A Major Outer Membrane Protein of Rahnella aquatilis Functions as a Porin and Root Adhesin

Author:

Achouak Wafa1,Pages Jean-Marie2,De Mot Rene3,Molle Gerard4,Heulin Thierry1

Affiliation:

1. Laboratoire d’Ecologie Microbienne de la Rhizosphère, DSV-DEVM, UMR 163 CNRS-CEA, CEA Cadarache, F-13108 Saint Paul lez Durance,1

2. INSERM CJF 9606, Enveloppe Bactérienne, Antibiotiques et Colonisation, Faculté de Médecine, F-13385 Marseille Cedex 5,2 and

3. F. A. Janssens Laboratory of Genetics, Katolieke Universiteit Leuven, B-3001 Heverlee, Belgium3

4. UMR 6522 CNRS IFRMP 23, Faculté des Sciences de Rouen, F-76821 Mont-Saint Aignan Cedex,4 France, and

Abstract

ABSTRACT A 38-kDa major outer membrane protein (OMP) was isolated from the nitrogen-fixing enterobacterium Rahnella aquatilis CF3. This protein exists as a stable trimer in the presence of 2% sodium dodecyl sulfate at temperatures below 60°C. Single channel experiments showed that this major OMP of R. aquatilis CF3 is able to form pores in the planar lipid membrane. Two oligonucleotides encoding the N-terminal portion of the 38-kDa OMP and C-terminal portion of OmpC were used to amplify the 38-kDa gene by PCR. The deduced amino acid sequence showed a strong homology with Escherichia coli , Klebsiella pneumoniae , Salmonella typhi , and Serratia marcescens OmpC sequences, except loops L6 and L7, which are postulated to be cell surface exposed. On the basis of the OmpF-PhoE three-dimensional structure, it seems likely that this 38-kDa organizes three 16-strand β-barrel subunits. The relationship between the structure and the double functionality of this protein as porin and as a root adhesin is discussed.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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