2021
DOI: 10.1038/s41589-021-00739-0
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ROS regulated reversible protein phase separation synchronizes plant flowering

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Cited by 113 publications
(96 citation statements)
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References 56 publications
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“…Biomolecular condensates undergoing LLPS is an emerging topic in the plant field, and there are a growing number of studies on plant biomolecular condensates demonstrating LLPS ( Fang et al, 2019 ; Powers et al, 2019 ; Dorone et al, 2020 ; Jung et al, 2020 ; Ouyang et al, 2020 ; Zavaliev et al, 2020 ; Huang et al, 2021 ). One of these recent findings was on a phyB interacting protein, ELF3, demonstrating that ELF3 nuclear bodies form via LLPS ( Jung et al, 2020 ).…”
Section: Photobodies May Undergo Liquid–liquid Phase Separationmentioning
confidence: 99%
“…Biomolecular condensates undergoing LLPS is an emerging topic in the plant field, and there are a growing number of studies on plant biomolecular condensates demonstrating LLPS ( Fang et al, 2019 ; Powers et al, 2019 ; Dorone et al, 2020 ; Jung et al, 2020 ; Ouyang et al, 2020 ; Zavaliev et al, 2020 ; Huang et al, 2021 ). One of these recent findings was on a phyB interacting protein, ELF3, demonstrating that ELF3 nuclear bodies form via LLPS ( Jung et al, 2020 ).…”
Section: Photobodies May Undergo Liquid–liquid Phase Separationmentioning
confidence: 99%
“…This redox-regulated oligomerization of TMF drives aggregation of its IDRs which enhances TMF phase separation by increasing multivalent interactions between IDRs. The phase-separated TMF droplets form transcriptional condensates to repress AN expression which precisely controls the meristem maturation and flowering time (Huang et al, 2021; Figure 2D).…”
Section: Phase Separation In Stem Cell Fate Decisionmentioning
confidence: 99%
“…Xie et al (2020) showed that nuclear dicing bodies (D-bodies, containing DICER-LIKE 1, HYPONASTIC LEAVES 1 and SERRATE) are phase-separated condensates and essential for efficient miRNA processing [78]. Furthermore, Huang et al (2021) reported that reactive oxygen species (ROS) regulate reversible protein phase separation to direct stem cell fate for flowering transition. Proteins contain large IDRs that are enriched in amino acids, such as glycine, serine, glutamine, asparagine, phenylalanine and tyrosine [79].…”
Section: Conclusion and Discussionmentioning
confidence: 99%
“…Furthermore, Huang et al (2021) reported that reactive oxygen species (ROS) regulate reversible protein phase separation to direct stem cell fate for flowering transition. Proteins contain large IDRs that are enriched in amino acids, such as glycine, serine, glutamine, asparagine, phenylalanine and tyrosine [79]. Therefore, many GR-RBPs are predicted by the presence of IDR sequences to be involved in phase separation under specific physiological conditions.…”
Section: Conclusion and Discussionmentioning
confidence: 99%