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Structure and Function of Multimeric G-Quadruplexes
S. Kolesnikova, EA. Curtis,
Language English Country Switzerland
Document type Journal Article, Review
Grant support
CZ.02.1.01/0.0/0.0/16_019/0000729
European Regional Development Fund
NLK
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- MeSH
- DNA chemistry MeSH
- G-Quadruplexes * MeSH
- Nucleic Acid Conformation * MeSH
- Models, Molecular MeSH
- Molecular Structure MeSH
- RNA chemistry MeSH
- Telomere MeSH
- Structure-Activity Relationship MeSH
- Publication type
- Journal Article MeSH
- Review MeSH
G-quadruplexes are noncanonical nucleic acid structures formed from stacked guanine tetrads. They are frequently used as building blocks and functional elements in fields such as synthetic biology and also thought to play widespread biological roles. G-quadruplexes are often studied as monomers, but can also form a variety of higher-order structures. This increases the structural and functional diversity of G-quadruplexes, and recent evidence suggests that it could also be biologically important. In this review, we describe the types of multimeric topologies adopted by G-quadruplexes and highlight what is known about their sequence requirements. We also summarize the limited information available about potential biological roles of multimeric G-quadruplexes and suggest new approaches that could facilitate future studies of these structures.
References provided by Crossref.org
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- $a G-quadruplexes are noncanonical nucleic acid structures formed from stacked guanine tetrads. They are frequently used as building blocks and functional elements in fields such as synthetic biology and also thought to play widespread biological roles. G-quadruplexes are often studied as monomers, but can also form a variety of higher-order structures. This increases the structural and functional diversity of G-quadruplexes, and recent evidence suggests that it could also be biologically important. In this review, we describe the types of multimeric topologies adopted by G-quadruplexes and highlight what is known about their sequence requirements. We also summarize the limited information available about potential biological roles of multimeric G-quadruplexes and suggest new approaches that could facilitate future studies of these structures.
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