Synthetic RNA is widely used in basic science, nanotechnology and therapeutics research. The vast majority of this RNA is synthesized in vitro by T7 RNA polymerase or one of its close family members. However, the desired RNA is generally contaminated with products longer and shorter than the DNA-encoded product. To better understand these undesired byproducts and the processes that generate them, we analyze in vitro transcription reactions using RNA-Seq as a tool. The results unambiguously confirm that product RNA rebinds to the polymerase and self-primes (in cis) generation of a hairpin duplex, a process that favorably competes with promoter driven synthesis under high yield reaction conditions. While certain priming modes can be favored, ...
The T7 bacteriophage RNA polymerase (T7 RNAP) serves as a model for understanding RNA synthesis, as ...
AbstractBacteriophage T7 RNA polymerase (T7 RNAP) is known to be one of the simplest enzymes catalyz...
We thank Andres Aguilera for providing the pCYC-LacZ plasmid for the GLRO experiments, and Szilvia M...
High yields of RNA are routinely prepared following the two-step approach of high-yield in vitro tra...
The enzyme predominantly used for in vitro run-off RNA synthesis is bacteriophage T7 RNA polymerase....
In vitro run-off transcription from a double-stranded DNA template by T7 RNA polymerase is an elegan...
Modified RNA is used in a series of nucleic acid-based, cutting-edge technologies such as antisense ...
In vitro transcription using T7 bacteriophage polymerase is widely used in molecular biology. Here, ...
Synthetic RNA formulations and viral vectors are the two main approaches for delivering small therap...
AbstractWe describe a simplified method for the in vitro synthesis of mutated RNA molecules. The met...
Rustbelt RNA Meeting 2014 Poster Presenter AwardeeReverse (3'-5') polymerases are a relatively new d...
textT7 RNA polymerase is a single protein capable of driving transcription from a simple promoter in...
Although highly specialized, T7 RNA polymerase seems to possess a large range of DNA- and RNA-depend...
AbstractWe show that T7 RNA polymerase can efficiently transcribe DNA containing gaps from one to fi...
High yields of RNA (e.g., mRNA, gRNA, lncRNA) are routinely prepared following a two-step approach: ...
The T7 bacteriophage RNA polymerase (T7 RNAP) serves as a model for understanding RNA synthesis, as ...
AbstractBacteriophage T7 RNA polymerase (T7 RNAP) is known to be one of the simplest enzymes catalyz...
We thank Andres Aguilera for providing the pCYC-LacZ plasmid for the GLRO experiments, and Szilvia M...
High yields of RNA are routinely prepared following the two-step approach of high-yield in vitro tra...
The enzyme predominantly used for in vitro run-off RNA synthesis is bacteriophage T7 RNA polymerase....
In vitro run-off transcription from a double-stranded DNA template by T7 RNA polymerase is an elegan...
Modified RNA is used in a series of nucleic acid-based, cutting-edge technologies such as antisense ...
In vitro transcription using T7 bacteriophage polymerase is widely used in molecular biology. Here, ...
Synthetic RNA formulations and viral vectors are the two main approaches for delivering small therap...
AbstractWe describe a simplified method for the in vitro synthesis of mutated RNA molecules. The met...
Rustbelt RNA Meeting 2014 Poster Presenter AwardeeReverse (3'-5') polymerases are a relatively new d...
textT7 RNA polymerase is a single protein capable of driving transcription from a simple promoter in...
Although highly specialized, T7 RNA polymerase seems to possess a large range of DNA- and RNA-depend...
AbstractWe show that T7 RNA polymerase can efficiently transcribe DNA containing gaps from one to fi...
High yields of RNA (e.g., mRNA, gRNA, lncRNA) are routinely prepared following a two-step approach: ...
The T7 bacteriophage RNA polymerase (T7 RNAP) serves as a model for understanding RNA synthesis, as ...
AbstractBacteriophage T7 RNA polymerase (T7 RNAP) is known to be one of the simplest enzymes catalyz...
We thank Andres Aguilera for providing the pCYC-LacZ plasmid for the GLRO experiments, and Szilvia M...