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Potential roles of G-quadruplex structures in RNA granules for physiological and pathological phase separation

期刊

JOURNAL OF BIOCHEMISTRY
卷 169, 期 5, 页码 527-533

出版社

OXFORD UNIV PRESS
DOI: 10.1093/jb/mvab018

关键词

compartmentalization; neurodegenerative diseases; phase separation; RNA G-quadruplex; RNA granules

资金

  1. AMED [JP19ek0109235, JP20ek0109425]
  2. JSPS KAKENHI [JP20K15417, JP20J00520, JP19H05221, JP20H03393]
  3. Astellas Foundation for Research on Metabolic Disorders
  4. Daiichi-Sankyo Foundation of Life Science
  5. Kanae Foundation for the Promotion of Medical Science
  6. Mitsubishi Foundation

向作者/读者索取更多资源

Cellular liquid-liquid phase separation is a crucial phenomenon in molecularly crowded environments inside cells, with abnormal phase separation in RNA granules being implicated in the onset of various neurodegenerative diseases. RNA G-quadruplex (G4RNA) appears to play a beneficial role in RNA-derived phase separation due to its multivalent interactions with RNAs and RNA-binding proteins.
Cellular liquid-liquid phase separation is a physiologically inevitable phenomenon in molecularly crowded environments inside cells and serves to compartmentalize biomolecules to facilitate several functions, forming cytoplasmic and nuclear RNA granules. Abnormalities in the phase separation process in RNA granules are implicated in the onset of several neurodegenerative diseases; the initial liquid-like phase-separated droplets containing pathogenic proteins are prone to aberrantly mature into solid-like droplets. RNAs are involved in the maturation of physiological and pathological RNA granules and are essential for governing the fate of phase-transition processes. Notably, RNA G-quadruplex (G4RNA), which is the secondary structure of nucleic acids that are formed in guanine-rich sequences, appears to be an advantageous scaffold for RNA-derived phase separation because of its multivalent interactions with RNAs and RNA-binding proteins. Here, we summarize the properties of RNA granules in physiological and pathological phase separation and discuss the potential roles of G4RNA in granules.

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