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细菌Pnu型维生素转运蛋白的结构、功能、进化及应用

Structure, function, evolution, and application of bacterial Pnu-type vitamin transporters.

作者信息

Jaehme Michael, Slotboom Dirk Jan

出版信息

Biol Chem. 2015 Sep;396(9-10):955-66. doi: 10.1515/hsz-2015-0113.

Abstract

Many bacteria can take up vitamins from the environment via specific transport machineries. Uptake is essential for organisms that lack complete vitamin biosynthesis pathways, but even in the presence of biosynthesis routes uptake is likely preferred, because it is energetically less costly. Pnu transporters represent a class of membrane transporters for a diverse set of B-type vitamins. They were identified 30 years ago and catalyze transport by the mechanism of facilitated diffusion, without direct coupling to ATP hydrolysis or transport of coupling ions. Instead, directionality is achieved by metabolic trapping, in which the vitamin substrate is converted into a derivative that cannot be transported, for instance by phosphorylation. The recent crystal structure of the nicotinamide riboside transporter PnuC has provided the first insights in substrate recognition and selectivity. Here, we will summarize the current knowledge about the function, structure, and evolution of Pnu transporters. Additionally, we will highlight their role for potential biotechnological and pharmaceutical applications.

摘要

许多细菌能够通过特定的转运机制从环境中摄取维生素。对于缺乏完整维生素生物合成途径的生物体而言,摄取维生素至关重要,但即便存在生物合成途径,摄取可能仍是首选方式,因为这样在能量上成本更低。Pnu转运蛋白代表了一类针对多种B族维生素的膜转运蛋白。它们在30年前被识别出来,通过易化扩散机制催化转运,并不直接与ATP水解或偶联离子的转运相偶联。相反,转运的方向性是通过代谢捕获实现的,即维生素底物被转化为一种无法被转运的衍生物,例如通过磷酸化作用。烟酰胺核糖转运蛋白PnuC最近的晶体结构首次揭示了底物识别和选择性的相关情况。在此,我们将总结目前关于Pnu转运蛋白的功能、结构和进化的知识。此外,我们还将强调它们在潜在生物技术和制药应用中的作用。

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