1 |
Novel riboswitch-binding flavin analog that protects mice against Clostridium difficile infection without inhibiting cecal flora.  |
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2 |
Riboswitch-dependent gene regulation and its evolution in the plant kingdom.  |
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3 |
Novel system for detecting SARS coronavirus nucleocapsid protein using an ssDNA aptamer  |
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4 |
Genome-wide mapping of transcription start sites yields novel insights into the primary transcriptome of Pseudomonas putida.  |
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5 |
Biotechnology in Turkey: an overview.  |
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6 |
Abundance and functional diversity of riboswitches in microbial communities.  |
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7 |
An RNA aptamer that specifically binds pancreatic adenocarcinoma up-regulated factor inhibits migration and growth of pancreatic cancer cells  |
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8 |
Kwon S. J. and K. H. Kim. 2006. The SL1 stem-loop structure at the 5’-end of potato virus X RNA is required for efficient binding to host proteins and for viral infectivity. Mol. Cells 21: 63-75. |
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9 |
Flipping Riboswitches  |
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10 |
Selection of an antiviral RNA aptamer against hemagglutinin of the subtype H5 avian influenza virus.  |
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11 |
Penchovsky R. and C. C. Stoilova. 2013. Riboswitch-based antibacterial drug discovery using high-throughput screening methods. Expert. Opin. Drug Discov. 8: 65-82. |
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12 |
An mRNA structure in bacteria that controls gene expression by binding lysine.  |
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13 |
Thiamine Pyrophosphate Riboswitches Are Targets for the Antimicrobial Compound Pyrithiamine  |
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14 |
Inducible gene expression from the plastid genome by a synthetic riboswitch  |
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15 |
Comparative genomics reveals 104 candidate structured RNAs from bacteria, archaea, and their metagenomes.  |
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16 |
Thiamine pyrophosphate riboswitch in some representative plant species: a bioinformatics study.  |
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