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Inhibition of TNF receptor 1 internalization by adenovirus 14.7K as a novel immune escape mechanism
Wulf Schneider-Brachert, … , Martin Krönke, Stefan Schütze
Wulf Schneider-Brachert, … , Martin Krönke, Stefan Schütze
Published November 1, 2006
Citation Information: J Clin Invest. 2006;116(11):2901-2913. https://doi.org/10.1172/JCI23771.
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Research Article Virology

Inhibition of TNF receptor 1 internalization by adenovirus 14.7K as a novel immune escape mechanism

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Abstract

The adenoviral protein E3-14.7K (14.7K) is an inhibitor of TNF-induced apoptosis, but the molecular mechanism underlying this protective effect has not yet been explained exhaustively. TNF-mediated apoptosis is initiated by ligand-induced recruitment of TNF receptor–associated death domain (TRADD), Fas-associated death domain (FADD), and caspase-8 to the death domain of TNF receptor 1 (TNFR1), thereby establishing the death-inducing signaling complex (DISC). Here we report that adenovirus 14.7K protein inhibits ligand-induced TNFR1 internalization. Analysis of purified magnetically labeled TNFR1 complexes from murine and human cells stably transduced with 14.7K revealed that prevention of TNFR1 internalization resulted in inhibition of DISC formation. In contrast, 14.7K did not affect TNF-induced NF-κB activation via recruitment of receptor-interacting protein 1 (RIP-1) and TNF receptor–associated factor 2 (TRAF-2). Inhibition of endocytosis by 14.7K was effected by failure of coordinated temporal and spatial assembly of essential components of the endocytic machinery such as Rab5 and dynamin 2 at the site of the activated TNFR1. Furthermore, we found that the same TNF defense mechanisms were instrumental in protecting wild-type adenovirus–infected human cells expressing 14.7K. This study describes a new molecular mechanism implemented by a virus to escape immunosurveillance by selectively targeting TNFR1 endocytosis to prevent TNF-induced DISC formation.

Authors

Wulf Schneider-Brachert, Vladimir Tchikov, Oliver Merkel, Marten Jakob, Cora Hallas, Marie-Luise Kruse, Peter Groitl, Alexander Lehn, Eberhard Hildt, Janka Held-Feindt, Thomas Dobner, Dieter Kabelitz, Martin Krönke, Stefan Schütze

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Figure 8

Establishment of the DISC is abolished in magnetic TNFR1 fractions purified from 14.7K H1299 cells.

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Establishment of the DISC is abolished in magnetic TNFR1 fractions purif...
Magnetic TNFR1 fractions were purified from H1299 parental cells and H1299 cells stably transduced with the empty vector or 14.7K gene and immunoblotted with the antibodies indicated. In H1299 parental and H1299 vector cells, recruitment of TRADD, FADD, RIP-1, TRAF-2, and activated caspase-8 was detected after 30 minutes of TNF stimulation. In contrast, in 14.7K H1299 cells, TRADD, FADD, and caspase-8 were not detected after 30 minutes of TNF treatment. The endocytic adaptor proteins Rab5 and dynamin 2 were only recruited to magnetic TNFR1 fractions in TNF-treated H1299 and H1299 vector cells and were absent in preparations from 14.7K H1299 cells. Ub. TRADD, ubiquitinylated TRADD.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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