A Perspective on S-Layer Research | p. 3 |
Crystallographic Image Processing Applications for S-Layers | p. 13 |
Structures of Paracrystalline Protein Layers from the Hyperthermophilic Archaeobacterium Pyrobaculum | p. 23 |
S-Layers Found on Clinical Isolates | p. 33 |
A Common Structural Principle in the Surface Layers of the Archaeobacteria Haloferax, Halobacterium, and Archaeoglobus | p. 45 |
Crystalline Surface-Layers of the Genus Lactobacillus | p. 57 |
Ultrastructural and Chemical Characterization of a Cyanobacterial S-Layer Involved in Fine-Grain Mineral Formation | p. 67 |
Advances in S-Layer Research of Chroococcal Cyanobacteria | p. 77 |
Predation on Bacteria Possessing S-Layers | p. 85 |
Glycoprotein Nature of Select Bacterial S-Layers | p. 95 |
S-Layer Glycoproteins from Moderately and Extremely Halophilic Archaeobacteria | p. 109 |
The Unique Chemical Formats and Biosynthetic Pathways of Methanogenic Surfaces | p. 119 |
Paracrystalline Layers of Methanospirillum hungatei GP1 | p. 129 |
Structural and Functional Analysis of the S-Layer Protein from Bacillus stearothermophilus | p. 143 |
Structure-Function Aspects of the Aeromonas salmonicida S-Layer | p. 151 |
Molecular, Structural and Functional Properties of Aeromonas S-Layers | p. 159 |
Biology of Campylobacter fetus S-Layer Proteins | p. 173 |
Definition of Form and Function for the S-Layer of Caulobacter crescentus | p. 181 |
S-Layers as Immobilization and Affinity Matrices | p. 195 |
Molecular Nanotechnology with S-Layers | p. 205 |
Surface Layers from Bacillus alvei as a Carrier for Streptococcus pneumoniae Conjugate Vaccine | p. 219 |
Scale-up of S-Layer Protein Secretion by Bacillus brevis 47 | p. 235 |
Investigation of Lattice Surface Layers by Scanning Probe Microscopy | p. 243 |
Stable Liposomes Formed from Archaeal Ether Lipids | p. 257 |
Structural Analysis of the Paracrystalline Layer of Campylobacter fetus subsp. venerealis UA809 | p. 271 |
Effect of Triton X-100 on the S-Layer of Methanoculleus marisnigri | p. 277 |
Characterization of the S-Layer Glycoproteins of Two Lactobacilli | p. 281 |
Does the S-Layer of Aeromonas salmonicida Exist in More Than One Functional Organizational State? | p. 285 |
Attachment of the S-Layer of Caulobacter crescentus to the Cell Surface | p. 289 |
Linker Mutagenesis of the Caulobacter crescentus S-Layer Protein | p. 293 |
Can S-Layers of Bacillaceae Control the Release of Their Own Exoproteins? | p. 297 |
S-Layer of Bacillus stearothermophilus PV72 | p. 303 |
Role of a C-Terminal Domain in the Structure and Surface Anchoring of the Tetragonal S-Layer of Aeromonas hydrophila | p. 307 |
Identification and Characterization of an Aeromonas salmonicida Gene which Affects A-Protein Expression in Escherichia coli | p. 311 |
Localisation and Cloning of Genes Involved in the Export of the A-Protein of Aeromonas salmonicida | p. 315 |
Growth Medium Considerations for the Scale-up of S-Layer Protein Production by Bacillus brevis 47 | p. 319 |
Summary Statements | p. 323 |
Contributors | p. 329 |
Index | p. 335 |
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