Structural basis for gene regulation by a B12-dependent photoreceptor

被引:0
|
作者
Marco Jost
Jésus Fernández-Zapata
María Carmen Polanco
Juan Manuel Ortiz-Guerrero
Percival Yang-Ting Chen
Gyunghoon Kang
S. Padmanabhan
Montserrat Elías-Arnanz
Catherine L. Drennan
机构
[1] Massachusetts Institute of Technology,Department of Chemistry
[2] Massachusetts Institute of Technology,Department of Biology
[3] Howard Hughes Medical Institute,Department of Genetics and Microbiology
[4] Massachusetts Institute of Technology,undefined
[5] Instituto de Química Física “Rocasolano”,undefined
[6] Consejo Superior de Investigaciones Científicas,undefined
[7] Area of Genetics (Unidad Asociada al Instituto de Química Física “Rocasolano”,undefined
[8] Consejo Superior de Investigaciones Científicas),undefined
[9] Faculty of Biology,undefined
[10] Universidad de Murcia,undefined
[11] †Present address: MRC Protein Phosphorylation and Ubiquitylation Unit,undefined
[12] University of Dundee,undefined
[13] Dundee DD1 5EH,undefined
[14] UK.,undefined
来源
Nature | 2015年 / 526卷
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摘要
Photoreceptor proteins enable organisms to sense and respond to light. The newly discovered CarH-type photoreceptors use a vitamin B12 derivative, adenosylcobalamin, as the light-sensing chromophore to mediate light-dependent gene regulation. Here we present crystal structures of Thermus thermophilus CarH in all three relevant states: in the dark, both free and bound to operator DNA, and after light exposure. These structures provide visualizations of how adenosylcobalamin mediates CarH tetramer formation in the dark, how this tetramer binds to the promoter −35 element to repress transcription, and how light exposure leads to a large-scale conformational change that activates transcription. In addition to the remarkable functional repurposing of adenosylcobalamin from an enzyme cofactor to a light sensor, we find that nature also repurposed two independent protein modules in assembling CarH. These results expand the biological role of vitamin B12 and provide fundamental insight into a new mode of light-dependent gene regulation.
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页码:536 / 541
页数:5
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