bioRxiv Science⌕ Search

Biology subjects

Kaminski, P.

Publications and source records attributed to Kaminski, P..

2 recordsLinked to original sources

Topoisomerase IIα orchestrates secretion of IL-6 and IL-8 with human papillomavirus replication

High-risk human papillomavirus (HPV) replication requires deregulation of host DNA damage response (DDR) and inflammatory pathways. DNA topoisomerase 2{beta} (Top2{beta}) was previously shown to promote HPV replication, while the function of its paralog Top2 in the viral life cycle remains unknown. Elevated levels of Top2 are consistently observed in cervical intraepithelial lesions and the related carcinomas, as well as in HPV-positive cell lines. Silencing Top2 with shRNA severely suppresses HPV genome maintenance and amplification, but in a DDR-independent manner. Instead, Top2 facilitates secretion of interleukin (IL)-6 and IL-8, which are necessary for HPV replication. Mechanistically, this manipulation is regulated by toll-like receptor 4 (TLR4). Top2 binds to the TLR4 promoter to transcriptionally induce TLR4 expression. Blockade of TLR4 signaling by the specific inhibitor TAK-242 significantly reduces the secreted IL-6/IL-8 levels and HPV replication. Overall, our results reveal a novel role of Top2 to shape the inflammatory microenvironment that benefits HPV replication, making it a promising therapeutic target for HPV-associated diseases. IMPORTANCEHuman papillomaviruses (HPVs) are oncogenic pathogens responsible for many HPV-related diseases such as cervical cancer. HPV replication depends on the subversion of host cellular machineries, particularly pathways governing DNA damage response (DDR) and inflammation. However, the roles of enzymes that directly introduce DNA nicks or mediate strand rejoining remain poorly characterized. Here we highlight a novel role of DNA topoisomerase 2 (Top2) in promoting HPV genome maintenance and amplification but in a DDR-independent manner. Unlike its previously studied paralog Top2{beta}, Top2 supports HPV replication by driving the secretion of inflammatory molecules interleukin (IL)-6 and IL-8, which are critical for the viral genome persistence and copy number expansion. To our knowledge, this is the first evidence that a DDR-associated protein manipulates cytokine secretion, rather than expression, to support HPV replication. Furthermore, blocking toll-like receptor 4 (TLR4) activities significantly reduced Top2-dependent IL-6/IL-8 secretion and impaired HPV replication. These findings establish Top2 as a crucial player in HPV pathogenesis, with a therapeutic potential for treating HPV-associated malignancies.

microbiology↗

Topoisomerase 2b induces DNA breaks to regulate human papillomavirus replication

Topoisomerases regulate higher order chromatin structures through the transient breaking and re-ligating of one or both strands of the phosphodiester backbone of duplex DNA. TOP2{beta} is a type II topoisomerase that induces double strand DNA breaks at topological-associated domains (TADS) to relieve torsional stress arising during transcription or replication. TADS are anchored by CTCF and SMC1 cohesin proteins in complexes with TOP2{beta}. Upon DNA cleavage a covalent intermediate DNA-TOP2{beta} (TOP2{beta}cc) is transiently generated to allow for strand passage. The tyrosyl-DNA phosphodiesterase TDP2 can resolve TOP2{beta}cc but failure to do so quickly can lead to long-lasting DNA breaks. Given the role of CTCF/SMC1 proteins in the HPV life cycle we investigated if TOP2{beta} proteins contribute to HPV pathogenesis. Our studies demonstrated that levels of both TOP2{beta} and TDP2 were substantially increased in cells with high risk HPV genomes and this correlated with high amounts of DNA breaks. Knockdown of TOP2{beta} with shRNAs reduced DNA breaks by over 50% as determined through COMET assays. Furthermore this correlated with substantially reduced formation of repair foci such as {gamma}H2AX, pCHK1 and pSMC1 indicative of impaired activation of DNA damage repair pathways. Importantly, knockdown of TOP2{beta} also blocked HPV genome replication. Our previous studies demonstrated that CTCF /SMC1 factors associate with HPV genomes at sites in the late regions of HPV31 and these correspond to regions that also bind TOP2{beta}. This study identifies TOP2{beta} as responsible for enhanced levels of DNA breaks in HPV positive cells and as a regulator of viral replication.

microbiology↗