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Usage Examples
Filter by Meaning The polymerase enzyme helps repair damaged DNA in our cells.
The polymerase complex binds to the DNA template strand.
The research team used a polymerase to add a chemical modification to the polymer chain.
The study of polymerase enzymes has led to the discovery of new viral families and the development of antiviral therapies.
The polymerase inhibitor prevented the elongation of the RNA chain.
Some viruses, such as HIV, have evolved to target specific polymerase enzymes in the host cell in order to replicate their own genetic material.
The transcription factor TFIIIA is required for the efficient transcription of tRNA genes by RNA polymerase III.
The addition of a phosphate group by the polymerase is an important step in the modification process.
The enzyme RNA polymerase binds to DNA to initiate the process of transcription.
The activity of the polymerase enzyme can be regulated by other proteins in the cell.
He was able to amplify the target sequence using a hot-start polymerase.
The polymerase chain reaction allowed for the detection of a specific genetic mutation.
Without polymerase, the transcription of RNA would not occur.
The DNA polymerase used in PCR is often derived from bacteria.
The polymerase inhibitors are used in cancer therapy to prevent cell division.
The mechanism of action of the polymerase enzyme involves the formation of a stable enzyme-substrate complex followed by nucleotide addition.
The formation of the peptide bond by the polymerase protein requires the transfer of an amino acid from a tRNA molecule to the growing polypeptide chain.
The polymerase chain reaction can be combined with other techniques such as gel electrophoresis and sequencing to obtain more detailed information about DNA samples.
Polymerase is commonly found in biotechnology labs.
Scientists have identified a new type of polymerase enzyme that is involved in the formation of RNA molecules.
The polymerase protein catalyzes the formation of peptide bonds between amino acids.
RNA polymerase is an enzyme that synthesizes RNA from DNA.
RNA polymerase transcribes genes encoding messenger RNA by moving along the DNA template strand.
The study of polymerase enzymes has led to the development of new drugs targeting viral replication.
The polymerase used in PCR elongates the DNA strand by adding nucleotides.
The activity of the polymerase enzyme can be affected by mutations that alter its structure or function.
The polymerase reaction is affected by various factors such as the concentration of dNTPs and magnesium ions.
Messenger RNA is synthesized from a DNA template by the action of RNA polymerase.
The polymerase enzyme is essential for the addition of chemical modifications to a polymer.
The activity of RNA polymerase I is regulated by a variety of transcription factors.
A mutation in the polymerase gene can lead to genetic disorders.
The transcription of messenger RNA by RNA polymerase is a highly regulated process.
The activity of the polymerase enzyme is necessary for the ribosome to translate mRNA into protein.
The study of the polymerase enzyme has led to the development of new antibiotics targeting bacterial protein synthesis.
RNA polymerase I is responsible for transcribing genes that encode ribosomal RNA
The accuracy of protein synthesis is largely dependent on the fidelity of the polymerase enzyme.
Certain types of cancer are associated with mutations in the genes that code for polymerase enzymes.
The polymerase enzyme is responsible for synthesizing messenger RNA in the cell.
RNA polymerase is a key enzyme involved in the production of messenger RNA in cells.
The polymerase protein was crucial in the transcription process.
The lab technician added polymerase to the PCR reaction mix.
Polymerase plays a vital role in DNA repair mechanisms.
In eukaryotes, RNA polymerase III is a large complex consisting of 17 subunits.
RNA polymerase I transcription can be disrupted by various environmental stresses, such as heat shock.
The study of the polymerase enzyme has led to the development of new drugs targeting bacterial protein synthesis.
The activity of the polymerase protein is regulated by various factors such as ribosomal proteins and initiation factors.
The effectiveness of the polymerase reaction was dependent on the annealing temperature.
The polymerase enzyme has a high processivity, allowing it to efficiently add multiple adenine nucleotides to the mRNA.
The initiation of messenger RNA transcription requires the binding of RNA polymerase to specific regions of DNA.
Reverse transcriptase is a special type of polymerase that can synthesize DNA from an RNA template.
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