Phosphate-Group Recognition by the Aptamer Domain of the Thiamine Pyrophosphate Sensing Riboswitch
Author:
Publisher
Wiley
Subject
Organic Chemistry,Molecular Biology,Molecular Medicine,Biochemistry
Reference40 articles.
1. Riboswitches Control Fundamental Biochemical Pathways in Bacillus subtilis and Other Bacteria
2. Metabolite-binding RNA domains are present in the genes of eukaryotes
3. Thiamine-regulated gene expression of Aspergillus oryzae thiA requires splicing of the intron containing a riboswitch-like domain in the 5′-UTR
4. Thiamine derivatives bind messenger RNAs directly to regulate bacterial gene expression
5. An mRNA structure that controls gene expression by binding S-adenosylmethionine
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1. Regulation of the thiamine pyrophosphate (TPP)‐sensing riboswitch in NMT1 mRNA from Neurospora crassa;FEBS Letters;2019-11-13
2. Ligand Recognition Mechanism of Thiamine Pyrophosphate Riboswitch Aptamer;Bulletin of the Korean Chemical Society;2017-11-27
3. Role of riboswitches in gene regulation and their potential for algal biotechnology;Journal of Phycology;2016-05-23
4. Observation of long-range tertiary interactions during ligand binding by the TPP riboswitch aptamer;eLife;2015-12-28
5. Dynamics of riboswitches: Molecular simulations;Biochimica et Biophysica Acta (BBA) - Gene Regulatory Mechanisms;2014-10
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