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The non-classical nuclear import carrier Transportin 1 modulates circadian rhythms through its effect on PER1 nuclear localization
- Source :
- PLoS Genetics, PLoS Genetics, Vol 14, Iss 1, p e1007189 (2018)
- Publication Year :
- 2018
-
Abstract
- Circadian clocks are molecular timekeeping mechanisms that allow organisms to anticipate daily changes in their environment. The fundamental cellular basis of these clocks is delayed negative feedback gene regulation with PERIOD and CRYPTOCHROME containing protein complexes as main inhibitory elements. For a correct circadian period, it is essential that such clock protein complexes accumulate in the nucleus in a precisely timed manner, a mechanism that is poorly understood. We performed a systematic RNAi-mediated screen in human cells and identified 15 genes associated with the nucleo-cytoplasmic translocation machinery, whose expression is important for circadian clock dynamics. Among them was Transportin 1 (TNPO1), a non-classical nuclear import carrier, whose knockdown and knockout led to short circadian periods. TNPO1 was found in endogenous clock protein complexes and particularly binds to PER1 regulating its (but not PER2’s) nuclear localization. While PER1 is also transported to the nucleus by the classical, Importin β-mediated pathway, TNPO1 depletion slowed down PER1 nuclear import rate as revealed by fluorescence recovery after photobleaching (FRAP) experiments. In addition, we found that TNPO1-mediated nuclear import may constitute a novel input pathway of how cellular redox state signals to the clock, since redox stress increases binding of TNPO1 to PER1 and decreases its nuclear localization. Together, our RNAi screen knocking down import carriers (but also export carriers) results in short and long circadian periods indicating that the regulatory pathways that control the timing of clock protein subcellular localization are far more complex than previously assumed. TNPO1 is one of the novel players essential for normal circadian periods and potentially for redox regulation of the clock.<br />Author summary Circadian clocks are endogenous timekeeping mechanisms allowing organisms to anticipate daily changes in their environment. In mammals, the fundamental mechanism of these clocks is a delayed negative feedback loop, in which timely auto-repression of clock components is essential. This repression occurs at a transcriptional level and requires clock proteins to enter the nucleus in a precisely timed manner, a regulation that is little understood. We performed a systematic genetic screen for factors modulating subcellular localization in oscillating human cells and identified Transportin 1 (TNPO1) as a non-classical carrier protein required for a normal circadian period. The primary target of TNPO1 within the circadian clockwork is PERIOD1, whose nuclear shuttling is modulated by TNPO1. In addition, TNPO1-mediated nuclear import may constitute a novel input pathway of how cellular redox state signals to the clock, since redox stress increases binding of TNPO1 to PER1 and decreases its nuclear localization.
- Subjects :
- 0301 basic medicine
Cancer Research
Circadian clock
Biochemistry
Cell Fusion
0302 clinical medicine
Cryptochrome
Tumor Cells, Cultured
Genetics (clinical)
Microscopy
Light Microscopy
Period Circadian Proteins
beta Karyopherins
Cell biology
Enzymes
Precipitation Techniques
Circadian Rhythm
PER2
Subcellular Localization
Circadian Rhythms
Circadian Oscillators
Protein Transport
Cell Processes
Transportin 1
Cellular Structures and Organelles
Oxidoreductases
Luciferase
PER1
Research Article
Cell Physiology
lcsh:QH426-470
Fluorescence Recovery after Photobleaching
Period (gene)
Active Transport, Cell Nucleus
Biology
Research and Analysis Methods
03 medical and health sciences
Genetics
Immunoprecipitation
Humans
CLOCK Proteins
Nuclear Import
Molecular Biology
Ecology, Evolution, Behavior and Systematics
Cell Nucleus
Biology and Life Sciences
Proteins
Cell Biology
Co-Immunoprecipitation
lcsh:Genetics
030104 developmental biology
HEK293 Cells
Enzymology
Chronobiology
030217 neurology & neurosurgery
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- PLoS Genetics, PLoS Genetics, Vol 14, Iss 1, p e1007189 (2018)
- Accession number :
- edsair.doi.dedup.....acbe296ed2f0aedc1f90c953092d670c