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Medical Genetics Commons

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Medical Immunology

2011

Article

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Full-Text Articles in Medical Genetics

Sustained Cd8+ T Cell Memory Inflation After Infection With A Single-Cycle Cytomegalovirus., Christopher M Snyder, Kathy S Cho, Elizabeth L Bonnett, Jane E Allan, Ann B Hill Oct 2011

Sustained Cd8+ T Cell Memory Inflation After Infection With A Single-Cycle Cytomegalovirus., Christopher M Snyder, Kathy S Cho, Elizabeth L Bonnett, Jane E Allan, Ann B Hill

Department of Microbiology and Immunology Faculty Papers

Cytomegalovirus (CMV) is a β-herpesvirus that establishes a lifelong latent or persistent infection. A hallmark of chronic CMV infection is the lifelong persistence of large numbers of virus-specific CD8+ effector/effector memory T cells, a phenomenon called "memory inflation". How the virus continuously stimulates these T cells without being eradicated remains an enigma. The prevailing view is that CMV establishes a low grade "smoldering" infection characterized by tiny bursts of productive infection which are rapidly extinguished, leaving no detectable virus but replenishing the latent pool and leaving the immune system in a highly charged state. However, since abortive reactivation with limited …


Hydrophobicity As A Driver Of Mhc Class I Antigen Processing., Lan Huang, Matthew C Kuhls, Laurence C. Eisenlohr Apr 2011

Hydrophobicity As A Driver Of Mhc Class I Antigen Processing., Lan Huang, Matthew C Kuhls, Laurence C. Eisenlohr

Department of Microbiology and Immunology Faculty Papers

The forces that drive conversion of nascent protein to major histocompatibility complex (MHC) class I-restricted peptides remain unknown. We explored the fundamental property of overt hydrophobicity as such a driver. Relocation of a membrane glycoprotein to the cytosol via signal sequence ablation resulted in rapid processing of nascent protein not because of the misfolded luminal domain but because of the unembedded transmembrane (TM) domain, which serves as a dose-dependent degradation motif. Dislocation of the TM domain during the natural process of endoplasmic reticulum-associated degradation (ERAD) similarly accelerated peptide production, but in the context of markedly prolonged processing that included nonnascent …