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KLHL9 acts as a KSHV vBcl-2-interacting host factor that supports lytic replication

Kalt, I.; Ohev, S.; Gelgor Dontsov, A.; Haddad, C. O.; Koren, I.; Fuchs, R.; Hagai, T.; Sarid, R.

2026-08-13 microbiology
10.64898/2026.08.13.744635 bioRxiv
Show abstract

Kaposis sarcoma-associated herpesvirus (KSHV; human herpesvirus 8) is an oncogenic gammaherpesvirus that causes Kaposis sarcoma and several lymphoproliferative disorders. The KSHV open reading frame (ORF) 16 encodes viral Bcl-2 (vBcl-2), which inhibits apoptosis and autophagy. vBcl-2 is required for efficient lytic replication and production of infectious progeny; however, this essential role is independent of its established functions regulating cell death. To identify host factors that may contribute to vBcl-2 function, we employed proteomic analysis of HA-vBcl-2 immunoprecipitates from lytically reactivated KSHV-infected cells. This analysis identified the BTB-Kelch protein KLHL9, a substrate-specific adaptor for Cullin 3-RING ligase (CRL3) complex, as a candidate vBcl-2-associated factor. We validated the vBcl-2-KLHL9 association by reciprocal co-immunoprecipitation from infected cells, and by ectopic expression in uninfected cells. During lytic reactivation, KLHL9 redistributed from a predominantly cytoplasmic/perinuclear pattern to a mitochondrial pattern that overlapped with HA-vBcl-2. Alanine-scanning mutagenesis mapped a KLHL9-interaction determinant to the N-terminal region of vBcl-2, and vBcl-2 mutants defective in binding failed to colocalize with KLHL9. Conversely, KLHL9 deletion analysis implicated the C-terminal Kelch-repeat region in efficient association with vBcl-2. AlphaFold modeling supported the interface regions. However, vBcl-2 did not show detectable KLHL9-dependent ubiquitination, suggesting that it is unlikely to be a substrate of a KLHL9-containing complex. Functionally, CRISPR/Cas9-mediated KLHL9 disruption reduced lytic viral protein accumulation and infectious progeny production, while re-expression of sgRNA-resistant KLHL9 partially restored these phenotypes. Together, these findings suggest that vBcl-2 may engage host CRL3 complexes during productive infection, and identify KLHL9 as a vBcl-2-associated host factor that supports efficient KSHV lytic replication. Author SummaryKaposis sarcoma-associated herpesvirus (KSHV) is a cancer-associated virus that alternates between a latent cycle and a productive lytic cycle, during which new infectious virus particles are made. The viral protein vBcl-2 is best known for regulating cell-death and autophagy pathways, but earlier studies showed that it is required for efficient virus production through additional, non-canonical functions. In this study, we identify the cellular protein KLHL9 as a host factor that associates with KSHV vBcl-2. KLHL9 normally functions as a specific adaptor in protein ubiquitination pathways that regulate the turnover, localization, or activity of target proteins through ubiquitination. We show that vBcl-2 and KLHL9 associate with one another, and that KLHL9 redistributes toward the mitochondria in cells expressing vBcl-2. Importantly, loss of KLHL9 impairs the expression of viral lytic proteins and reduces the production of new infectious viruses. This defect resembles the phenotype caused by loss of vBcl-2, suggesting that KSHV employs vBcl-2 to engage KLHL9-dependent host machinery during productive infection. Understanding this interaction may help reveal how herpesviruses reprogram infected cells to create an environment that supports virus production.

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