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Dive into the research topics where Sophie Péron is active.

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Featured researches published by Sophie Péron.


Journal of Experimental Medicine | 2008

Human PMS2 deficiency is associated with impaired immunoglobulin class switch recombination

Sophie Péron; Ayse Metin; Pauline Gardès; Marie-Alexandra Alyanakian; Eamonn Sheridan; Christian Peter Kratz; Alain Fischer; Anne Durandy

Immunoglobulin (Ig) class switch recombination (CSR) deficiencies are rare primary immunodeficiencies characterized by the lack of switched isotype (IgG/IgA/IgE) production. In some cases, CSR deficiencies can be associated with abnormal somatic hypermutation. Analysis of CSR deficiencies has helped reveal the key functions of CSR-triggering molecules, i.e., CD40L, CD40, and effector molecules such as activation-induced cytidine deaminase and uracil N-glycosylase. We report a new form of B cell–intrinsic CSR deficiency found in three patients with deleterious, homozygous mutations in the gene encoding the PMS2 component of the mismatch repair machinery. CSR was found partially defective in vivo and markedly impaired in vitro. It is characterized by the defective occurrence of double-strand DNA breaks (DSBs) in switch regions and abnormal formation of switch junctions. This observation strongly suggests a role for PMS2 in CSR-induced DSB generation.


Journal of Experimental Medicine | 2007

A primary immunodeficiency characterized by defective immunoglobulin class switch recombination and impaired DNA repair

Sophie Péron; Qiang Pan-Hammarström; Kohsuke Imai; Likun Du; Nadine Taubenheim; Ozden Sanal; László Maródi; Anne Bergelin-Besançon; Malika Benkerrou; Jean-Pierre de Villartay; Alain Fischer; Patrick Revy; Anne Durandy

Immunoglobulin class switch recombination (CSR) deficiencies are rare primary immunodeficiencies, characterized by a lack of switched isotype (IgG, IgA, or IgE) production, variably associated with abnormal somatic hypermutation (SHM). Deficiencies in CD40 ligand, CD40, activation-induced cytidine deaminase, and uracil-N-glycosylase may account for this syndrome. We previously described another Ig CSR deficiency condition, characterized by a defect in CSR downstream of the generation of double-stranded DNA breaks in switch (S) μ regions. Further analysis performed with the cells of five affected patients showed that the Ig CSR deficiency was associated with an abnormal formation of the S junctions characterized by microhomology and with increased cell radiosensitivity. In addition, SHM was skewed toward transitions at G/C residues. Overall, these findings suggest that a unique Ig CSR deficiency phenotype could be related to an as-yet-uncharacterized defect in a DNA repair pathway involved in both CSR and SHM events.


Molecular and Cellular Biology | 2012

Cross talk between immunoglobulin heavy-chain transcription and RNA surveillance during B cell development.

Aurélien Tinguely; Guillaume Chemin; Sophie Péron; Christophe Sirac; Stéphane Reynaud; Michel Cogné; Laurent Delpy

ABSTRACT Immunoglobulin (Ig) genes naturally acquire frequent premature termination codons during the error-prone V(D)J recombination process. Although B cell differentiation is linked to the expression of productive Ig alleles, the transcriptional status of nonfunctionally recombined alleles remains unclear. Here, we tracked transcription and posttranscriptional regulation for both Ig heavy-chain (IgH) alleles in mice carrying a nonfunctional knock-in allele. We show that productively and nonproductively VDJ-rearranged alleles are transcribed throughout B cell development, carry similar active chromatin marks, and even display equivalent RNA polymerase II (RNAPII) loading after B cell stimulation. Hence, these results challenge the idea that the repositioning of one allele to heterochromatin could promote the silencing of nonproductive alleles. Interestingly, the efficiency of downstream RNA surveillance mechanisms fluctuates according to B cell activation and terminal differentiation: unspliced nonfunctional transcripts accumulate in primary B cells, while B cell activation promotes IgH transcription, RNA splicing, and nonsense-mediated mRNA decay (NMD). Altogether, IgH transcription and RNA splicing rates determine by which RNA surveillance mechanisms a B cell can get rid of nonproductive IgH mRNAs.


Journal of Immunology | 2017

CSReport: A New Computational Tool Designed for Automatic Analysis of Class Switch Recombination Junctions Sequenced by High-Throughput Sequencing.

François Boyer; Hend Boutouil; Iman Dalloul; Zeinab Dalloul; Jeanne Cook-Moreau; Jean-Claude Aldigier; Claire Carrion; Bastien Herve; Erwan Scaon; Michel Cogné; Sophie Péron

B cells ensure humoral immune responses due to the production of Ag-specific memory B cells and Ab-secreting plasma cells. In secondary lymphoid organs, Ag-driven B cell activation induces terminal maturation and Ig isotype class switch (class switch recombination [CSR]). CSR creates a virtually unique IgH locus in every B cell clone by intrachromosomal recombination between two switch (S) regions upstream of each C region gene. Amount and structural features of CSR junctions reveal valuable information about the CSR mechanism, and analysis of CSR junctions is useful in basic and clinical research studies of B cell functions. To provide an automated tool able to analyze large data sets of CSR junction sequences produced by high-throughput sequencing (HTS), we designed CSReport, a software program dedicated to support analysis of CSR recombination junctions sequenced with a HTS-based protocol (Ion Torrent technology). CSReport was assessed using simulated data sets of CSR junctions and then used for analysis of Sμ-Sα and Sμ-Sγ1 junctions from CH12F3 cells and primary murine B cells, respectively. CSReport identifies junction segment breakpoints on reference sequences and junction structure (blunt-ended junctions or junctions with insertions or microhomology). Besides the ability to analyze unprecedentedly large libraries of junction sequences, CSReport will provide a unified framework for CSR junction studies. Our results show that CSReport is an accurate tool for analysis of sequences from our HTS-based protocol for CSR junctions, thereby facilitating and accelerating their study.


Journal of Experimental Medicine | 2016

A plasma cell differentiation quality control ablates B cell clones with biallelic Ig rearrangements and truncated Ig production

Nivine Srour; Guillaume Chemin; Aurélien Tinguely; Mohamad Omar Ashi; Zeliha Oruc; Sophie Péron; Christophe Sirac; Michel Cogné; Laurent Delpy

Srour et al. identify a quality control, truncated Ig exclusion checkpoint dampening terminal plasma cell differentiation by eliminating cells expressing nonfunctionally rearranged Igκ alleles


Oncotarget | 2018

PAX5A and PAX5B isoforms are both efficient to drive B cell differentiation

Charlotte Cresson; Sophie Péron; Laura Jamrog; Nelly Rouquié; Naïs Prade; Marine Dubois; Sylvie Hébrard; Stéphanie Lagarde; Bastien Gerby; Stéphane J. C. Mancini; Michel Cogné; Eric Delabesse; Laurent Delpy; Cyril Broccardo

Pax5 is the guardian of the B cell identity since it primes or enhances the expression of B cell specific genes and concomitantly represses the expression of B cell inappropriate genes. The tight regulation of Pax5 is therefore required for an efficient B cell differentiation. A defect in its dosage can translate into immunodeficiency or malignant disorders such as leukemia or lymphoma. Pax5 is expressed from two different promoters encoding two isoforms that only differ in the sequence of their first alternative exon. Very little is known regarding the role of the two isoforms during B cell differentiation and the regulation of their expression. Our work aims to characterize the mechanisms of regulation of the expression balance of these two isoforms and their implication in the B cell differentiation process using murine ex vivo analyses. We show that these two isoforms are differentially regulated but have equivalent function during early B cell differentiation and may have functional differences after B cell activation. The tight control of their expression may thus reflect a way to finely tune Pax5 dosage during B cell differentiation process.


Advances in Immunology | 2011

The IgH locus 3' regulatory region: pulling the strings from behind.

Eric Pinaud; Marie Marquet; Rémi Fiancette; Sophie Péron; Christelle Vincent-Fabert; Yves Denizot; Michel Cogné


Science | 2012

AID-Driven Deletion Causes Immunoglobulin Heavy Chain Locus Suicide Recombination in B Cells

Sophie Péron; Brice Laffleur; Nicolas Denis-Lagache; Jeanne Cook-Moreau; Aurélien Tinguely; Laurent Delpy; Yves Denizot; Eric Pinaud; Michel Cogné


Israel Medical Association Journal | 2007

Ataxia-telangiectasia in twins presenting as autosomal recessive hyper-immunoglobulin M syndrome.

Amos Etzioni; Ayelet Ben-Barak; Sophie Péron; Anne Durandy


Oncotarget | 2014

AID-induced remodeling of immunoglobulin genes and B cell fate

Brice Laffleur; Nicolas Denis-Lagache; Sophie Péron; Christophe Sirac; Jeanne Moreau; Michel Cogné

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Michel Cogné

Centre national de la recherche scientifique

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Laurent Delpy

Centre national de la recherche scientifique

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Aurélien Tinguely

Centre national de la recherche scientifique

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Eric Pinaud

Centre national de la recherche scientifique

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Guillaume Chemin

Centre national de la recherche scientifique

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Nicolas Denis-Lagache

Centre national de la recherche scientifique

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Yves Denizot

Centre national de la recherche scientifique

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Christelle Vincent-Fabert

Centre national de la recherche scientifique

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François Boyer

Centre national de la recherche scientifique

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