Multiscale dynamics of the cell envelope of Shewanella putrefaciens as a response to pH change

被引:39
作者
Gaboriaud, Fabien
Dague, Etienne
Bailet, Sidney
Jorand, Frederic
Duval, Jerome
Thomas, Fabien
机构
[1] Univ Nancy 1, CNRS, UMR 7564, Lab Chim Phys & Microbiol Environm, F-54600 Villers Les Nancy, France
[2] Univ Geneva, CABE Analyt & Biophys Environm Chem, Ansermet, Switzerland
[3] CNRS, UMR 7569, INPL, Lab Environm & Mineral, F-54501 Vandoeuvre Les Nancy, France
关键词
Shewanella; AFM; MATH; adhesion; electrophoretic mobilities; soft particle theory;
D O I
10.1016/j.colsurfb.2006.04.017
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The bacterial surface properties of gram-negative Shewanella putrefaciens were characterized by microbial adhesion to hydrocarbons (MATH), adhesion to polystyrene dishes, and electrophoresis at different values of pH and ionic strength. The bacterial adhesion to these two apolar substrates shows significant variations according to pH and ionic strength. Such behavior could be partly explained by electrostatic repulsions between bacteria and the solid or liquid interface. However, a similar trend was also observed at rather high ionic strength where electrostatic interactions are supposed to be screened. The nanomechanical properties at pH 4 and 10 and at high ionic strength were investigated by using atomic force microscopy (AFM). The indentation curves revealed the presence of a polymeric external layer that swells and softens up with increasing pH. This suggests a concomitant increase of the water permeability and so did of the hydrophilicity of the bacterial surface. Such evolution of the bacterial envelope in response to changes in pH brings new insight to the pH dependence in the bacterial adhesion tests. It especially demonstrates the necessity to consider the hydrophobic/hydrophilic surface properties of bacteria as not univocal for the various experimental conditions investigated. (C) 2006 Elsevier B.V. All rights reserved.
引用
收藏
页码:108 / 116
页数:9
相关论文
共 34 条
[1]   Probing microbial cell surface charges by atomic force microscopy [J].
Ahimou, F ;
Denis, FA ;
Touhami, A ;
Dufrêne, YF .
LANGMUIR, 2002, 18 (25) :9937-9941
[2]   Microbial adhesion to solvents: A novel method to determine the electron-donor/electron-acceptor or Lewis acid-base properties of microbial cells [J].
BellonFontaine, MN ;
Rault, J ;
vanOss, CJ .
COLLOIDS AND SURFACES B-BIOINTERFACES, 1996, 7 (1-2) :47-53
[3]   SURFACE-LAYERS OF BACTERIA [J].
BEVERIDGE, TJ ;
GRAHAM, LL .
MICROBIOLOGICAL REVIEWS, 1991, 55 (04) :684-705
[4]   Structures of gram-negative cell walls and their derived membrane vesicles [J].
Beveridge, TJ .
JOURNAL OF BACTERIOLOGY, 1999, 181 (16) :4725-4733
[5]   Physico-chemistry of initial microbial adhesive interactions - its mechanisms and methods for study [J].
Bos, R ;
van der Mei, HC ;
Busscher, HJ .
FEMS MICROBIOLOGY REVIEWS, 1999, 23 (02) :179-230
[6]   Surfactant-free "Emulsions" generated by freeze-thaw [J].
Burnett, GR ;
Atkin, R ;
Hicks, S ;
Eastoe, J .
LANGMUIR, 2004, 20 (14) :5673-5678
[7]   IMPLICATIONS OF MICROBIAL ADHESION TO HYDROCARBONS FOR EVALUATING CELL-SURFACE HYDROPHOBICITY .1. ZETA-POTENTIALS OF HYDROCARBON DROPLETS [J].
BUSSCHER, HJ ;
VANDEBELTGRITTER, B ;
VANDERMEI, HC .
COLLOIDS AND SURFACES B-BIOINTERFACES, 1995, 5 (3-4) :111-116
[8]   Probing surface structures of Shewanella spp. by microelectrophoresis [J].
Dague, E ;
Duval, J ;
Jorand, R ;
Thomas, F ;
Gaboriaud, F .
BIOPHYSICAL JOURNAL, 2006, 90 (07) :2612-2621
[9]   DIRECT MEASUREMENT OF COLLOIDAL FORCES USING AN ATOMIC FORCE MICROSCOPE [J].
DUCKER, WA ;
SENDEN, TJ ;
PASHLEY, RM .
NATURE, 1991, 353 (6341) :239-241
[10]   Using nanotechniques to explore microbial surfaces [J].
Dufrêne, YF .
NATURE REVIEWS MICROBIOLOGY, 2004, 2 (06) :451-460