Many classes of S-adenosylmethionine (SAM)-binding RNAs and proteins are of interest as potential drug targets in diverse therapeutic areas, from infectious diseases to cancer. In the former case, the SAM-I riboswitch is an attractive target because this structured RNA element is found only in bacterial mRNAs and regulates multiple genes in several human pathogens. Here, we describe the synthesis of stable and fluorescent analogs of SAM in which the fluorophore is introduced through a functionalizable linker to the ribose. A Cy5-labeled SAM analog was shown to bind several SAM-I riboswitches via in-line probing and fluorescence polarization assays, including one from Staphylococcus aureus that controls the expression of SAM synthetase in th...
The efficient synthesis of a range of stable SAM mimetics, and their ability to promote the binding ...
Riboswitches are widespread structured RNA elements that usually occur in 5'-untranslated regions (U...
S-adenosylmethionine (SAM) riboswitches are widespread in bacteria, and up to five different SAM rib...
Many classes of S-adenosylmethionine (SAM)-binding RNAs and proteins are of interest as potential dr...
Synthesis of S-adenosylmethionine (SAM) Analogs and Development of High-Throughput Screens to Target...
Riboswitches are cis-regulatory structured RNA elements capable of controlling expression of downstr...
Riboswitches are recently discovered regulatory RNAs that directly relay environmental cues to the g...
The chemical and physical properties of RNAs create a diverse functional portfolio to influence the ...
S-adenosylmethionine (SAM) is a central metabolite since it is used as a methyl group donor in many ...
SAM-V is one of the class of riboswitches that bind S-adenosylmethione, regulating gene expression b...
Development of robust assay reagents for high-throughput enzyme activity screens is essential for bi...
RNA-based fluorescent (RBF) biosensors have been applied to detect a variety of metabolites in vitro...
In this work, the preparation of new S-adenosyl-l-methionine (SAM) analogues for sequence specific D...
SAM-I riboswitches regulate gene expression through transcription termination upon binding a S-adeno...
With the discovery of antibiotics, a productive period of antibacterial drug innovation and applicat...
The efficient synthesis of a range of stable SAM mimetics, and their ability to promote the binding ...
Riboswitches are widespread structured RNA elements that usually occur in 5'-untranslated regions (U...
S-adenosylmethionine (SAM) riboswitches are widespread in bacteria, and up to five different SAM rib...
Many classes of S-adenosylmethionine (SAM)-binding RNAs and proteins are of interest as potential dr...
Synthesis of S-adenosylmethionine (SAM) Analogs and Development of High-Throughput Screens to Target...
Riboswitches are cis-regulatory structured RNA elements capable of controlling expression of downstr...
Riboswitches are recently discovered regulatory RNAs that directly relay environmental cues to the g...
The chemical and physical properties of RNAs create a diverse functional portfolio to influence the ...
S-adenosylmethionine (SAM) is a central metabolite since it is used as a methyl group donor in many ...
SAM-V is one of the class of riboswitches that bind S-adenosylmethione, regulating gene expression b...
Development of robust assay reagents for high-throughput enzyme activity screens is essential for bi...
RNA-based fluorescent (RBF) biosensors have been applied to detect a variety of metabolites in vitro...
In this work, the preparation of new S-adenosyl-l-methionine (SAM) analogues for sequence specific D...
SAM-I riboswitches regulate gene expression through transcription termination upon binding a S-adeno...
With the discovery of antibiotics, a productive period of antibacterial drug innovation and applicat...
The efficient synthesis of a range of stable SAM mimetics, and their ability to promote the binding ...
Riboswitches are widespread structured RNA elements that usually occur in 5'-untranslated regions (U...
S-adenosylmethionine (SAM) riboswitches are widespread in bacteria, and up to five different SAM rib...