| Literature DB >> 28137868 |
Margaret F Romine1, Dmitry A Rodionov2,3, Yukari Maezato1, Lindsey N Anderson1, Premchendar Nandhikonda1, Irina A Rodionova3, Alexandre Carre4, Xiaoqing Li3, Chengdong Xu1, Therese R W Clauss1, Young-Mo Kim1, Thomas O Metz1, Aaron T Wright5.
Abstract
Only a small fraction of vitamin B12-requiring organisms are able to synthesize B12 de novo, making it a common commodity in microbial communities. Initially recognized as an enzyme cofactor of a few enzymes, recent studies have revealed additional B12-binding enzymes and regulatory roles for B12 Here we report the development and use of a B12-based chemical probe to identify B12-binding proteins in a nonphototrophic B12-producing bacterium. Two unexpected discoveries resulted from this study. First, we identified a light-sensing B12-binding transcriptional regulator and demonstrated that it controls folate and ubiquinone biosynthesis. Second, our probe captured proteins involved in folate, methionine, and ubiquinone metabolism, suggesting that it may play a role as an allosteric effector of these processes. These metabolic processes produce precursors for synthesis of DNA, RNA, and protein. Thereby, B12 likely modulates growth, and by limiting its availability to auxotrophs, B12-producing organisms may facilitate coordination of community metabolism.Entities:
Keywords: chemical biology; cobalamin; metabolism; microbial regulation
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Year: 2017 PMID: 28137868 PMCID: PMC5320969 DOI: 10.1073/pnas.1612360114
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205