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基于微生物铁载体的铁同化作用及治疗应用。

Microbial siderophore-based iron assimilation and therapeutic applications.

作者信息

Li Kunhua, Chen Wei-Hung, Bruner Steven D

机构信息

Department of Chemistry, University of Florida, Gainesville, FL, 32611, USA.

出版信息

Biometals. 2016 Jun;29(3):377-88. doi: 10.1007/s10534-016-9935-3. Epub 2016 May 4.

Abstract

Siderophores are structurally diverse, complex natural products that bind metals with extraordinary specificity and affinity. The acquisition of iron is critical for the survival and virulence of many pathogenic microbes and diverse strategies have evolved to synthesize, import and utilize iron. There has been a substantial increase of known siderophore scaffolds isolated and characterized in the past decade and the corresponding biosynthetic gene clusters have provided insight into the varied pathways involved in siderophore biosynthesis, delivery and utilization. Additionally, therapeutic applications of siderophores and related compounds are actively being developed. The study of biosynthetic pathways to natural siderophores augments the understanding of the complex mechanisms of bacterial iron acquisition, and enables a complimentary approach to address virulence through the interruption of siderophore biosynthesis or utilization by targeting the key enzymes to the siderophore pathways.

摘要

铁载体是结构多样的复杂天然产物,能以非凡的特异性和亲和力结合金属。获取铁对于许多致病微生物的生存和毒力至关重要,并且已经进化出多种合成、导入和利用铁的策略。在过去十年中,已分离和表征的已知铁载体支架大量增加,相应的生物合成基因簇为深入了解铁载体生物合成、传递和利用所涉及的各种途径提供了线索。此外,铁载体及相关化合物的治疗应用也在积极研发中。对天然铁载体生物合成途径的研究加深了对细菌获取铁的复杂机制的理解,并通过靶向铁载体途径的关键酶来中断铁载体的生物合成或利用,从而提供了一种补充方法来解决毒力问题。

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