Structural insights into the biogenesis and biofilm formation by the <i>Escherichia coli</i> common pilus

James A. Garnett, Verónica I. Martínez-Santos, Zeus Saldaña‐Ahuactzi, Tillmann Pape, William Hawthorne, Jennifer A. Chan, P. J. Simpson, Ernesto Cota, José L. Puente, Jorge A. Girón

Proceedings of the National Academy of Sciences · 2012 · 78 citations · 29 references

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Abstract

Bacteria have evolved a variety of mechanisms for developing community-based biofilms. These bacterial aggregates are of clinical importance, as they are a major source of recurrent disease. Bacterial surface fibers (pili) permit adherence to biotic and abiotic substrates, often in a highly specific manner. The Escherichia coli common pilus (ECP) represents a remarkable family of extracellular fibers that are associated with both disease-causing and commensal strains. ECP plays a dual role in early-stage biofilm development and host cell recognition. Despite being the most common fimbrial structure, relatively little is known regarding its biogenesis, architecture, and function. Here we report atomic-resolution insight into the biogenesis and architecture of ECP. We also derive a structural model for entwined ECP fibers that not only illuminates interbacteria communication during biofilm formation but also provides a useful foundation for the design of novel nanofibers.

References

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