Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Analysis of the ubiquitin-modified proteome identifies novel host factors in Kaposi’s sarcoma herpesvirus lytic reactivation

View through CrossRef
Abstract Kaposi’s Sarcoma Herpesvirus (KSHV) is the causative agent of Kaposi’s Sarcoma (KS) and is associated with primary effusion lymphoma (PEL), multicentric Castleman’s disease (MCD) and two inflammatory diseases. KSHV-associated cancers are primarily associated with genes expressed during latency, while other pathologies are associated with lytic gene expression. The major lytic switch of the virus, Replication and Transcription Activator (RTA), interacts with cellular machinery to co-opt the host ubiquitin proteasome system to evade the immune response as well as activate the program of lytic replication. Through SILAC labeling, ubiquitin remnant enrichment and mass spectrometry, we have analyzed the RTA dependent ubiquitin-modified proteome. We identified RTA dependent changes in the populations of polyubiquitin chains, as well as changes in ubiquitinated proteins in both cells expressing RTA and naturally infected cells following lytic reactivation. We observed an enrichment of proteins that are also reported to be SUMOylated, suggesting that RTA, a SUMO targeting ubiquitin ligase, may function to alleviate a SUMO dependent block to lytic reactivation. RTA targeted substrates directly through a ubiquitin ligase domain dependent mechanism as well as indirectly through cellular ubiquitin ligase RAUL. Our ubiquitome analysis revealed an RTA dependent mechanism of immune evasion. We provide evidence of inhibition of TAP dependent peptide transport, resulting in decreased HLA complex stability. The results of this analysis increase our understanding of mechanisms governing the latent to lytic transition in addition to the identification of a novel RTA dependent mechanism of immune evasion. Importance Kaposi’s sarcoma herpesvirus (KSHV), an AIDS associated pathogen, is associated with multiple cancers and inflammatory syndromes. This virus has a latent and lytic lifecycle, each associated with pathogenesis and oncogenesis. Here we identify proteins that display differential abundance in different phases of the lifecycle. We provide evidence supporting a new model of viral immune evasion. These findings increase our understanding of how the virus manipulates the host cell and provides new targets for intervention.
Title: Analysis of the ubiquitin-modified proteome identifies novel host factors in Kaposi’s sarcoma herpesvirus lytic reactivation
Description:
Abstract Kaposi’s Sarcoma Herpesvirus (KSHV) is the causative agent of Kaposi’s Sarcoma (KS) and is associated with primary effusion lymphoma (PEL), multicentric Castleman’s disease (MCD) and two inflammatory diseases.
KSHV-associated cancers are primarily associated with genes expressed during latency, while other pathologies are associated with lytic gene expression.
The major lytic switch of the virus, Replication and Transcription Activator (RTA), interacts with cellular machinery to co-opt the host ubiquitin proteasome system to evade the immune response as well as activate the program of lytic replication.
Through SILAC labeling, ubiquitin remnant enrichment and mass spectrometry, we have analyzed the RTA dependent ubiquitin-modified proteome.
We identified RTA dependent changes in the populations of polyubiquitin chains, as well as changes in ubiquitinated proteins in both cells expressing RTA and naturally infected cells following lytic reactivation.
We observed an enrichment of proteins that are also reported to be SUMOylated, suggesting that RTA, a SUMO targeting ubiquitin ligase, may function to alleviate a SUMO dependent block to lytic reactivation.
RTA targeted substrates directly through a ubiquitin ligase domain dependent mechanism as well as indirectly through cellular ubiquitin ligase RAUL.
Our ubiquitome analysis revealed an RTA dependent mechanism of immune evasion.
We provide evidence of inhibition of TAP dependent peptide transport, resulting in decreased HLA complex stability.
The results of this analysis increase our understanding of mechanisms governing the latent to lytic transition in addition to the identification of a novel RTA dependent mechanism of immune evasion.
Importance Kaposi’s sarcoma herpesvirus (KSHV), an AIDS associated pathogen, is associated with multiple cancers and inflammatory syndromes.
This virus has a latent and lytic lifecycle, each associated with pathogenesis and oncogenesis.
Here we identify proteins that display differential abundance in different phases of the lifecycle.
We provide evidence supporting a new model of viral immune evasion.
These findings increase our understanding of how the virus manipulates the host cell and provides new targets for intervention.

Related Results

Pembrolizumab and Sarcoma: A meta-analysis
Pembrolizumab and Sarcoma: A meta-analysis
Abstract Introduction: Pembrolizumab is a monoclonal antibody that promotes antitumor immunity. This study presents a systematic review and meta-analysis of the efficacy and safety...
Ubiquitin and Ubiquitin‐like Protein Conjugation
Ubiquitin and Ubiquitin‐like Protein Conjugation
Abstract Protein modification by ubiquitin and ubiquitin‐like proteins (Ubls) plays a pervasive role in eukaryotic cell regulation. One aim of this article is to survey t...
Triad1 Regulates Myelopoiesis through Different Ubiquitin Ligase Activities.
Triad1 Regulates Myelopoiesis through Different Ubiquitin Ligase Activities.
Abstract The modification of cellular proteins with poly-ubiquitin chains plays an essential role in hematopoiesis. Different types of ubiquitin chains may have oppo...
Herpesviruses (Human)
Herpesviruses (Human)
Abstract Human herpesviruses are a family of eight deoxyribonucleic acid (DNA) viruses. There are thr...
KSHV genome harbors both constitutive and lytically induced enhancers
KSHV genome harbors both constitutive and lytically induced enhancers
Abstract Kaposi’s sarcoma-associated herpesvirus (KSHV) belongs to the gamma-herpesvirus family and is a well-known human oncogenic virus. In infected cells, the vi...
METTL16 controls Kaposi’s sarcoma-associated herpesvirus replication by regulating S-adenosylmethionine cycle
METTL16 controls Kaposi’s sarcoma-associated herpesvirus replication by regulating S-adenosylmethionine cycle
AbstractOncogenic Kaposi’s sarcoma-associated herpesvirus (KSHV) consists of latent and lytic replication phases, both of which are important for the development of KSHV-related ca...
METTL16 Controls Kaposi’s Sarcoma-Associated Herpesvirus Replication by Regulating S -Adenosylmethionine Cycle
METTL16 Controls Kaposi’s Sarcoma-Associated Herpesvirus Replication by Regulating S -Adenosylmethionine Cycle
Abstract Oncogenic Kaposi’s sarcoma-associated herpesvirus (KSHV) consists of latent and lytic replication phases, both of which are important fo...
Oral Kaposi’s sarcoma in immunosuppressed patients – report of cases
Oral Kaposi’s sarcoma in immunosuppressed patients – report of cases
Kaposi sarcoma is a vascular neoplasm composed of endothelium-lined vascular spaces and spindle-shaped cells. It often manifests with multiple vascular nodules on the skin and othe...

Back to Top