New insight into the structure and function of Hfq C-terminus

Author:

Fortas Emilie12,Piccirilli Federica3,Malabirade Antoine124,Militello Valeria3,Trépout Sylvain56,Marco Sergio56,Taghbalout Aziz7,Arluison Véronique128

Affiliation:

1. Laboratoire Léon Brillouin, CEA–Centre de Saclay, 91191 Gif-sur-Yvette, France

2. UMR 12 CEA/CNRS, 91191 Gif-sur-Yvette, France

3. Department of Physics and Chemistry, University of Palermo, Viale delle Scienze, Ed. 18, 90128 Palermo, Italy

4. Université Paris Sud, 91405 Orsay Cedex, France

5. Institut Curie, Centre de Recherche, Campus Universitaire d'Orsay, bât 112, 91405 Orsay Cedex, France

6. INSERM U1196, Campus Universitaire d'Orsay, bât 112, 91405 Orsay Cedex, France

7. Department of Molecular Biology and Biophysics, University of Connecticut Health Center, 263 Farmington Avenue, Farmington, CT 06032, U.S.A.

8. *Univ Paris Diderot, Sorbone Paris Cité, 75013 Paris, France

Abstract

Accumulating evidence indicates that RNA metabolism components assemble into supramolecular cellular structures to mediate functional compartmentalization within the cytoplasmic membrane of the bacterial cell. This cellular compartmentalization could play important roles in the processes of RNA degradation and maturation. These components include Hfq, the RNA chaperone protein, which is involved in the post-transcriptional control of protein synthesis mainly by the virtue of its interactions with several small regulatory ncRNAs (sRNA). The Escherichia coli Hfq is structurally organized into two domains. An N-terminal domain that folds as strongly bent β-sheets within individual protomers to assemble into a typical toroidal hexameric ring. A C-terminal flexible domain that encompasses approximately one-third of the protein seems intrinsically unstructured. RNA-binding function of Hfq mainly lies within its N-terminal core, whereas the function of the flexible domain remains controversial and largely unknown. In the present study, we demonstrate that the Hfq-C-terminal region (CTR) has an intrinsic property to self-assemble into long amyloid-like fibrillar structures in vitro. We show that normal localization of Hfq within membrane-associated coiled structures in vivo requires this C-terminal domain. This finding establishes for the first time a function for the hitherto puzzling CTR, with a plausible central role in RNA transactions.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry,Biophysics

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