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Ribosomes are tiny molecular machines inside all living cells that build proteins, and ribosome biogenesis is the complex, ...
To overcome the inherent challenge of translation termination interference caused by stop codon reprogramming in mammalian ...
To overcome the inherent challenge of translation termination interference caused by stop codon reprogramming in mammalian ...
Ribosomes are tiny molecular machines inside all living cells that build proteins, and ribosome biogenesis is the complex, multi-step process by which ...
To overcome the inherent challenge of translation termination interference caused by stop codon reprogramming in mammalian ...
N4-Acetylation of cytidine (ac4C) is an mRNA modification that enhances cellular mRNA stability and translation. Most eukaryotic organisms catalyze ac4C using a homologue of human N-acetyltransferase ...
We asked experts about how the technology works, its safety and its potential in medicine. By Nina Agrawal Health Secretary Robert F. Kennedy Jr. has repeatedly questioned the safety of mRNA ...
AbstractTranscription of DNA into mRNA and translation of mRNA into proteins are two major processes underlying gene expression. ... Ding Y, Shah P, Plotkin JB (2012) Weak 5′‐mRNA secondary structures ...
The research field of 'cellular IRESes' lay dormant for decades, as there was no uniform standard of reliable methods for the clear characterization of these starting points for the ribosome ...
A complex molecular machine, the spliceosome, ensures that the genetic information from the genome, after being transcribed into mRNA precursors, is correctly assembled into mature mRNA. Splicing ...
Eukaryotic Initiation Factor 4 (eIF4) is a group of factors that activates mRNA for translation and recruit 43S preinitiation complex (PIC) to the mRNA 5′ end, forming the 48S PIC. The eIF4 factors ...