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Nankoma, J.

Publications and source records attributed to Nankoma, J..

2 recordsLinked to original sources

Cytotoxic T cells targeting lytic KSHV gene products infiltrate Kaposi sarcoma tumors

Kaposi sarcoma-associated herpesvirus (KSHV) is the etiologic agent of Kaposi sarcoma (KS), primary effusion lymphoma (PEL), and KSHV-associated multicentric Castlemans disease (MCD), malignancies that predominantly arise in the context of T-cell deficiency. Unlike responses to other human herpesviruses such as EBV and CMV, KSHV-specific T-cell responses detected in blood have been described as heterogeneous and low-intensity. Hypothesizing that KSHV-specific T cells are recruited to KS tumors, we analyzed the T-cell receptor (TCR) repertoire of biopsies from 144 Ugandan adults with KS (106 people living with HIV [PLWH], 38 HIV-seronegative) and identified >4,000 {beta} TCRs with predicted specificity for KSHV- or HIV-encoded peptides presented by specific MHC alleles. We tested 14 putative KSHV- or HIV-specific TCRs for recognition of cells presenting cognate peptides in the predicted MHC context. Three novel HIV-specific TCRs, found only in tumors from PLWH, exhibited high-avidity, MHC-restricted recognition of HIV Vpr and Nef peptides previously identified as CD8+ T-cell targets. Four KSHV-specific TCRs, detected in tumors from both PLWH and HIV-seronegative individuals, recognized peptides encoded by the lytic KSHV genes ORF6, ORF57, and ORF59. The ORF6- and ORF57-specific TCRs were observed in multiple individuals and constitute the first examples of public T-cell responses to KSHV. We then confirmed that these four KSHV-specific TCRs recognized KSHV-infected cells undergoing lytic reactivation. Identification of TCRs specific for KSHV lytic gene products will enable the development of T-cell-based therapies for KS and other KSHV-associated diseases. Author summaryKaposi sarcoma-associated herpesvirus (KSHV) is the only oncogenic human virus for which there is no effective vaccine, antiviral, or immunotherapeutic strategy that directly targets the virus. KSHV is the causative agent of Kaposi sarcoma and primary effusion lymphoma, cancers that primarily affect immunocompromised individuals, most commonly people living with HIV in sub-Saharan Africa, where KSHV is endemic and HIV infection is prevalent. In this study we defined the antigenic specificity of novel, putative KSHV- and HIV-specific T-cell receptors (TCRs) that are carried in T cells commonly infiltrating KS tumor biopsies. We show that T cells engineered to express KSHV-specific TCRs exhibit high-avidity, MHC-restricted recognition of KSHV-infected cells presenting naturally processed peptides encoded by KSHV lytic genes. Our findings provide a blueprint for dissecting KSHV-specific T-cell immunity and advancing the development of immunotherapeutic strategies for the prevention or treatment of KSHV-associated diseases.

immunology↗

Human Herpes Virus 8 Oral Shedding Heterogeneity is Due to Varying Rates of Reactivation from Latency and Immune Containment

Human herpesvirus-8 (HHV-8) is a gamma herpesvirus linked to the development of Kaposi sarcoma (KS). KS is more common in persons living with HIV (PLWH), but endemic KS in HIV-negative individuals is also common in sub-Saharan Africa. HHV-8 shedding occurs in the oral mucosa and is likely responsible for transmission. The mechanistic drivers of different HHV-8 shedding patterns in infected individuals are unknown. We applied stochastic mathematical models to a longitudinal study of HHV-8 oral shedding in 295 individuals in Uganda who were monitored daily with oral swabs. Participants were divided into four groups based on whether they were HIV-negative or positive as well as KS-negative or positive. In all groups, we observed a wide variance of shedding patterns, including no shedding, episodic low viral load shedding, and persistent high viral load shedding. Our model closely replicates patterns in individual data and attributes higher shedding rates to increased rates of viral reactivation, and lower median viral load values to more rapid and effective engagement of cytolytic immune responses. Our model provides a framework for understanding different shedding patterns observed in individuals with HHV-8 infection. KeypointsHHV8 shedding rate is mosty determined by rate of reactivation from latency while viral loads is mostly dteremined by peripheral immune responses. DAS performed all mathematical modeling and editied the paper; EMK performed statistical analysis and edited the paper; CB assisted with modeling; FO, JN and IM designed and implemented the clinical protocols; WP designed and implemented the clinical protocols and edited the paper; JTS conceived the study and write the paper.

microbiology↗