Atranone-an underestimated secondary metabolite?

IF 3.1 4区 医学 Q2 MYCOLOGY
Mareike Dabisch-Ruthe, Jens Pfannebecker, Reinhard K Straubinger, Frank Ebel, Sebastian Ulrich
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引用次数: 0

Abstract

Atranones are secondary metabolites produced by Stachybotrys chartarum, a mold frequently found in water-damaged indoor environments. In contrast to the well-characterized and highly toxic macrocyclic trichothecenes, atranones have received relatively limited scientific attention. Approximately 60% of S. chartarum isolates from indoor environments produce atranones, while 40% form macrocyclic trichothecenes. No strain has been shown to produce both, indicating that the biosynthetic pathways for these two mycotoxin classes are mutually exclusive. Atranones are dolabellane-like diterpenoids synthesized from geranylgeranyl pyrophosphate through multiple enzymatic steps encoded by a specific core gene cluster. While the genetic structure of this cluster has been elucidated, its regulatory mechanisms remain poorly understood. Notably, although atranone-producing S. chartarum strains have been isolated from indoor settings, no study has yet confirmed the actual production of atranones in indoor environments, leaving the question of real-world exposure unresolved. Experimental studies in cell cultures and animal models indicate that atranones possess pro-inflammatory and cytotoxic properties, including the induction of apoptosis and cell cycle arrest. Atranone Q has demonstrated antitumor activity against osteosarcoma cells in vitro, and more recently identified derivatives such as stachatranone and stachybatranone have shown preliminary cardioprotective effects under ischemic conditions. However, these pharmacological effects remain exploratory and require further validation in in vivo models. Major knowledge gaps concern the environmental triggers for atranone biosynthesis, their regulation, actual presence in built environments, and potential health risks. These areas represent key priorities for future research.

阿特龙——一种被低估的次级代谢物?
atranone是由Stachybotrys chartarum产生的次生代谢物,Stachybotrys chartarum是一种常见于受水破坏的室内环境的霉菌。与具有良好表征和高毒性的大环毛霉烯相比,炔酮得到的科学关注相对有限。从室内环境中分离出来的葡萄球菌大约60%产生氨醌,而40%形成大环毛霉烯。没有菌株被证明能同时产生这两种真菌毒素,这表明这两种真菌毒素的生物合成途径是相互排斥的。炔酮是由焦磷酸香叶基香叶基通过多个酶促步骤合成的类美元苯二萜类化合物,由特定的核心基因簇编码。虽然这个簇的遗传结构已经被阐明,但其调控机制仍然知之甚少。值得注意的是,虽然产生阿特拉酮的沙氏葡萄球菌菌株已经从室内环境中分离出来,但尚未有研究证实在室内环境中实际产生阿特拉酮,这使得现实世界暴露的问题悬而未决。细胞培养和动物模型的实验研究表明,阿屈酮具有促炎和细胞毒性,包括诱导细胞凋亡和细胞周期阻滞。阿屈酮Q已经在体外证明了对骨肉瘤细胞的抗肿瘤活性,最近发现的衍生品,如星甲屈酮和星甲屈酮,在缺血条件下显示出初步的心脏保护作用。然而,这些药理作用仍然是探索性的,需要在体内模型中进一步验证。主要的知识缺口涉及阿特拉酮生物合成的环境触发因素、它们的调节、在建筑环境中的实际存在以及潜在的健康风险。这些领域是未来研究的重点。
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来源期刊
Mycotoxin Research
Mycotoxin Research MYCOLOGYTOXICOLOGY-TOXICOLOGY
CiteScore
6.40
自引率
6.70%
发文量
29
期刊介绍: Mycotoxin Research, the official publication of the Society for Mycotoxin Research, is a peer-reviewed, scientific journal dealing with all aspects related to toxic fungal metabolites. The journal publishes original research articles and reviews in all areas dealing with mycotoxins. As an interdisciplinary platform, Mycotoxin Research welcomes submission of scientific contributions in the following research fields: - Ecology and genetics of mycotoxin formation - Mode of action of mycotoxins, metabolism and toxicology - Agricultural production and mycotoxins - Human and animal health aspects, including exposure studies and risk assessment - Food and feed safety, including occurrence, prevention, regulatory aspects, and control of mycotoxins - Environmental safety and technology-related aspects of mycotoxins - Chemistry, synthesis and analysis.
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