Pages that link to "Q40602088"
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The following pages link to Quantitative analysis of prion-protein degradation by constitutive and immuno-20S proteasomes indicates differences correlated with disease susceptibility (Q40602088):
Displaying 33 items.
- Antigen processing influences HIV-specific cytotoxic T lymphocyte immunodominance (Q27655357) (← links)
- Computational prediction of cleavage using proteasomal in vitro digestion and MHC I ligand data (Q30665275) (← links)
- State of the art and challenges in sequence based T-cell epitope prediction (Q34312500) (← links)
- HIV-1 envelope resistance to proteasomal cleavage: implications for vaccine induced immune responses (Q34374375) (← links)
- Integrated modeling of the major events in the MHC class I antigen processing pathway (Q34429970) (← links)
- Cancer associated aberrant protein O-glycosylation can modify antigen processing and immune response (Q34494018) (← links)
- Rapid antigen processing and presentation of a protective and immunodominant HLA-B*27-restricted hepatitis C virus-specific CD8 T-cell epitope (Q34499385) (← links)
- Proteasomes shape the repertoire of T cells participating in antigen-specific immune responses. (Q34596859) (← links)
- Properties of MHC class I presented peptides that enhance immunogenicity (Q35034097) (← links)
- Microsecond Unfolding Kinetics of Sheep Prion Protein Reveals an Intermediate that Correlates with Susceptibility to Classical Scrapie (Q35187550) (← links)
- Mechanistic insights into the cure of prion disease by novel antiprion compounds (Q36099134) (← links)
- The use of mass spectrometry to identify antigens from proteasome processing (Q36368460) (← links)
- Effect of divalent metals on the neuronal proteasomal system, prion protein ubiquitination and aggregation. (Q36403528) (← links)
- The immunoinformatics of cancer immunotherapy (Q36927645) (← links)
- Human immunodeficiency virus type 1 Gag p24 alters the composition of immunoproteasomes and affects antigen presentation (Q37247915) (← links)
- Identification of O-glycosylated decapeptides within the MUC1 repeat domain as potential MHC class I (A2) binding epitopes (Q37459645) (← links)
- Influence of high hydrostatic pressure on epitope mapping of tobacco mosaic virus coat protein (Q37630085) (← links)
- HIV-1 adaptation to antigen processing results in population-level immune evasion and affects subtype diversification (Q37734787) (← links)
- Endoplasmic reticulum aminopeptidase 1 function and its pathogenic role in regulating innate and adaptive immunity in cancer and major histocompatibility complex class I-associated autoimmune diseases (Q38234401) (← links)
- Isolation and purification of proteasomes from primary cells (Q38264766) (← links)
- Proteasome isoforms exhibit only quantitative differences in cleavage and epitope generation (Q38955527) (← links)
- Features of TAP-independent MHC class I ligands revealed by quantitative mass spectrometry (Q39986910) (← links)
- A mathematical model of protein degradation by the proteasome (Q40324090) (← links)
- Role of peptide processing predictions in T cell epitope identification: contribution of different prediction programs. (Q41726495) (← links)
- Cell type-specific proteasomal processing of HIV-1 Gag-p24 results in an altered epitope repertoire (Q42206015) (← links)
- Purification of large cytosolic proteases for in vitro assays: 20S and 26S proteasomes (Q44249587) (← links)
- Imatinib mesylate and nilotinib affect MHC-class I presentation by modulating the proteasomal processing of antigenic peptides (Q46859831) (← links)
- Modeling the adaptive immune system: predictions and simulations (Q48372980) (← links)
- Cross-sectional analysis of CD8 T cell immunity to human herpesvirus 6B. (Q55342452) (← links)
- Gemcitabine alters the proteasome composition and immunopeptidome of tumour cells. (Q55364385) (← links)
- The role of the proteasome in generating cytotoxic T-cell epitopes: insights obtained from improved predictions of proteasomal cleavage (Q56879701) (← links)
- APOBEC3G Regulation of the Evolutionary Race Between Adaptive Immunity and Viral Immune Escape Is Deeply Imprinted in the HIV Genome (Q61449156) (← links)
- Priming of Leishmania-reactive CD8 T cells in vivo does not require LMP7-containing immunoproteasomes (Q83326201) (← links)