引率
2.00%
发文量
359
审稿时长
3-8 weeks
期刊介绍: PLOS Biology is the flagship journal of the Public Library of Science (PLOS) and focuses on publishing groundbreaking and relevant research in all areas of biological science. The journal features works at various scales, ranging from molecules to ecosystems, and also encourages interdisciplinary studies. PLOS Biology publishes articles that demonstrate exceptional significance, originality, and relevance, with a high standard of scientific rigor in methodology, reporting, and conclusions. The journal aims to advance science and serve the research community by transforming research communication to align with the research process. It offers evolving article types and policies that empower authors to share the complete story behind their scientific findings with a diverse global audience of researchers, educators, policymakers, patient advocacy groups, and the general public. PLOS Biology, along with other PLOS journals, is widely indexed by major services such as Crossref, Dimensions, DOAJ, Google Scholar, PubMed, PubMed Central, Scopus, and Web of Science. Additionally, PLOS Biology is indexed by various other services including AGRICOLA, Biological Abstracts, BIOSYS Previews, CABI CAB Abstracts, CABI Global Health, CAPES, CAS, CNKI, Embase, Journal Guide, MEDLINE, and Zoological Record, ensuring that the research content is easily accessible and discoverable by a wide range of audiences.
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