Whereas mechanisms underlying the fidelity of DNA polymerases (DNAPs) have been investigated in detail, RNA polymerase (RNAP) fidelity mechanisms remained poorly understood. New functional and structural studies now suggest how RNAPs select the correct nucleoside triphosphate (NTP) substrate to prevent transcription errors, and how the enzymes detect and remove a misincorporated nucleotide during proofreading. Proofreading begins with fraying of the misincorporated nucleotide away from the DNA template, which pauses transcription. Subsequent backtracking of RNAP by one position enables nucleolytic cleavage of an RNA dinucleotide that contains the misincorporated nucleotide. Since cleavage occurs at the same active site that is used for poly...
We show that RNA polymerase (Pol) II prevents erroneous transcription in vitro with different strate...
DNA synthesis, carried out by DNA polymerases, requires balancing speed and accuracy for faithful re...
All cellular RNA polymerases (RNAP) occasionally backtrack along the template DNA as part of transcr...
Whereas mechanisms underlying the fidelity of DNA polymerases (DNAPs) have been investigated in deta...
Recent work showed that the single-subunit T7 RNA polymerase (RNAP) can generate misincorporation er...
We show that RNA polymerase (Pol) II prevents erroneous transcription in vitro with different strate...
AbstractDNA polymerases discriminate from a pool of structurally similar molecules to insert the cor...
Concentration-dependent pre-steady state kinetics of correct nucleotide incorporation led to a propo...
Concentration-dependent pre-steady state kinetics of correct nucleotide incorporation led to a propo...
We suggest a novel two-step proofreading mechanism with two sequential rounds of proofreading select...
We suggest a novel two-step proofreading mechanism with two sequential rounds of proofreading select...
Recent RNA polymerase (RNAP) structures led to a proposed three-step model of nucleoside triphosphat...
Recent RNA polymerase (RNAP) structures led to a proposed three-step model of nucleoside triphosphat...
We suggest a novel two-step proofreading mechanism with two sequential rounds of proofreading select...
AbstractWe have addressed whether the intrinsic 3′→5′ nuclease activity of human RNA polymerase II (...
We show that RNA polymerase (Pol) II prevents erroneous transcription in vitro with different strate...
DNA synthesis, carried out by DNA polymerases, requires balancing speed and accuracy for faithful re...
All cellular RNA polymerases (RNAP) occasionally backtrack along the template DNA as part of transcr...
Whereas mechanisms underlying the fidelity of DNA polymerases (DNAPs) have been investigated in deta...
Recent work showed that the single-subunit T7 RNA polymerase (RNAP) can generate misincorporation er...
We show that RNA polymerase (Pol) II prevents erroneous transcription in vitro with different strate...
AbstractDNA polymerases discriminate from a pool of structurally similar molecules to insert the cor...
Concentration-dependent pre-steady state kinetics of correct nucleotide incorporation led to a propo...
Concentration-dependent pre-steady state kinetics of correct nucleotide incorporation led to a propo...
We suggest a novel two-step proofreading mechanism with two sequential rounds of proofreading select...
We suggest a novel two-step proofreading mechanism with two sequential rounds of proofreading select...
Recent RNA polymerase (RNAP) structures led to a proposed three-step model of nucleoside triphosphat...
Recent RNA polymerase (RNAP) structures led to a proposed three-step model of nucleoside triphosphat...
We suggest a novel two-step proofreading mechanism with two sequential rounds of proofreading select...
AbstractWe have addressed whether the intrinsic 3′→5′ nuclease activity of human RNA polymerase II (...
We show that RNA polymerase (Pol) II prevents erroneous transcription in vitro with different strate...
DNA synthesis, carried out by DNA polymerases, requires balancing speed and accuracy for faithful re...
All cellular RNA polymerases (RNAP) occasionally backtrack along the template DNA as part of transcr...