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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Emerging chemical tools and techniques for tracking biological manganese
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Emerging chemical tools and techniques for tracking biological manganese

机译:用于跟踪生物锰的新兴化学工具和技术

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摘要

Recent developments in Mn biology have added new physiological and pathophysiological roles of this essential metal ion to the already existing repertoire of indispensable biological roles of Mn ions. Notably, the discovery of Mn2+ specific transporters, maladies related to mutations in these transporters, and evidence of the role of labile Mn2+ species as anti-oxidants have initiated studies targeted at elucidating Mn ion regulation and pathways implicated in pathological conditions. Closely inter-linked with the quest for understanding metal ion homeostasis are basic questions like How are metal ions installed in their correct biological addresses where they need to function? and Are dynamic changes in metal ion distribution functionally relevant? These questions become more critical in the context of Mn2+ ions, which have inherently low binding affinities toward most ligands and hence would always face competing metal ions in the biological milieu. In the emerging context of functional roles of the labile Mn2+ ion pool, the development of chemical tools and techniques that can provide information on the location, distribution and dynamic changes in these parameters under physiological and pathophysiological conditions becomes imperative. In this frontier article, we discuss the challenges that had left Mn2+ ions lagging behind in the race for the development of chemical tools and recent approaches that addressed these challenges to develop tools and techniques that can illuminate Mn ions in living systems.
机译:Mn生物学的最新发展已经增加了这种必需金属离子的新的生理和病理生理作用,以现有的Mn离子的不可或缺的生物学作用。值得注意的是,与这些转运蛋白中的突变相关的Mn2 +特异性转运蛋白的发现以及不稳定的MN2 +物种作为抗氧化剂的作用的证据已经引发了靶向阐明的Mn离子调控和涉及病理条件的途径的研究。与理解金属离子稳态密切相关的是基本问题,如如何安装在他们需要运行的正确生物地址中的金属离子?在功能相关的金属离子分布的动态变化?这些问题在Mn2 +离子的背景下变得更重要,这对大多数配体具有固有的低结合亲和力,因此总是将在生物环境中面对竞争金属离子。在不稳定MN2 +离子池的功能作用的新出现背景下,化学工具和技术的开发可以在生理和病理生理病症下提供有关这些参数的位置,分布和动态变化的信息。在这个边界文章中,我们讨论了在竞争中落后的挑战,以便在争夺化学工具和最近的方法,以解决这些挑战的挑战,以开发能够在生活系统中照明MN离子的工具和技术。

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