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Titlebook: Bacterial Adhesion; Chemistry, Biology a Dirk Linke,Adrian Goldman Book 2011 The Editor(s) (if applicable) and The Author(s), under exclusi

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Adhesion Mechanisms of Plant-Pathogenic ,,genic genera . and ., and the related genus .. Adhesion is a widely conserved virulence mechanism among Gram-negative bacteria, no matter whether they are human, animal or plant pathogens, since attachment to the host tissue is one of the key early steps of the bacterial infection process. Bacterial
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Adhesion by Pathogenic Corynebacteria,ring infection. In ., adhesion is mediated primarily by filamentous structures called pili or fimbriae that are covalently attached to the bacterial cell wall. . produces three distinct pilus structures, SpaA-, SpaD- and SpaH-type pili. Similar to other types, the prototype SpaA pilus consists of Sp
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Adhesion Mechanisms of Staphylococci,thogens. Especially . harbours a variety of proteinaceous and non-proteinaceous adhesins that mediate attachment to a multitude of host factors, such as extracellular matrix and plasma proteins and human host cells, or intercellular adhesion, which is essential for biofilm accumulation. Proteinaceou
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Protein Folding in Bacterial Adhesion: Secretion and Folding of Classical Monomeric Autotransporterthe cell envelope to become active and during this secretion process they fold into their final conformation. This chapter focuses on the biogenesis of the classical monomeric autotransporter proteins, which are the most ubiquitous class of secreted proteins in Gram-negative bacteria. They may funct
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Crystallography and Electron Microscopy of Chaperone/Usher Pilus Systems,or fimbriae. Pili are large linear polymers that protrude from the outer bacterial surface and consist of several subunits. Pili contain adhesin proteins at the tip that are used by pathogenic bacteria to mediate attachment to host cells and initiate infections. Well studied examples of CU pili are
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The Nonideal Coiled Coil of M Protein and Its Multifarious Functions in Pathogenesis,ryngitis, and severe invasive disease, like streptococcal toxic shock syndrome. M protein contributes to GAS virulence in multifarious ways, including blocking deposition of antibodies and complement, helping formation of microcolonies, neutralizing antimicrobial peptides, and triggering a proinflam
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