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Modeling the MHC class I pathway by combining predictions of proteasomal cleavage,TAP transport and MHC class I binding
Authors:S Tenzer  B Peters  S Bulik  O Schoor  C Lemmel  M M Schatz  P-M Kloetzel  H-G Rammensee  H Schild  H-G Holzhütter
Institution:(1) Institute of Immunology, Johannes Gutenberg University, Obere Zahlbacherstr. 67, 55131 Mainz, Germany;(2) Institute for Biochemistry, University Medical School-Charite, Humboldt University, Monbijoustr. 2, 10117 Berlin, Germany;(3) Institute for Cell Biology, Department of Immunology, University of Tübingen, Auf der Morgenstelle 15, 72076 Tübingen, Germany;(4) Present address: La Jolla Institute for Allergy and Immunology, 10355 Science Center Drive, San Diego, California 92121, USA
Abstract:Epitopes presented by major histocompatibility complex (MHC) class I molecules are selected by a multi-step process. Here we present the first computational prediction of this process based on in vitro experiments characterizing proteasomal cleavage, transport by the transporter associated with antigen processing (TAP) and MHC class I binding. Our novel prediction method for proteasomal cleavages outperforms existing methods when tested on in vitro cleavage data. The analysis of our predictions for a new dataset consisting of 390 endogenously processed MHC class I ligands from cells with known proteasome composition shows that the immunological advantage of switching from constitutive to immunoproteasomes is mainly to suppress the creation of peptides in the cytosol that TAP cannot transport. Furthermore, we show that proteasomes are unlikely to generate MHC class I ligands with a C-terminal lysine residue, suggesting processing of these ligands by a different protease that may be tripeptidyl-peptidase II (TPPII).Received 26 November 2004; received after revision 4 February 2005; accepted 4 March 2005S. Tenzer and B. Peters contributed equally to this work.
Keywords:Proteasome  TAP  MHC  epitope prediction  antigen processing
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