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https://dx.doi.org/10.18452/14...
Doctoral thesis . 2002
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Epithelzellinvasion durch Shigella flexneri

Authors: Haustein, Thomas;

Epithelzellinvasion durch Shigella flexneri

Abstract

Shigellen sind Erreger der bakteriellen Dysenterie beim Menschen. Ein notwendiger Schritt bei der Pathogenese der Shigellose ist die Invasion von Darmepithelzellen durch das Bakterium. Der Mikroorganismus löst dabei in der Wirtszelle Veränderungen des Aktinzytoskeletts aus, die zur Bildung einer blütenähnlichen Membranstruktur und schließlich zur Internalisierung des Pathogens führen. Diese Umbauvorgänge am Zytoskelett sind abhängig von einem Wirtszellprotein, der kleinen GTPase Rho. Drei Isoformen von Rho (A, B und C) sind beschrieben, deren Aminosäuresequenzen zu etwa 90% identisch sind. Während der Zellinvasion durch Shigella akkumulieren verschiedene Rho-Isoformen an unterschiedlichen Lokalisationen des Invasionskomplexes. Dabei werden RhoA vorwiegend um die eindringenden Bakterienherum, RhoB und RhoC hingegen hauptsächlich in die bakterieninduzierten zellulären Protrusionen rekrutiert. Durch Untersuchung von Rho-Hybridkonstrukten konnte gezeigt werden, daß ein prä-C-terminales, acht Aminosäuren umfassendes Modul die Rekrutierungsmuster von RhoA bzw. RhoC bestimmt. Der Austausch zweier Aminosäuren innerhalb des Moduls führte zu einer Konversion des Rekrutierungsmusters von RhoA. Wir konnten zeigen, daß die Rekrutierung von RhoA vom Funktionszustand der GTPase (Bindung von GTP/GDP) sowie von der Phosphorylierung durch die Proteinkinase A unabhängig ist. Schließlich wurde hier nachgewiesen, daß auch RhoD, das zu RhoA, B und C auf der Primärstrukturebene nur zu etwa 50% homolog ist, an die Bakterieneintrittsstelle rekrutiert werden kann. RhoD folgt dabei dem Rekrutierungsmuster von RhoB und RhoC.

Shigella causes bacillary dysentery in humans. Bacterial invasion of enterocytes is an essential step in the pathogenesis of shigellosis. Pathogen-triggered rearrangements of the host cell actin cytoskeleton induce a blossom-like membrane structure for internalisation of the microorganism. Actin remodeling requires activity of the host cell small GTPase rho. Three highly homologous rho isoforms (A, B and C) have been described with amino acid identities of about 90%. During Shigella invasion these rho isoforms accumulate at different sites of the invasion complex. While rhoA is chiefly recruited around entering bacteria, rhoB and rhoC are essentially translocated to the bacteria-induced cellular protrusions. Using a variety of rho hybrid constructs in a HeLa cell transfection-infection assay we were able to show that a pre-C-terminal stretch of eight amino acids determines the recruitment patterns of rhoA and rhoC. Exchange of two amino acids was sufficient for conversion of the rhoA recruitment pattern into a rhoC-like pattern. We could demonstrate that rhoA recruitment is independent of its functional state (GDP- or GTP-bound) or phosphorylation by the proteinkinase A (PKA). Finally, we have shown that rhoD, another member of the rho family which shares only 50% of its primary structure with rhoA, B or C, is also recruited to the bacterial entry site exhibiting a rhoB/C-like pattern of distribution.

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Germany
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Keywords

ddc:610, Rho, rho, 610 Medizin, cytoskeleton, Shigella, 33 Medizin, 610 Medizin und Gesundheit, GTPase, XD 5000, Zytoskelett

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selected citations
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This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Influence provided by BIP!
impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
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