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Scribano, S.

Publications and source records attributed to Scribano, S..

2 recordsLinked to original sources

Kaposi's sarcoma-associated herpesvirus (KSHV) gB dictates a low-pH endocytotic entry pathway as revealed by a dual-fluorescent virus system and a rhesus monkey rhadinovirus expressing KSHV gB

Interaction with host cell receptors initiates internalization of Kaposis sarcoma-associated herpesvirus (KSHV) particles via endocytosis or macropinocytosis. Fusion of viral and host cell membranes, which is followed by release of the viral capsid into the cytoplasm, is executed by the core fusion machinery composed of gH, gL, and gB, that is common to all herpesviruses. KSHV infection has been shown to be sensitive to inhibitors of vacuolar acidification, suggestive of low pH as a fusion trigger. To analyze KSHV entry at the single particle level we developed single- and dual-fluorescent recombinant KSHV strains that incorporate tagged glycoproteins, capsid proteins or a combination thereof. In addition, we generated a hybrid rhesus monkey rhadinovirus (RRV) that expresses KSHV gB in place of RRV gB to analyze gB-dependent differences in infection pathways. Our data demonstrate lytic reactivation and infectivity of dual-fluorescent KSHV and incorporation of fluorescently-tagged proteins into viral particles. Confocal microscopy was used to quantify co-localization of fluorescently-tagged glycoproteins and capsid proteins. By using the ratio of dual-positive KSHV particles to single-positive capsids as an indicator of fusion events we established the KSHV fusion kinetics upon infection of different target cells. We measured marked differences in the "time-to-fusion" between different cell types. Inhibition of vesicle acidification prevented virus-cell fusion, implicating low vesicle pH as a requirement for the KSHV fusion step. These findings were corroborated by comparison of RRV-YFP reporter virus with wildtype gB and RRV-YFP encoding KSHV gB in place of RRV gB. While RRV wt infection of receptor-overexpressing cells was unaffected by inhibition of vesicle acidification, RRV-YFP expressing KSHV gB was sensitive to Bafilomycin A1, an inhibitor of vacuolar acidification. Single- and dual-fluorescent KSHV strains eliminate the need for virus-specific antibodies and enable the tracking of single viral particles during entry and fusion. Together with a hybrid RRV expressing KSHV gB, these two novel tools identify low vesicle pH as an endocytotic trigger for KSHV membrane fusion.

microbiology↗

Tim-1 and Tim-4 mediate entry of the human Kaposi's sarcoma-associated herpesvirus and the related rhesus monkey rhadinovirus

Kaposis sarcoma-associated herpesvirus (KSHV) is a human tumor virus. It is associated with Kaposis sarcoma, primary effusion lymphoma, and multicentric Castlemans disease. KSHV is known to interact with several different receptors, among them heparan sulfate proteoglycans, Eph family receptors, and integrins. We mutated the closely related rhesus monkey rhadinovirus in the known receptor interaction sites for Eph family and Plexin domain containing proteins and found it to still replicate on certain cells. This lytic virus was then used as a selection agent in a genome-wide CRISPR knockout screen, which identified TIM1 and NRP1 as host dependency factors. NRP1 is also host factor for the related Epstein-Barr virus and was recently reported to promote KSHV infection, which we confirm even if it functions with low efficiency on most cells and became functional only after ablation of the Eph receptor interaction. Further analysis through overexpression demonstrated that Tim-1 and the related Tim-4 are strong mediators of RRV and KSHV infection, in particular in the absence of other receptor interactions and even more pronounced for a KSHV mutant deleted in glycoprotein K8.1. Both Tim-1 and Tim-4 are heavily O-glycosylated phosphatidylserine (PS) receptors. For KSHV in particular, experiments with mutated Tim-1 and comparison to Ebola virus glycoprotein-driven entry indicate that the interaction with Tim-1 occurs through PS-binding by Tim-1 and suggest additional interaction in a PS-independent manner. The mucin-like domain of Tim-1 is required for optimal receptor function. The use of Tim proteins for entry is a novelty for herpesviruses and underscores the unique biology of KSHV and RRV.

microbiology↗