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Surface plasmon resonance imaging reveals multiple binding modes of Agrobacterium transformation mediator VirE2 to ssDNA

Authors :
Claude Nogues
Malcolm Buckle
Hervé Leh
Michael Elbaum
David Zbaida
Sanghyun Kim
Seoul National University [Seoul] (SNU)
Department of Materials and Interfaces [Rehovot, Israël]
Weizmann Institute of Science [Rehovot, Israël]
Centre du Médicament [Nancy]
Université Henri Poincaré - Nancy 1 (UHP)
Laboratoire de Biologie et de Pharmacologie Appliquée (LBPA)
École normale supérieure - Cachan (ENS Cachan)-Centre National de la Recherche Scientifique (CNRS)
Source :
Nucleic Acids Research, Nucleic Acids Research, Oxford University Press, 2014, ⟨10.1093/nar/gkv571⟩
Publication Year :
2015

Abstract

International audience; VirE2 is the major secreted protein of Agrobacterium tumefaciens in its genetic transformation of plant hosts. It is co-expressed with a small acidic chaperone VirE1, which prevents VirE2 oligomerization. After secretion into the host cell, VirE2 serves functions similar to a viral capsid in protecting the single-stranded transferred DNA en route to the nucleus. Binding of VirE2 to ssDNA is strongly cooperative and depends moreover on protein-protein interactions. In order to isolate the protein-DNA interactions , imaging surface plasmon resonance (SPRi) studies were conducted using surface-immobilized DNA substrates of length comparable to the protein-binding footprint. Binding curves revealed an important influence of substrate rigidity with a notable preference for poly-T sequences and absence of binding to both poly-A and double-stranded DNA fragments. Dissociation at high salt concentration confirmed the electrostatic nature of the interaction. VirE1-VirE2 heterodimers also bound to ssDNA, though by a different mechanism that was insensitive to high salt. Neither VirE2 nor VirE1-VirE2 followed the Lang-muir isotherm expected for reversible monomeric binding. The differences reflect the cooperative self-interactions of VirE2 that are suppressed by VirE1.

Details

ISSN :
13624962 and 03051048
Volume :
43
Issue :
13
Database :
OpenAIRE
Journal :
Nucleic acids research
Accession number :
edsair.doi.dedup.....6656efe0e23263571a5ee713ab0f90c5