Translation is a key step in the synthesis of proteins. Accordingly, cells have evolved an intricate array of control mechanisms to regulate this process. By constructing a multicomponent mathematical framework we uncover how translation may be controlled via interacting feedback loops. Our results reveal that this interplay gives rise to a remarkable range of protein synthesis dynamics, including oscillations, step change, and bistability. This suggests that cells may have recourse to a much richer set of control mechanisms than was previously understood
AbstractWe explore and quantify the physical and biochemical mechanisms that may be relevant in the ...
Ribosomes carry out protein synthesis from mRNA templates by a highly regulated process called trans...
The process of protein synthesis (mRNA translation) is essential for the growth and survival of all ...
Translation is a key step in the synthesis of proteins. Accordingly, cells have evolved an intricate...
Protein synthesis is controlled at the level of translation initiation. Cells rapidly respond to env...
Rate control analysis defines the in vivo control map governing yeast protein synthesis and generate...
Protein synthesis involves a complex machinery comprising numerous proteins and RNAs joined by nonco...
Feedback regulation plays a crucial role in dynamic gene expression in nature, but synthetic transla...
Protein translation has emerged as an important mediator of cellular activity. Here, we discuss effo...
Regulation of gene expression involves a wide array of cellular mechanisms that control the abundanc...
International audienceEditorial: In all living cells, protein synthesis (also named translation) is ...
The regulation of both mRNA transcription and translation by down-stream gene products allows for a ...
Background Co-regulation of gene expression has been known for many years, and studied widely bot...
AbstractWe explore and quantify the physical and biochemical mechanisms that may be relevant in the ...
Ribosomes carry out protein synthesis from mRNA templates by a highly regulated process called trans...
The process of protein synthesis (mRNA translation) is essential for the growth and survival of all ...
Translation is a key step in the synthesis of proteins. Accordingly, cells have evolved an intricate...
Protein synthesis is controlled at the level of translation initiation. Cells rapidly respond to env...
Rate control analysis defines the in vivo control map governing yeast protein synthesis and generate...
Protein synthesis involves a complex machinery comprising numerous proteins and RNAs joined by nonco...
Feedback regulation plays a crucial role in dynamic gene expression in nature, but synthetic transla...
Protein translation has emerged as an important mediator of cellular activity. Here, we discuss effo...
Regulation of gene expression involves a wide array of cellular mechanisms that control the abundanc...
International audienceEditorial: In all living cells, protein synthesis (also named translation) is ...
The regulation of both mRNA transcription and translation by down-stream gene products allows for a ...
Background Co-regulation of gene expression has been known for many years, and studied widely bot...
AbstractWe explore and quantify the physical and biochemical mechanisms that may be relevant in the ...
Ribosomes carry out protein synthesis from mRNA templates by a highly regulated process called trans...
The process of protein synthesis (mRNA translation) is essential for the growth and survival of all ...