Usage Examples
Filter by Meaning The assembly of the ribosome is a highly complex process involving the coordination of numerous proteins and RNA molecules.
Recent studies have shed light on the structure of the ribosome and the molecular mechanisms behind its function, paving the way for new treatments for ribosome-related diseases.
The ribosome has a complex three-dimensional structure that enables it to carry out its critical role in protein synthesis.
The ribosome is responsible for decoding the genetic information in the form of mRNA and synthesizing proteins.
The ribosome is one of the most important organelles in a cell.
The ribosome is located in the cytoplasm of the cell and is involved in the synthesis of both soluble and membrane-bound proteins.
The ribosome is a cell organelle that helps in the production of proteins.
Defects in ribosome assembly and function have been linked to numerous diseases, including cancer and genetic disorders.
In order for the ribosome to function properly, it needs to be properly folded and assembled.
A defect in the ribosome can lead to a misfolding of the protein and cause diseases such as Alzheimer's.
The ribosome is a target for many antibiotics because of its essential role in protein synthesis.
The ribosome is a complex molecular machine that assembles amino acids into proteins.
The ribosome is composed of two subunits that work together to translate genetic information into proteins.
The ribosome is a highly conserved organelle found in all cells, from bacteria to humans.
Antibiotics like tetracycline and erythromycin target the ribosome and inhibit protein synthesis in bacteria.
The ribosome subunit is responsible for the translation of RNA to protein.
The ribosome subunit is a complex structure composed of RNA and proteins.
The small ribosome subunit is responsible for the recognition of the start codon during translation.
The ribosome subunit undergoes conformational changes during the process of protein synthesis.
The small ribosome subunit binds to the mRNA molecule during protein synthesis.
Ribosome subunits come together to form a functional ribosome during translation.
The ribosome is made up of two subunits, each containing RNA and protein molecules.
The ribosome is composed of a small and a large subunit, each containing RNA and protein molecules.
The ribosome acts as a sort of "molecular factory" where amino acids are assembled into proteins.
The ribosome is an important component of the stress response machinery.
The ribosome is an essential component of the stress response system in cells.
Stress can trigger changes in ribosome function, altering the production of key proteins.
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