Dethiobiotin uptake and utilization by bacteria possessing bioYB operon

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-11-01 DOI:10.1016/j.resmic.2023.104131
Tomoki Ikeda , Tetsuhiro Ogawa , Toshihiro Aono
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Abstract

Biotin is an essential vitamin for all organisms. Some bacteria cannot synthesize biotin and live by acquiring biotin from the environment. Bacterial biotin transporters (BioY) are classified into three mechanistic types. The first forms the BioMNY complex with ATPase (BioM) and transmembrane protein (BioN). The second relies on a promiscuous energy coupling module. The third functions independently. One-third of bioY genes spread in bacteria cluster with bioM and bioN on the genomes, and the rest does not. Interestingly, some bacteria have the bioY gene clustering with bioB gene, which encodes biotin synthase, an enzyme that converts dethiobiotin to biotin, on their genome. This bioY-bioB cluster is observed even though these bacteria cannot synthesize biotin. Azorhizobium caulinodans ORS571, a rhizobium of tropical legume Sesbania rostrata, is one of such bacteria. In this study using this bacterium, we demonstrated that the BioY linked to BioB could transport not only biotin but also dethiobiotin, and the combination of BioY and BioB contributed to the growth of A. caulinodans ORS571 in a biotin-deficient but dethiobiotin-sufficient environment. We propose that such environment universally exists in the natural world, and the identification of such environment will be a new subject in the field of microbial ecology.

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具有生物YB操纵子的细菌对脱硫生物素的吸收和利用。
生物素是所有生物体必需的维生素。一些细菌不能合成生物素,并通过从环境中获得生物素来生存。细菌生物素转运蛋白(BioY)可分为三种机制类型。第一种是与ATP酶(BioM)和跨膜蛋白(BioN)形成BioMNY复合物。第二个依赖于混杂的能量耦合模块。第三个独立运行。三分之一的bioY基因在细菌群中传播,基因组上有bioM和bioN,其余的则没有。有趣的是,一些细菌的基因组中有bioY基因与bioB基因簇合,后者编码生物素合成酶,一种将脱硫生物素转化为生物素的酶。即使这些细菌不能合成生物素,也能观察到这种bioY-bioB簇。热带豆科花叶豆的根瘤菌茎生氮根瘤菌ORS571就是这样的细菌之一。在这项使用该细菌的研究中,我们证明了与BioB连接的BioY不仅可以运输生物素,还可以运输脱硫生物素,并且BioY和BioB的组合有助于A.cauinodans ORS571在生物素缺乏但脱硫生物素充足的环境中的生长。我们提出,这种环境在自然界中普遍存在,对这种环境的识别将是微生物生态学领域的一个新课题。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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