AbstractFrom supercoiled DNA to the tight loops of DNA formed by some gene repressors, DNA in cells is often highly bent. Despite evidence that transcription by RNA polymerase (RNAP) is affected in systems where DNA is deformed significantly, the mechanistic details underlying the relationship between polymerase function and mechanically stressed DNA remain unclear. Seeking to gain additional insight into the regulatory consequences of highly bent DNA, we hypothesize that tightly looping DNA is alone sufficient to repress transcription. To test this hypothesis, we have developed an assay to quantify transcription elongation by bacteriophage T7 RNAP on small, circular DNA templates ∼100 bp in size. From these highly bent transcription templa...
AbstractProtein-mediated DNA looping is important in a variety of biological processes, including ge...
DNA loops form when a single protein or protein complex binds to multiple sites on the same DNA mole...
Single subunit T7 RNA polymerase is relatively small and shares mechanistic features with all RNA po...
AbstractGene transcription by the enzyme RNA polymerase is tightly regulated. In many cases, such as...
We investigated the effect of left-handed Z-DNA on transcription by bacteriophage T7 RNA polymerase ...
A paradigm in transcriptional regulation is that graded increases in transcription factor (TF) conce...
AbstractDuring normal transcription, the nascent RNA product is released from the DNA template. Howe...
AbstractGene transcription by the enzyme RNA polymerase is tightly regulated. In many cases, such as...
DNA transcription depends upon the highly efficient and selective function of RNA polymerases (RNAPs...
The transcription process is highly processive. However, specific sequence elements encoded in the n...
RNA polymerases from phage-infected bacteria and mammalian cells have been shown to bypass single-st...
As the chief informational molecule of life, DNA is subject to extensive physical manipulations. The...
The transcription process is highly processive. However, specific sequence elements encoded in the n...
RNA polymerase (RNAP) from bacteriophage T7 is a representative single-subunit viral RNAP that can t...
Single subunit T7 RNA polymerase is relatively small and shares mechanistic features with all RNA po...
AbstractProtein-mediated DNA looping is important in a variety of biological processes, including ge...
DNA loops form when a single protein or protein complex binds to multiple sites on the same DNA mole...
Single subunit T7 RNA polymerase is relatively small and shares mechanistic features with all RNA po...
AbstractGene transcription by the enzyme RNA polymerase is tightly regulated. In many cases, such as...
We investigated the effect of left-handed Z-DNA on transcription by bacteriophage T7 RNA polymerase ...
A paradigm in transcriptional regulation is that graded increases in transcription factor (TF) conce...
AbstractDuring normal transcription, the nascent RNA product is released from the DNA template. Howe...
AbstractGene transcription by the enzyme RNA polymerase is tightly regulated. In many cases, such as...
DNA transcription depends upon the highly efficient and selective function of RNA polymerases (RNAPs...
The transcription process is highly processive. However, specific sequence elements encoded in the n...
RNA polymerases from phage-infected bacteria and mammalian cells have been shown to bypass single-st...
As the chief informational molecule of life, DNA is subject to extensive physical manipulations. The...
The transcription process is highly processive. However, specific sequence elements encoded in the n...
RNA polymerase (RNAP) from bacteriophage T7 is a representative single-subunit viral RNAP that can t...
Single subunit T7 RNA polymerase is relatively small and shares mechanistic features with all RNA po...
AbstractProtein-mediated DNA looping is important in a variety of biological processes, including ge...
DNA loops form when a single protein or protein complex binds to multiple sites on the same DNA mole...
Single subunit T7 RNA polymerase is relatively small and shares mechanistic features with all RNA po...