Protein synthesis is an energy-demanding cellular process. Consequently, a well-timed, fine-tuned and plastic regulation of translation is needed to adjust and maintain cell states under dynamically changing environments. Genome-wide monitoring of translation was recently facilitated by ribosome profiling, which uncovered key features of translation regulation. In this review, we summarize recent ribosome profiling studies in mammals providing novel insight in dynamic translation regulation, notably related to circadian rhythms, diurnal feeding/fasting cycles, cell cycle progression, stress responses, and tRNA landscapes. In particular, recent results show that regulating translation initiation and elongation represent important mechanisms ...
The daily gene expression oscillations that underlie mammalian circadian rhythms show striking diffe...
Ribosomes carry out protein synthesis from mRNA templates by a highly regulated process called trans...
Cell survival in changing environments requires appropriate regulation of gene expression, including...
Circadian rhythms allow organisms to anticipate and adapt to periodic environmental changes related ...
A large part of mammalian physiology and behaviour shows regular daily variations. This temporal org...
Mammalian gene expression displays widespread circadian oscillations. Rhythmic transcription underli...
The daily gene expression oscillations that underlie mammalian circadian rhythms show striking tissu...
Abstract Background The daily gene expression oscillations that underlie mammalian circadian rhythms...
Genome-wide studies of circadian transcription or mRNA translation have been hindered by the presenc...
<div><p>Biological rhythms play a fundamental role in the physiology and behavior of most living org...
Biological rhythms play a fundamental role in the physiology and behavior of most living organisms. ...
Mammalian physiology and behavior follow daily rhythms that are orchestrated by endogenous timekeepe...
Diurnal oscillations of gene expression are a hallmark of rhythmic physiology across most living org...
Translation depends on messenger RNA (mRNA)-specific initiation, elongation, and termination rates. ...
Diurnal oscillations of gene expression are a hallmark of rhythmic physiology across most living org...
The daily gene expression oscillations that underlie mammalian circadian rhythms show striking diffe...
Ribosomes carry out protein synthesis from mRNA templates by a highly regulated process called trans...
Cell survival in changing environments requires appropriate regulation of gene expression, including...
Circadian rhythms allow organisms to anticipate and adapt to periodic environmental changes related ...
A large part of mammalian physiology and behaviour shows regular daily variations. This temporal org...
Mammalian gene expression displays widespread circadian oscillations. Rhythmic transcription underli...
The daily gene expression oscillations that underlie mammalian circadian rhythms show striking tissu...
Abstract Background The daily gene expression oscillations that underlie mammalian circadian rhythms...
Genome-wide studies of circadian transcription or mRNA translation have been hindered by the presenc...
<div><p>Biological rhythms play a fundamental role in the physiology and behavior of most living org...
Biological rhythms play a fundamental role in the physiology and behavior of most living organisms. ...
Mammalian physiology and behavior follow daily rhythms that are orchestrated by endogenous timekeepe...
Diurnal oscillations of gene expression are a hallmark of rhythmic physiology across most living org...
Translation depends on messenger RNA (mRNA)-specific initiation, elongation, and termination rates. ...
Diurnal oscillations of gene expression are a hallmark of rhythmic physiology across most living org...
The daily gene expression oscillations that underlie mammalian circadian rhythms show striking diffe...
Ribosomes carry out protein synthesis from mRNA templates by a highly regulated process called trans...
Cell survival in changing environments requires appropriate regulation of gene expression, including...