To exert their functions, RNAs adopt diverse structures, ranging from simple secondary to complex tertiary and quaternary folds. In vivo, RNA folding starts with RNA transcription, and a wide variety of processes are coupled to co transcriptional RNA folding events, including the regulation of fundamental transcription dynamics, gene regulation by mechanisms like attenuation, RNA processing or ribonucleoprotein particle formation. While co transcriptional RNA folding and associated co transcriptional processes are by now well accepted as pervasive regulatory principles in all organisms, investigations into the role of the transcription machinery in co transcriptional folding processes have so far largely focused on effects of the order in w...
RNA molecules are functionally diverse in part due to their extreme structural flexibility that allo...
Proteins with RNA chaperone activity promote RNA folding by loosening the structure of misfolded RNA...
Transcription is the first step of gene expression and involves RNA polymerases. After transcription...
Due to the high exposition to changing environmental conditions, bacteria have developed many mechan...
Background: Most of the existing RNA structure prediction programs fold a completely synthesized RNA...
Background: Most of the existing RNA structure prediction programs fold a completely synthesized RNA...
Functional and structural inter-relationships of RNA and pro-teins in the execution and control of b...
This work was supported by grants from the Canadian Institutes of Health Research, the Natural Scien...
Bacterial ribosomal RNAs are synthesized by a dedicated, conserved transcription elongation complex ...
Bacterial ribosomal RNAs are synthesized by a dedicated, conserved transcription elongation complex ...
State-of-the-art methods in RNA secondary structure prediction focus on predicting the final, functi...
Bacterial ribosomal RNAs are synthesized by a dedicated, conserved transcription elongation complex ...
State-of-the-art methods in RNA secondary structure prediction focus on predicting the final, functi...
Transcriptional control requires the spatially and temporally coordinated action of many macromolecu...
Transcriptional control requires the spatially and temporally coordinated action of many macromolecu...
RNA molecules are functionally diverse in part due to their extreme structural flexibility that allo...
Proteins with RNA chaperone activity promote RNA folding by loosening the structure of misfolded RNA...
Transcription is the first step of gene expression and involves RNA polymerases. After transcription...
Due to the high exposition to changing environmental conditions, bacteria have developed many mechan...
Background: Most of the existing RNA structure prediction programs fold a completely synthesized RNA...
Background: Most of the existing RNA structure prediction programs fold a completely synthesized RNA...
Functional and structural inter-relationships of RNA and pro-teins in the execution and control of b...
This work was supported by grants from the Canadian Institutes of Health Research, the Natural Scien...
Bacterial ribosomal RNAs are synthesized by a dedicated, conserved transcription elongation complex ...
Bacterial ribosomal RNAs are synthesized by a dedicated, conserved transcription elongation complex ...
State-of-the-art methods in RNA secondary structure prediction focus on predicting the final, functi...
Bacterial ribosomal RNAs are synthesized by a dedicated, conserved transcription elongation complex ...
State-of-the-art methods in RNA secondary structure prediction focus on predicting the final, functi...
Transcriptional control requires the spatially and temporally coordinated action of many macromolecu...
Transcriptional control requires the spatially and temporally coordinated action of many macromolecu...
RNA molecules are functionally diverse in part due to their extreme structural flexibility that allo...
Proteins with RNA chaperone activity promote RNA folding by loosening the structure of misfolded RNA...
Transcription is the first step of gene expression and involves RNA polymerases. After transcription...