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Hervé Seligmann
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2020 – today
- 2022
- [j27]Jacques Demongeot, Hervé Seligmann:
Evolution of small and large ribosomal RNAs from accretion of tRNA subelements. Biosyst. 222: 104796 (2022) - 2021
- [j26]Jacques Demongeot, Kayode Oshinubi, Mustapha Rachdi, Hervé Seligmann, Florence Thuderoz, Jules Waku:
Estimation of Daily Reproduction Numbers during the COVID-19 Outbreak. Comput. 9(10): 109 (2021) - 2020
- [j25]Jacques Demongeot, Hervé Seligmann:
Deamination gradients within codons after 12 position swap predict amino acid hydrophobicity and parallel β-sheet conformational preference. Biosyst. 191-192: 104116 (2020) - [j24]Hervé Seligmann, Ganesh Warthi:
Natural pyrrolysine-biased translation of stop codons in mitochondrial peptides entirely coded by expanded codons. Biosyst. 196: 104180 (2020)
2010 – 2019
- 2019
- [j23]Jacques Demongeot, Hervé Seligmann:
Bias for 3′-Dominant Codon Directional Asymmetry in Theoretical Minimal RNA Rings. J. Comput. Biol. 26(9): 1003-1012 (2019) - 2018
- [j22]Hervé Seligmann:
Alignment-based and alignment-free methods converge with experimental data on amino acids coded by stop codons at split between nuclear and mitochondrial genetic codes. Biosyst. 167: 33-46 (2018) - [j21]Hervé Seligmann:
Bijective codon transformations show genetic code symmetries centered on cytosine's coding properties. Theory Biosci. 137(1): 17-31 (2018) - 2017
- [j20]Hervé Seligmann:
Reviewing evidence for systematic transcriptional deletions, nucleotide exchanges, and expanded codons, and peptide clusters in human mitochondria. Biosyst. 160: 10-24 (2017) - 2016
- [j19]Hervé Seligmann:
Translation of mitochondrial swinger RNAs according to tri-, tetra- and pentacodons. Biosyst. 140: 38-48 (2016) - [j18]Hervé Seligmann:
Systematically frameshifting by deletion of every 4th or 4th and 5th nucleotides during mitochondrial transcription: RNA self-hybridization regulates delRNA expression. Biosyst. 142-143: 43-51 (2016) - [j17]Hervé Seligmann:
Natural chymotrypsin-like-cleaved human mitochondrial peptides confirm tetra-, pentacodon, non-canonical RNA translations. Biosyst. 147: 78-93 (2016) - [j16]Roxane-Marie Barthélémy, Hervé Seligmann:
Cryptic tRNAs in chaetognath mitochondrial genomes. Comput. Biol. Chem. 62: 119-132 (2016) - 2015
- [j15]Hervé Seligmann:
Phylogeny of genetic codes and punctuation codes within genetic codes. Biosyst. 129: 36-43 (2015) - [j14]Hervé Seligmann:
Swinger RNAs with sharp switches between regular transcription and transcription systematically exchanging ribonucleotides: Case studies. Biosyst. 135: 1-8 (2015) - 2014
- [j13]Christian J. Michel, Hervé Seligmann:
Bijective transformation circular codes and nucleotide exchanging RNA transcription. Biosyst. 118: 39-50 (2014) - [j12]Hervé Seligmann:
Mitochondrial swinger replication: DNA replication systematically exchanging nucleotides and short 16S ribosomal DNA swinger inserts. Biosyst. 125: 22-31 (2014) - 2013
- [j11]Hervé Seligmann:
Polymerization of non-complementary RNA: Systematic symmetric nucleotide exchanges mainly involving uracil produce mitochondrial RNA transcripts coding for cryptic overlapping genes. Biosyst. 111(3): 156-174 (2013) - [j10]Hervé Seligmann:
Pocketknife tRNA hypothesis: Anticodons in mammal mitochondrial tRNA side-arm loops translate proteins? Biosyst. 113(3): 165-176 (2013) - [j9]Hervé Seligmann, Antonieta Labra:
Tetracoding increases with body temperature in Lepidosauria. Biosyst. 114(3): 155-163 (2013) - [j8]Hervé Seligmann:
Triplex DNA: RNA, 3′-to-5′ Inverted RNA and Protein Coding in Mitochondrial Genomes. J. Comput. Biol. 20(9): 660-671 (2013) - 2012
- [j7]Hervé Seligmann:
Putative mitochondrial polypeptides coded by expanded quadruplet codons, decoded by antisense tRNAs with unusual anticodons. Biosyst. 110(2): 84-106 (2012) - [j6]Hervé Seligmann:
Overlapping genetic codes for overlapping frameshifted genes in Testudines, and Lepidochelys olivacea as special case. Comput. Biol. Chem. 41: 18-34 (2012) - 2011
- [j5]Hervé Seligmann:
Two genetic codes, one genome: Frameshifted primate mitochondrial genes code for additional proteins in presence of antisense antitermination tRNAs. Biosyst. 105(3): 271-285 (2011) - [j4]Hervé Seligmann:
Error compensation of tRNA misacylation by codon-anticodon mismatch prevents translational amino acid misinsertion. Comput. Biol. Chem. 35(2): 81-95 (2011) - 2010
- [j3]Hervé Seligmann:
Mitochondrial tRNAs as light strand replication origins: Similarity between anticodon loops and the loop of the light strand replication origin predicts initiation of DNA replication. Biosyst. 99(2): 85-93 (2010) - [j2]Hervé Seligmann:
Avoidance of antisense, antiterminator tRNA anticodons in vertebrate mitochondria. Biosyst. 101(1): 42-50 (2010) - [j1]Hervé Seligmann:
The ambush hypothesis at the whole-organism level: Off frame, 'hidden' stops in vertebrate mitochondrial genes increase developmental stability. Comput. Biol. Chem. 34(2): 80-85 (2010)
Coauthor Index
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