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Dive into the research topics where Dominique Lancelin is active.

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Featured researches published by Dominique Lancelin.


Molecular Genetics and Genomics | 1992

Sequence and transcript analysis of the Nco2.5 Ogura-specific fragment correlated with cytoplasmic male sterility in Brassica cybrids.

Sandrine Bonhomme; Françoise Budar; Dominique Lancelin; Ian Small; Marie-Christine Defrance; Georges Pelletier

SummarySequence analysis of the Ogura-specific mitochondria) DNA (mtDNA) fragment isolated previously from Brassica cybrids carrying Ogura cytoplasmic male sterility (cms) revealed a tRNAfMet sequence, a putative 138 amino acid open reading frame (orf138), and a 158 amino acid ORF (orf158) previously observed in mitochondria) genomes from several other plant species. Transcription mapping showed that both ORFs are present on a 1.4 kb cms-specific transcript. The orf158 sequence is also transcribed in fertile plants on a different mRNA, and thus is unlikely to be related to cms. On the other hand, fertile revertant plants lack transcripts of the orf138 sequence, whose possible role in the mechanism of Ogura cms is discussed.


Journal of Molecular Evolution | 2000

Duplication and Quadruplication of Arabidopsis thaliana Cysteinyl- and Asparaginyl-tRNA Synthetase Genes of Organellar Origin

Nemo Peeters; Anne Chapron; Anatoli Giritch; Olivier Grandjean; Dominique Lancelin; Tatiana Lhomme; Arnaud Vivrel; Ian Small

Abstract. Two cysteinyl-tRNA synthetases (CysRS) and four asparaginyl-tRNA synthetases (AsnRS) from Arabidopsis thaliana were characterized from genome sequence data, EST sequences, and RACE sequences. For one CysRS and one AsnRS, sequence alignments and prediction programs suggested the presence of an N-terminal organellar targeting peptide. Transient expression of these putative targeting sequences joined to jellyfish green fluorescent protein (GFP) demonstrated that both presequences can efficiently dual-target GFP to mitochondria and plastids. The other CysRS and AsnRSs lack targeting sequences and presumably aminoacylate cytosolic tRNAs. Phylogenetic analysis suggests that the four AsnRSs evolved by repeated duplication of a gene transferred from an ancestral plastid and that the CysRSs also arose by duplication of a transferred organelle gene (possibly mitochondrial). These case histories are the best examples to date of capture of organellar aminoacyl-tRNA synthetases by the cytosolic protein synthesis machinery.


The Plant Cell | 1996

The same Arabidopsis gene encodes both cytosolic and mitochondrial alanyl-tRNA synthetases.

Hakim Mireau; Dominique Lancelin; Ian Small

In plants, all aminoacyl-tRNA synthetases are nuclearly encoded, despite the fact that their activities are required in the three protein-synthesizing cell compartments (cytosol, mitochondria, and chloroplasts). To investigate targeting of these enzymes, we cloned cDNAs encoding alanyl-tRNA synthetase (AlaRS) and the corresponding nuclear gene, ALATS, from Arabidopsis by using degenerate polymerase chain reaction primers based on highly conserved regions shared between known AlaRSs from other organisms. Analysis of the transcription of the gene showed the presence of two potential translation initiation codons in some ALATS mRNAs. Translation from the upstream AUG would generate an N-terminal extension with features characteristic of mitochondrial targeting peptides. A polyclonal antibody raised against part of the Arabidopsis AlaRS revealed that the Arabidopsis cytosolic and mitochondrial AlaRSs are immunologically similar, suggesting that both isoforms are encoded by the ALATS gene. In vitro experiments confirmed that two polypeptides can be translated from AlATS transcripts, with most ribosomes initiating on the downstream AUG to give the shorter polypeptide corresponding in size to the cytosolic enzyme. The ability of the presequence encoded between the two initiation codons to direct polypeptides to mitochondria was demonstrated by expression of fusion proteins in tobacco protoplasts and in yeast. We conclude that the ALATS gene encodes both the cytosolic and the mitochondrial forms of AlaRS, depending on which of the two AUG codons is used to initiate translation.


Archive | 1991

Dna sequence imparting cytoplasmic male sterility, mitochondrial genome, nuclear genome, mitochondria and plant containing said sequence and process for the preparation of hybrids

Sandrine Bonhomme; Fran Cedilla Oise Budar; Dominique Lancelin; Georges Pelletier


Proceedings of the National Academy of Sciences of the United States of America | 2005

Dual targeting is the rule for organellar aminoacyl-tRNA synthetases in Arabidopsis thaliana

Anne-Marie Duchêne; Anatoli Giritch; Beate Hoffmann; Valérie Cognat; Dominique Lancelin; Nemo Peeters; Marlyse Zaepfel; Laurence Maréchal-Drouard; Ian Small


Journal of Heredity | 1999

The strange evolutionary history of plant mitochondrial tRNAs and their aminoacyl-tRNA synthetases

Ian Small; Kinya Akashi; A. Chapron; André Dietrich; Anne-Marie Duchêne; Dominique Lancelin; Laurence Maréchal-Drouard; Benoît Menand; Hakim Mireau; Y. Moudden; J. Ovesna; Nemo Peeters; Wataru Sakamoto; G. Souciet; H. Wintz


Acta Horticulturae | 1995

ENGINEERING OF CYTOPLASMIC MALE STERILITY IN VEGETABLES BY PROTOPLAST FUSION.

Georges Pelletier; Madina Férault; Dominique Lancelin; L. Boulidard; C. Doré; Sandrine Bonhomme; Mathilde Grelon; Françoise Budar


Archive | 1991

Sequence d'adn conferant une sterilite male cytoplasmique, genome mitochondrial, genome nucleaire, mitochondrie et plante contenant cette sequence, et procede de preparation d'hybrides

Sandrine Bonhomme; Françoise Budar; Dominique Lancelin; Georges Pelletier


Archive | 1991

Cytoplasmatische männliche Sterilität verleihende Dna-Sequenz, mitochondriales Genom, nukleäres Genom, Mitochondrien und diese Sequenz enthaltende Pflanze, und Verfahren zur Herstellung von Hybriden

Sandrine Bonhomme; Françoise Budar; Dominique Lancelin; Georges Pelletier


Archive | 1991

Cytoplasmische männliche sterilität verleihende dna-sequenz, mitochondriales genom, nukleares genom, mitochondrie und diese sequenz enthaltende pflanze Cytoplasmic male sterility conferring dna sequence, mitochondrial genome, nuclear genome, mitochondria and this sequence containing plant

Sandrine Bonhomme; Françoise Budar; Dominique Lancelin; Georges Pelletier

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Georges Pelletier

Institut national de la recherche agronomique

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Sandrine Bonhomme

Institut national de la recherche agronomique

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Françoise Budar

Institut national de la recherche agronomique

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Ian Small

University of Western Australia

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Nemo Peeters

Institut national de la recherche agronomique

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Anatoli Giritch

Institut national de la recherche agronomique

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Hakim Mireau

Institut national de la recherche agronomique

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A. Chapron

Institut national de la recherche agronomique

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