A review of the various aspects of transcription that have been addressed using methods of single-molecule detection and manipulation is studied. Whereas single-subunit viral polymerases such as T7 and SP6 RNAP can start transcription at a promoter region without additional cofactors, multi subunit bacterial and eukaryotic RNA polymerase (RNAPs) require transcription factors that aid the enzyme to recognize and bind to the promoter. Through the combination of single molecule manipulation and single-molecule fluorescence methods in the same experiment, it should be possible to follow, the internal dynamics of the polymerase or the binding of a regulatory factor and simultaneously monitor the mechanical variables of position, force, and torqu...
RNA molecules can be conveniently synthesized in vitro by the T7 RNA polymerase (T7 RNAP). In some e...
The transcription process is crucial to life and the enzyme RNA polymerase (RNAP) is the major compo...
The horizons of biology are ever expanding, from the discernment of the detailed mechanisms of enzym...
Over the past decade, fluorescence-based single-molecule studies significantly contributed to charac...
The numerous complex molecular processes occurring inside living cells are primarily carried out by ...
Transcription of genomic DNA of all organisms is carried out by members of the multi-subunit RNA pol...
A single-molecule transcription assay has been developed that allows, for the first time, the direct...
Recently developed single-molecule techniques have provided new insights into the function of one of...
Single molecule optical trapping assays have now been applied to a great number of macromolecular sy...
During the twentieth century, researchers made significant advances in understanding the biochemical...
RNA polymerase (RNAP) is the central motor of gene expression since it governs the process of transc...
The genomic revolution has indubitably brought about a paradigm shift in the field of molecular biol...
The present dissertation uses Optical Tweezers to examine the inner workings of one of the most rele...
SummaryUnderstanding the pathway and kinetic mechanisms of transcription initiation is essential for...
The transcription process is crucial to life and the enzyme RNA polymerase (RNAP) is the major compo...
RNA molecules can be conveniently synthesized in vitro by the T7 RNA polymerase (T7 RNAP). In some e...
The transcription process is crucial to life and the enzyme RNA polymerase (RNAP) is the major compo...
The horizons of biology are ever expanding, from the discernment of the detailed mechanisms of enzym...
Over the past decade, fluorescence-based single-molecule studies significantly contributed to charac...
The numerous complex molecular processes occurring inside living cells are primarily carried out by ...
Transcription of genomic DNA of all organisms is carried out by members of the multi-subunit RNA pol...
A single-molecule transcription assay has been developed that allows, for the first time, the direct...
Recently developed single-molecule techniques have provided new insights into the function of one of...
Single molecule optical trapping assays have now been applied to a great number of macromolecular sy...
During the twentieth century, researchers made significant advances in understanding the biochemical...
RNA polymerase (RNAP) is the central motor of gene expression since it governs the process of transc...
The genomic revolution has indubitably brought about a paradigm shift in the field of molecular biol...
The present dissertation uses Optical Tweezers to examine the inner workings of one of the most rele...
SummaryUnderstanding the pathway and kinetic mechanisms of transcription initiation is essential for...
The transcription process is crucial to life and the enzyme RNA polymerase (RNAP) is the major compo...
RNA molecules can be conveniently synthesized in vitro by the T7 RNA polymerase (T7 RNAP). In some e...
The transcription process is crucial to life and the enzyme RNA polymerase (RNAP) is the major compo...
The horizons of biology are ever expanding, from the discernment of the detailed mechanisms of enzym...