Journalartikel

Structure of internalin, a major invasion protein of Listeria monocytogenes, in complex with its human receptor E-cadherin


AutorenlisteSchubert, WD; Urbanke, C; Ziehm, T; Beier, V; Machner, MP; Domann, E; Wehland, J; Chakraborty, T; Heinz, DW

Jahr der Veröffentlichung2002

Seiten825-836

ZeitschriftCell

Bandnummer111

Heftnummer6

ISSN0092-8674

eISSN1097-4172

Open Access StatusBronze

DOI Linkhttps://doi.org/10.1016/S0092-8674(02)01136-4

VerlagElsevier


Abstract
Listeria monocytogenes, a food-borne bacterial pathogen, enters mammalian cells by inducing its own phagocytosis. The listerial protein internalin (InIA) mediates bacterial adhesion and invasion of epithelial cells in the human intestine through specific interaction with its host cell receptor E-cadherin. We present the crystal structures of the functional domain of InIA alone and in a complex with the extracellular, N-terminal domain of human E-cadherin (hEC1). The leucine rich repeat (LRR) domain of InIA surrounds and specifically recognizes hEC1. Individual interactions were probed by mutagenesis and analytical ultracentrifugation. These include Pro16 of hEC1, a major determinant for human susceptibility to L. monocytogenes infection that is essential for intermolecular recognition. Our studies reveal the structural basis for host tropism of this bacterium and the molecular deception L. monocytogenes employs to exploit the E-cadherin system.



Zitierstile

Harvard-ZitierstilSchubert, W., Urbanke, C., Ziehm, T., Beier, V., Machner, M., Domann, E., et al. (2002) Structure of internalin, a major invasion protein of Listeria monocytogenes, in complex with its human receptor E-cadherin, Cell, 111(6), pp. 825-836. https://doi.org/10.1016/S0092-8674(02)01136-4

APA-ZitierstilSchubert, W., Urbanke, C., Ziehm, T., Beier, V., Machner, M., Domann, E., Wehland, J., Chakraborty, T., & Heinz, D. (2002). Structure of internalin, a major invasion protein of Listeria monocytogenes, in complex with its human receptor E-cadherin. Cell. 111(6), 825-836. https://doi.org/10.1016/S0092-8674(02)01136-4



Schlagwörter


CATENINSCELL-ADHESIONSRTASURFACE-PROTEINS


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