Tumour-necrosis factor (TNF) receptor-associated factor 6 (TRAF6) is the only TRAF family member that participates in signal transduction of both the TNF receptor (TNFR) superfamily and the interleukin-1 receptor (IL-1R)/Toll-like receptor (TLR) superfamily; it is important for adaptive immunity, innate immunity and bone homeostasis. Here we report crystal structures of TRAF6, alone and in complex with TRAF6-binding peptides from CD40 and TRANCE-R (also known as RANK), members of the TNFR superfamily, to gain insight into the mechanism by which TRAF6 mediates several signalling cascades. A 40 degrees difference in the directions of the bound peptides in TRAF6 and TRAF2 shows that there are marked structural differences between receptor recognition by TRAF6 and other TRAFs. The structural determinant of the petide TRAF6 interaction reveals a Pro-X-Glu-X-X-(aromatic/acidic residue) TRAF6-binding motif, which is present not only in CD40 and TRANCE-R but also in the three IRAK adapter kinases for IL-1R/TLR signalling. Cell-permeable peptides with the TRAF6-binding motif inhibit TRAF6 signalling, which indicates their potential as therapeutic modulators. Our studies identify a universal mechanism by which TRAF6 regulates several signalling cascades in adaptive immunity, innate immunity and bone homeostasis.

Distinct molecular mechanism for initiating TRAF6 signalling.

Cirilli M;
2002

Abstract

Tumour-necrosis factor (TNF) receptor-associated factor 6 (TRAF6) is the only TRAF family member that participates in signal transduction of both the TNF receptor (TNFR) superfamily and the interleukin-1 receptor (IL-1R)/Toll-like receptor (TLR) superfamily; it is important for adaptive immunity, innate immunity and bone homeostasis. Here we report crystal structures of TRAF6, alone and in complex with TRAF6-binding peptides from CD40 and TRANCE-R (also known as RANK), members of the TNFR superfamily, to gain insight into the mechanism by which TRAF6 mediates several signalling cascades. A 40 degrees difference in the directions of the bound peptides in TRAF6 and TRAF2 shows that there are marked structural differences between receptor recognition by TRAF6 and other TRAFs. The structural determinant of the petide TRAF6 interaction reveals a Pro-X-Glu-X-X-(aromatic/acidic residue) TRAF6-binding motif, which is present not only in CD40 and TRANCE-R but also in the three IRAK adapter kinases for IL-1R/TLR signalling. Cell-permeable peptides with the TRAF6-binding motif inhibit TRAF6 signalling, which indicates their potential as therapeutic modulators. Our studies identify a universal mechanism by which TRAF6 regulates several signalling cascades in adaptive immunity, innate immunity and bone homeostasis.
2002
Istituto di Cristallografia - IC
NEUROBIOLOGIA E MEDICINA MOLECOLARE
418
443
447
Biologia Strutturale
Cristallografia
Recettori cellulari
TNF
Impact Factor: 30.432 L’analisi cristallografica dei complessi TRAF6/CD40 e TRAF6/RANK descritta è stata da me compiuta nel laboratorio del Prof. Hao Wu del Weill Medical College di New York nell’ambito del periodo di lavoro e permanenza negli Stati Uniti durato dal Febbraio 1997 all’Agosto 2002. Il laboratorio suddetto è uno dei più conosciuti nell’ambito della biologia strutturale di meccanimi cellulari apoptotici e di signaling. Al riguardo, la biologia strutturale e la cristallografia raggi X su complessi proteici in particolare, rappresentano strumenti indispensabili per ottenere quelle informazioni stereochimiche necessarie per rivelare le modalità di processi cellulari basilari ed il loro malfunzionamento in processi patologici. Questo significa individuare nuovi bersagli farmacologici e/o permette di migliorare il meccanismo di azione di quelli esistenti.
16
info:eu-repo/semantics/article
262
Ye, H; Arron, Jr; Lamothe, B; Cirilli, M; Kobayashi, T; Shevde, Nk; Segal, D; Dzivenu, Ok; Volgodskaia, M; Yim, M; Du, K; Singh, S; Pike, Jw; Darnay, ...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/144116
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