Fernando LOPES
Ingénieur de Recherche
fernando.lopes [at] mnhn.fr
October 2019 — Single molecule approaches of nucleic acids conformational changes. Methods vol. 169, , dir. {Elsevier} p. 1-2
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July 2007 — Nucleosome chiral transition under positive torsional stress in single chromatin fibers.. Molecular Cell vol. 27, n° 1, dir. {Elsevier} p. 135-47
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July 2011 — Chromatin topological transitions. Progress of Theoretical Physics Supplement vol. 191, , p. 30-39
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October 2014 — Auto-assembly of E. coli DsrA small noncoding RNA: Molecular characteristics and functional consequences. RNA Biology vol. 6, n° 4, dir. {Taylor \\& Francis} p. 434-445
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2014 — Relevance and limitations of crowding, fractal, and polymer models to describe nuclear architecture.. International Review of Cell and Molecular Biology vol. 307, , p. 443-79
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May 2018 — Locus specific engineering of tandem DNA repeats in the genome of Saccharomyces cerevisiae using CRISPR/Cas9 and overlapping oligonucleotides. Scientific Reports vol. 8, n° 1, dir. {Nature Publishing Group}
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2016 — 5’ to 3’ Unfolding Directionality of DNA Secondary Structures by Replication Protein A. Journal of Biological Chemistry vol. 291, n° 40, dir. {American Society for Biochemistry and Molecular Biology} p. 21246-21256
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October 2015 — Homology-directed repair in rodent zygotes using Cas9 and TALEN engineered proteins. Scientific Reports vol. 5, , dir. {Nature Publishing Group} p. 14410
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2015 — Effects of Hfq on the conformation and compaction of DNA. Nucleic Acids Research vol. 43, n° 8, dir. {Oxford University Press} p. 4332-4341
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June 2014 — Unique genome replication mechanism of the archaeal virus AFV1. Molecular Microbiology vol. 92, n° 6, dir. {Wiley} p. 1313-1325
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September 2007 — Interactions between conserved domains within homodimers in the BIG1, BIG2, and GBF1 Arf guanine nucleotide exchange factors.. Journal of Biological Chemistry vol. 282, n° 39, dir. {American Society for Biochemistry and Molecular Biology} p. 28834-42
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2021 — Folding and persistence times of intramolecular G-quadruplexes transiently embedded in a DNA duplex. Nucleic Acids Research , , dir. {Oxford University Press}
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February 2017 — Polypurine reverse-Hoogsteen (PPRH) oligonucleotides can form triplexes with their target sequences even under conditions where they fold into G-quadruplexes. Scientific Reports vol. 7, n° 1, dir. {Nature Publishing Group}
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2015 — RPA prevents G-rich structure formation at lagging- strand telomeres to allow maintenance of chromosome ends. EMBO Journal vol. 34, , dir. {EMBO Press} p. 1942-1958
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January 2011 — Conformational transition of DNA bound to Hfq probed by infrared spectroscopy.. Physical Chemistry Chemical Physics vol. 13, n° 3, dir. {Royal Society of Chemistry} p. 1222-9
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