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联合组学方法揭示酿酒酵母中轻稀土元素和重稀土元素之间的不同响应。

Combined omics approaches reveal distinct responses between light and heavy rare earth elements in Saccharomyces cerevisiae.

机构信息

Université de Lorraine, CNRS, LIEC, F-54000 Nancy, France; Université de Lorraine, CNRS, LIEC, F-57000 Metz, France.

Université de Lorraine, CNRS, LIEC, F-57000 Metz, France.

出版信息

J Hazard Mater. 2022 Mar 5;425:127830. doi: 10.1016/j.jhazmat.2021.127830. Epub 2021 Nov 23.

DOI:10.1016/j.jhazmat.2021.127830
PMID:34896703
Abstract

The rapid development of green energy sources and new medical technologies contributes to the increased exploitation of rare earth elements (REEs). They can be subdivided into light (LREEs) and heavy (HREEs) REEs. Mining, industrial processing, and end-use practices of REEs has led to elevated environmental concentrations and raises concerns about their toxicity to organisms and their impact on ecosystems. REE toxicity has been reported, but its precise underlying molecular effects have not been well described. Here, transcriptomic and proteomic approaches were combined to decipher the molecular responses of the model organism Saccharomyces cerevisiae to La (LREE) and Yb (HREE). Differences were observed between the early and late responses to La and Yb. Several crucial pathways were modulated in response to both REEs, such as oxidative-reduction processes, DNA replication, and carbohydrate metabolism. REE-specific responses involving the cell wall and pheromone signalling pathways were identified, and these responses have not been reported for other metals. REE exposure also modified the expression and abundance of several ion transport systems, with strong discrepancies between La and Yb. These findings are valuable for prioritizing key genes and proteins involved in La and Yb detoxification mechanisms that deserve further characterization to better understand REE environmental and human health toxicity.

摘要

绿色能源和新医疗技术的快速发展促进了稀土元素(REEs)的大量开采。它们可以分为轻(LREEs)和重(HREEs)稀土元素。REEs 的开采、工业加工和最终用途实践导致环境浓度升高,引发了人们对其对生物的毒性及其对生态系统影响的担忧。已经报道了 REE 毒性,但尚未很好地描述其确切的潜在分子效应。在这里,我们结合转录组学和蛋白质组学方法来破译模式生物酿酒酵母对 La(LREE)和 Yb(HREE)的分子反应。我们观察到了酵母对 La 和 Yb 的早期和晚期反应之间的差异。几种关键途径被两种 REE 调节,如氧化还原过程、DNA 复制和碳水化合物代谢。确定了涉及细胞壁和信息素信号通路的 REE 特异性反应,而这些反应尚未报道过其他金属。REE 暴露还改变了几种离子转运系统的表达和丰度,La 和 Yb 之间存在强烈差异。这些发现对于确定参与 La 和 Yb 解毒机制的关键基因和蛋白具有重要价值,值得进一步表征,以更好地了解 REE 的环境和人类健康毒性。

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