MITR, Institute of Applied Radiation Chemistry, Faculty of Chemistry, Lodz University of Technology, Zeromskiego Street 116, 90-924 Lodz, Poland.
Swiss Coordination Committee Biotechnology (SKB), 8021 Zurich, Switzerland.
Int J Mol Sci. 2023 Feb 5;24(4):3150. doi: 10.3390/ijms24043150.
Phosphorus-containing metabolites cover a large molecular diversity and represent an important domain of small molecules which are highly relevant for life and represent essential interfaces between biology and chemistry, between the biological and abiotic world. The large but not unlimited amount of phosphate minerals on our planet is a key resource for living organisms on our planet, while the accumulation of phosphorus-containing waste is associated with negative effects on ecosystems. Therefore, resource-efficient and circular processes receive increasing attention from different perspectives, from local and regional levels to national and global levels. The molecular and sustainability aspects of a global phosphorus cycle have become of much interest for addressing the phosphorus biochemical flow as a high-risk planetary boundary. Knowledge of balancing the natural phosphorus cycle and the further elucidation of metabolic pathways involving phosphorus is crucial. This requires not only the development of effective new methods for practical discovery, identification, and high-information content analysis, but also for practical synthesis of phosphorus-containing metabolites, for example as standards, as substrates or products of enzymatic reactions, or for discovering novel biological functions. The purpose of this article is to review the advances which have been achieved in the synthesis and analysis of phosphorus-containing metabolites which are biologically active.
含磷代谢物涵盖了很大的分子多样性,是小分子的一个重要领域,与生命密切相关,是生物学和化学之间、生物与非生物世界之间的重要界面。地球上大量但并非无限的磷酸盐矿物是地球上生物的关键资源,而含磷废物的积累则与对生态系统的负面影响有关。因此,从地方和区域层面到国家和全球层面,从不同角度来看,资源节约和循环利用的过程受到越来越多的关注。从全球磷循环的分子和可持续性角度出发,人们对解决作为高风险行星边界的磷生化流动问题产生了浓厚的兴趣。了解如何平衡自然磷循环,以及进一步阐明涉及磷的代谢途径至关重要。这不仅需要开发有效的新方法来进行实际的发现、鉴定和高信息量分析,还需要实际合成含磷代谢物,例如作为标准品、作为酶反应的底物或产物,或者发现新的生物功能。本文的目的是综述在生物活性含磷代谢物的合成和分析方面取得的进展。