Translational control in eukaryotic cells is critical for gene regulation during nutrient deprivation and stress, development and differentiation, nervous system function, aging, and disease. We describe recent advances in our understanding of the molecular structures and biochemical functions of the translation initiation machinery and summarize key strategies that mediate general or gene-specific translational control, particularly in mammalian systems
Post-transcriptional regulation represents a powerful and versatile mechanism to fine-tune gene expr...
Protein biosynthesis is a multi-step process that starts with the transcription of nuclear DNA, depo...
Protein biosynthesis is a multi-step process that starts with the transcription of nuclear DNA, depo...
Translational control in eukaryotic cells is critical for gene regulation during nutrient deprivatio...
In the past decade, translational control has been shown to be crucial in the regulation of gene exp...
A key to the understanding of normal growth and development of eukaryotic cells is the elucidation o...
Translational control mechanisms are, besides transcriptional control and mRNA stability, the most d...
Translational control mechanisms are, besides transcriptional control and mRNA stability, the most d...
Protein synthesis involves a complex machinery comprising numerous proteins and RNAs joined by nonco...
Recent advances in our understanding of both the regulation of components of the translational machi...
Regulation of protein synthesis in eukaryotes plays a critical role in development, differentiation,...
The regulation of translation is a mechanism used to modulate gene expression in a wide range of bio...
The regulation of translation is a mechanism used to modulate gene expression in a wide range of bio...
Protein synthesis, including the translation of specific messenger RNAs (mRNAs), is regulated by ext...
Abstract: Protein synthesis is a fundamental biological mechanism bringing the DNA-encoded genetic i...
Post-transcriptional regulation represents a powerful and versatile mechanism to fine-tune gene expr...
Protein biosynthesis is a multi-step process that starts with the transcription of nuclear DNA, depo...
Protein biosynthesis is a multi-step process that starts with the transcription of nuclear DNA, depo...
Translational control in eukaryotic cells is critical for gene regulation during nutrient deprivatio...
In the past decade, translational control has been shown to be crucial in the regulation of gene exp...
A key to the understanding of normal growth and development of eukaryotic cells is the elucidation o...
Translational control mechanisms are, besides transcriptional control and mRNA stability, the most d...
Translational control mechanisms are, besides transcriptional control and mRNA stability, the most d...
Protein synthesis involves a complex machinery comprising numerous proteins and RNAs joined by nonco...
Recent advances in our understanding of both the regulation of components of the translational machi...
Regulation of protein synthesis in eukaryotes plays a critical role in development, differentiation,...
The regulation of translation is a mechanism used to modulate gene expression in a wide range of bio...
The regulation of translation is a mechanism used to modulate gene expression in a wide range of bio...
Protein synthesis, including the translation of specific messenger RNAs (mRNAs), is regulated by ext...
Abstract: Protein synthesis is a fundamental biological mechanism bringing the DNA-encoded genetic i...
Post-transcriptional regulation represents a powerful and versatile mechanism to fine-tune gene expr...
Protein biosynthesis is a multi-step process that starts with the transcription of nuclear DNA, depo...
Protein biosynthesis is a multi-step process that starts with the transcription of nuclear DNA, depo...