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Journal ArticleDOI

A plasmid-encoded type IV fimbrial gene of enteropathogenic Escherichia coli associated with localized adherence.

TLDR
An EPEC plasmid‐encoded fimbrial gene, a candidate for the elusive EPEC adherence factor responsible for localized adherence, is described.
Abstract
Summary Enteropathogenic Escherichia coli (EPEC) form adherent microcolonies on the surface of tissue culture cells in a pattern termed localized adherence. Localized adherence requires the presence of a large EPEC adherence factor (EAF) plasmid. Recently a bundle-forming pilus has been described in EPEC possessing the EAF plasmid. An analysis of 22 non-invasive EPEC TnphoA mutants revealed that seven have insertions in the EAF plasmid and are incapable of localized adherence. We report here the mapping of the TnphoA insertions in these mutants. The nucleotide sequence of the gene interrupted in these TnphoA mutants (bfpA) was determined and found to correspond to the N-terminal amino acid sequence of the major structural protein of the bundle-forming pilus. The bfpA gene bears sequence similarities to members of the type IV fimbrial gene family and encodes a potential site for processing by a prepilin peptidase. A plasmid containing bfpA as the only open reading frame directs the synthesis of a protein recognized by antiserum raised against the bundle-forming pilus. TnphoA mutants at this locus are unable to synthesize BfpA, but synthesis is restored by introduction of a plasmid containing the cloned gene. The minimum fragment of DNA required to restore localized adherence is considerably greater than that required to restore BfpA synthesis. BfpA expression, as assessed by alkaline phophatase activity in bfpA::TnphoA mutants, is affected by temperature and growth medium. These studies describe an EPEC plasmid-encoded fimbrial gene, a candidate for the elusive EPEC adherence factor responsible for localized adherence.

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Journal ArticleDOI

Diarrheagenic Escherichia coli

TL;DR: The current level of understanding of the pathogenesis of the diarrheagenic E. coli strains is discussed and how their pathogenic schemes underlie the clinical manifestations, diagnostic approach, and epidemiologic investigation of these important pathogens are described.
Journal ArticleDOI

Pathogenic Escherichia coli

TL;DR: Few microorganisms are as versatile as Escherichia coli; it can also be a highly versatile, and frequently deadly, pathogen.
Journal ArticleDOI

Type IV pilus structure and bacterial pathogenicity

TL;DR: Plin structures that have been solved using X-ray crystallography and nuclear magnetic resonance, together with models for pilus architectures inferred from electron microscopy, fibre diffraction and computation, have established a molecular basis for assembly and multi-functionality, with implications for therapeutic interventions.
Journal ArticleDOI

Enteric bacterial toxins: mechanisms of action and linkage to intestinal secretion.

TL;DR: The role of Shiga-like toxin I in bacterial enteritis: comparison between isogenic Esch- erichia coli strains induced in rabbits and new live attenuated chol- era vaccines is compared.
Journal ArticleDOI

Bacterial adhesins: common themes and variations in architecture and assembly.

TL;DR: Among the earliest events in many bacterial infections are the molecular interactions that occur between the pathogen and host cells, and may involve a complex cascade of molecular cross talk at the cellular level.
References
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Book

Molecular Cloning: A Laboratory Manual

TL;DR: Molecular Cloning has served as the foundation of technical expertise in labs worldwide for 30 years as mentioned in this paper and has been so popular, or so influential, that no other manual has been more widely used and influential.
Journal ArticleDOI

Detection of specific sequences among DNA fragments separated by gel electrophoresis.

TL;DR: This paper describes a method of transferring fragments of DNA from agarose gels to cellulose nitrate filters that can be hybridized to radioactive RNA and hybrids detected by radioautography or fluorography.
Journal ArticleDOI

A technique for radiolabeling DNA restriction endonuclease fragments to high specific activity

TL;DR: A technique for conveniently radiolabeling DNA restriction endonuclease fragments to high specific activity is described, and these "oligolabeled" DNA fragments serve as efficient probes in filter hybridization experiments.
Book

Antibodies: A Laboratory Manual

Ed Harlow, +1 more
TL;DR: A second edition of Antibodies: A Laboratory Manual is being published in September 2013, Revised, extended and updated by Edward Greenfield of the Dana-Farber Cancer Center, the material has been recast with extensive new information and new chapters have been added.

A technique for radiolabeling DNA restriction endonuclease fragments to high specific activity

TL;DR: In this article, a technique for conveniently radiolabeling DNA restriction endonuclease fragments to high specific activity is described, where DNA fragments are purified from agarose gels directly by ethanol precipitation and are then denatured and labeled with the large fragment of DNA polymerase I, using random oligonucleotides as primers.
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