Biomolecular condensation in nuclear organization and function
Biomolecular condensation in nuclear organization and function
Biomolecular condensates are cellular compartments that are not membrane-bound, but are, instead, dynamically self-assembling and self-maintaining within the crowded cellular context. Selective accumulation of proteins and nucleic acids within these liquid-like assemblies gives rise to local environments capable of modulating macromolecular interactions and chemical reactivity in the absence of physical borders. These properties have been demonstrated for the essential cellular compartments involved in genome organization and maintenance, such as heterochromatin domains and mitotic chromosomes, and also for the organelles involved in gene expression, such as nucleoli, transcription factories and nuclear bodies. We combine techniques of correlative optic and electron microscopy to localize target condensates in the nuclear context and in situ cryo-electron tomography to determine their molecular organization. Our current research aims to decipher structural mechanisms for the establishment of constitutive heterochromatin, transcriptionally repressed and essential for the maintenance of genomic integrity and for the defence against endogenous retroviruses and transposons. Our chromatin research will be further broadened to the exploration of chromosome rearrangement throughout the cell cycle, and particularly, to the role of condensin complexes in chromosome shaping. Upon establishing high-resolution correlative workflows, we plan to develop complementary projects on biomolecular condensates related to transcription and RNA processing.
Members
Researchers
Engineers
Publications
2015
Chapter of the book
Insect Cells–Baculovirus System for the Production of Difficult to Express Proteins
- Judit Osz-Papai
- Laura Radu
- Wassim Abdulrahman
- Isabelle Kolb-Cheynel
- Nathalie Troffer-Charlier
- Catherine Birck
- A. Poterszman
Insoluble Proteins ; Volume: 1258 ; Page: 181-205
Article in a journal
Functional insights from high resolution structures of mouse protein arginine methyltransferase 6
- Luc Bonnefond
- J Stojko
- Justine Mailliot
- Nathalie Troffer-Charlier
- Vincent Cura
- Jean-Marie Wurtz
- S Cianferani
- Jean Cavarelli
Journal of Structural Biology ; Volume: 191 ; Page: 175-183
2014
Article in a journal
Structural insight into arginine methylation by the mouse protein arginine methyltransferase 7: a zinc finger freezes the mimic of the dimeric state into a single active site
- Vincent Cura
- Nathalie Troffer-Charlier
- Jean-Marie Wurtz
- Luc Bonnefond
- Jean Cavarelli
Acta Crystallographica Section D: Biological Crystallography ; Volume: 70 ; Page: 2401-2412
Article in a journal
Cloning, expression, purification and preliminary X-ray crystallographic analysis of mouse protein arginine methyltransferase 7
- Vincent Cura
- Nathalie Troffer-Charlier
- Marie-Annick Lambert
- Luc Bonnefond
- Jean Cavarelli
Acta crystallographica Section F : Structural biology communications [2014-...] ; Volume: 70 ; Page: 80-86
2012
Article in a journal
Expression of functional full-length hSRC-1 in eukaryotic cells using modified vaccinia virus Ankara and baculovirus
- Judit Osz
- Karine Pradeau-Aubreton
- Robert Drillien
- Nathalie Troffer-Charlier
- Isabelle Kolb-Cheynel
- Arnaud Poterszman
- Marc Ruff
- Dino Moras
- Natacha Rochel
Analytical Biochemistry ; Volume: 426 ; Page: 106-108
2007
Article in a journal
Functional insights from structures of coactivator-associated arginine methyltransferase 1 domains.
- Nathalie Troffer-Charlier
- Vincent Cura
- Pierre Hassenboehler
- Dino Moras
- Jean Cavarelli
EMBO Journal ; Volume: 26 ; Page: 4391-401
Article in a journal
Expression, purification, crystallization and preliminary crystallographic study of isolated modules of the mouse coactivator-associated arginine methyltransferase 1.
- Nathalie Troffer-Charlier
- Vincent Cura
- Pierre Hassenboehler
- Dino Moras
- Jean Cavarelli
Acta crystallographica Section F : Structural biology communications [2014-...] ; Volume: 63 ; Page: 330-3
2005
Article in a journal
Inactivation of the peroxisomal ABCD2 transporter in the mouse leads to late-onset ataxia involving mitochondria, Golgi and endoplasmic reticulum damage.
- Isidre Ferrer
- Josef P Kapfhammer
- Colette Hindelang
- Stephan Kemp
- Nathalie Troffer-Charlier
- Vania Broccoli
- Noëlle Callyzot
- Petra Mooyer
- Jacqueline Selhorst
- Peter Vreken
- Ronald J A Wanders
- Jean-Louis Mandel
- Aurora Pujol
Human Molecular Genetics ; Volume: 14 ; Page: 3565-77
2000
Article in a journal
Characterization of the adrenoleukodystrophy-related (ALDR, ABCD2) gene promoter: inductibility by retinoic acid and forskolin
- Aurora Pujol
- Nathalie Troffer-Charlier
- Elisabeth Metzger
- Giovanna Chimini
- Jean-Louis Mandel
Genomics ; Volume: 70 ; Page: 131-139
Article in a journal
TNF-alpha release by monocytic THP-1 cells through cross-linking of the extended V-region of the oral streptococcal protein I/II
- Christian Chatenay-Rivauday
- Innocent Yamodo
- Michel-Angelo Sciotti
- Nathalie Troffer-Charlier
- Jean-Paul Klein
- Joelle A. Ogier
Journal of Leukocyte Biology ; Volume: 67 ; Page: 81-89
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