Modulation of i-motif thermodynamic stability by the introduction of UNA (unlocked nucleic acid) monomers
Author:
Publisher
Elsevier BV
Subject
Organic Chemistry,Clinical Biochemistry,Drug Discovery,Pharmaceutical Science,Molecular Biology,Molecular Medicine,Biochemistry
Reference37 articles.
1. The i-motif in nucleic acids
2. i-Motif Formation with Locked Nucleic Acid (LNA)
3. Participation of yeast inosine 5′-monophosphate dehydrogenase in an in vitro complex with a fragment of the C-rich telomeric strand
4. Structural transition from dimeric to tetrameric i-motif, caused by the presence of TAA at the 3â²-end of human telomeric C-rich sequence
5. pH-Dependent Assembly of DNA–Gold Nanoparticles Based on the i-Motif: A Switchable Device with the Potential of a Nanomachine
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1. i-Motif DNA: identification, formation, and cellular functions;Trends in Genetics;2024-06
2. Modulation of the tetrameric I-motif folding of C-rich Tetrahymena telomeric sequences by hexitol nucleic acid (HNA) modifications;Biochimie;2023-11
3. Methods to Improve the Stability of Nucleic Acid-Based Nanomaterials;Current Drug Metabolism;2023-05
4. Ratiometric i-Motif-Based Sensor for Precise Long-Term Monitoring of pH Micro Alterations in the Nucleoplasm and Interchromatin Granules;ACS Sensors;2023-01-20
5. Acyclic Nucleic Acids with Phosphodiester Linkages—Synthesis, Properties and Potential Applications;Applied Sciences;2021-12-20
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