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A New Facet of Vitamin B12: Gene Regulation by Cobalamin-Based Photoreceptors
Annual Review of Biochemistry ( IF 16.6 ) Pub Date : 2017-06-27 00:00:00 , DOI: 10.1146/annurev-biochem-061516-044500
S. Padmanabhan 1 , Marco Jost 2, 3 , Catherine L. Drennan 2, 4 , Montserrat Elías-Arnanz 5
Affiliation  

Living organisms sense and respond to light, a crucial environmental factor, using photoreceptors, which rely on bound chromophores such as retinal, flavins, or linear tetrapyrroles for light sensing. The discovery of photoreceptors that sense light using 5′-deoxyadenosylcobalamin, a form of vitamin B12 that is best known as an enzyme cofactor, has expanded the number of known photoreceptor families and unveiled a new biological role of this vitamin. The prototype of these B12-dependent photoreceptors, the transcriptional repressor CarH, is widespread in bacteria and mediates light-dependent gene regulation in a photoprotective cellular response. CarH activity as a transcription factor relies on the modulation of its oligomeric state by 5′-deoxyadenosylcobalamin and light. This review surveys current knowledge about these B12-dependent photoreceptors, their distribution and mode of action, and the structural and photochemical basis of how they orchestrate signal transduction and control gene expression.

中文翻译:


维生素B12的新面:基于钴胺素的感光细胞的基因调控

活生物体使用感光器来感知光并做出反应,而光是至关重要的环境因素,感光器依赖于结合的发色团(例如视网膜,黄素或线性四吡咯)进行光感测。感光体,使用5'-脱氧腺苷,维生素B的形式感光发现12是最知名的酶辅因子,已扩大已知感光家庭的数目和推出这种维生素的新的生物作用。这些B 12的原型依赖的光感受器,转录阻遏物CarH,在细菌中广泛存在,并在光保护性细胞反应中介导光依赖的基因调节。CarH作为转录因子的活性依赖于5'-脱氧腺苷基钴胺素和光对其寡聚状态的调节。这篇综述调查了有关这些依赖于B 12的光感受器,它们的分布和作用方式以及它们如何协调信号转导和控制基因表达的结构和光化学基础的当前知识。

更新日期:2017-06-27
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