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This process is also known as protein biosynthesis or simply translation (genetics).
It is used to inhibit protein biosynthesis in its initial stages.
This is the opposite of protein biosynthesis, which starts at the N-terminal end.
Protein biosynthesis, although very similar, is different for prokaryotes and eukaryotes.
Translation is the second part of protein biosynthesis (the making of proteins).
The biological process of producing long peptides (proteins) is known as protein biosynthesis.
This early work helped create new fundamental tenets about the mechanism of protein biosynthesis and antibiotic action.
Amino acids, including tryptophan, act as building blocks in protein biosynthesis.
Protein biosynthesis differs between prokaryotes and eukaryotes, though parts of the process are the same in both.
Protein biosynthesis is strictly regulated at multiple steps, and error-checking mechanisms are in place.
Most of these are synthesized by the ribosomes through an enzyme-catalyzed process called protein biosynthesis.
Protein biosynthesis (synthesis) is when cells build proteins.
The protein is involved in protein biosynthesis and promotes the formation of the first peptide bond.
The N-terminus is the first part of the protein that exits the ribosome during protein biosynthesis.
Protein biosynthesis, the multi-step biochemical synthesis of proteins (long peptides)
This was followed by studies that provided structural insights into the mechanism that ensures the fidelity of protein biosynthesis.
Protein biosynthesis (aka translation) at the ribosome.
Main article: Protein biosynthesis.
Tyrothricin inhibits protein biosynthesis of gram-positive organisms, but is completely ineffective against gram-negative.
Posttranslational modification (PTM) is a step in protein biosynthesis.
His primary scientific interests reside in the field of biochemistry of nucleic acids, and protein biosynthesis.
The primary structure is held together by covalent or peptide bonds, which are made during the process of protein biosynthesis or translation.
As such, loss of RPS19 function would be predicted to affect translation and protein biosynthesis and have a much broader impact.
These GTPases play an important role in initiation, elongation and termination of protein biosynthesis.
See protein biosynthesis for DNA's involvement in assembling protein.