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Journal of Bacteriology, October 2001, p. 5668-5674, Vol. 183, No. 19
Wood Research Institute, Kyoto University,
Uji, Kyoto 611-0011, Japan,1 and Section
of Molecular Genetics and Microbiology, School of Biological Sciences,
The University of Texas at Austin, Austin, Texas
787122
Received 5 April 2001/Accepted 29 June 2001
Specific labeling of a single row of cellulose-synthesizing
complexes (terminal complexes, TC subunits, TCs, or TC arrays) in
Acetobacter xylinum by antibodies raised against a 93-kDa
protein (the cyclic dignanylic acid-binding protein) has been
demonstrated by using the sodium dodecyl sulfate (SDS)-freeze-fracture
labeling (FRL) technique. The antibodies to the 93-kDa protein
specifically recognized the TC subunits on the protoplasmic fracture
(PF) face of the outer membrane in A. xylinum; however,
nonlabeled TCs were also observed. Two types of TC subunits (particles
or pits) are observed on the PF face of the outer membrane: (i)
immunogold-labeled TCs showing a line of depressions (pits) with an
indistinct particle array and (ii) nonlabeled TC subunits with a
distinct single row of particle arrays. The evidence indicates that the
labeling patterns differ with respect to the presence or absence of
certain TC subunits remaining attached to the replica after SDS
treatment. This suggests the presence of at least two TC components,
one in the outer membrane and the other in the cytoplasmic membrane. If
the TC component in the outer membrane is preferentially fractured and
remains attached to the ectoplasmic fracture face (or outer leaflet) of the outer membrane, subsequent replica formation reveals a pit or
depression with positive antibody labeling on the PF face of the outer
membrane. If the TC component in the outer membrane remains with the PF
face (or inner leaflet) of the outer membrane, the innermost TC
component is removed during SDS treatment and labeling does not occur.
SDS-FRL of TCs in A. xylinum has enabled us to provide the
first topological molecular analysis of component proteins in a
cellulose-synthesizing TC structure in a prokaryotic organism.
0021-9193/01/$04.00+0 DOI: 10.1128/JB.183.19.5668-5674.2001
Copyright © 2001, American Society for Microbiology. All rights reserved.
Localization of c-di-GMP-Binding Protein with the
Linear Terminal Complexes of Acetobacter xylinum
*
Corresponding author. Mailing address: Wood Research
Institute, Kyoto University, Uji, Kyoto 611-0011, Japan. Phone: 81 (774) 38-3631. Fax: 81 (774) 38-3635. E-mail:
titoh{at}kuwri.kyoto-u.ac.jp.
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