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Slavkova, M.

Publications and source records attributed to Slavkova, M..

2 recordsLinked to original sources

Long Terminal Repeats of Gammaretroviruses Retain Stable Expression After Integration Retargeting or Knock-In into the Restrictive Chromatin of Lamina-Associated Domains

Retroviruses integrate their genomes into the genomes of infected host cells and form a genetic platform for stable gene expression. Epigenetic silencing can, however, hamper the expression of integrated provirus. As gammaretroviruses ({gamma}RVs) preferentially integrate into sites of active promoters and enhancers, the high expression activity of {gamma}RVs can be attributed to the integration preference. Long terminal repeats (LTRs) of some {gamma}RVs were shown to act as potent promoters for gene expression. Here, we investigate the capacity of different {gamma}RV LTRs to drive stable expression inside a non-preferred epigenomic environment using diverse retroviral vectors and CRISPR-Cas9-directed vector knock-in. We demonstrate that different {gamma}RV LTRs are either rapidly silenced or long-term active with active proviral population prevailing under normal and retargeted integration. In addition, we show that lamina-associated domains (LADs) can be targeted by CRISPR-Cas9 for vector insertion leading to {gamma}RV LTR-driven long-term stable gene expression. Alternatively to established {gamma}RV systems, the LTRs of feline leukemia virus and koala retrovirus are capable of driving stable, albeit intensity-diverse, transgene expression in LADs. Altogether, we show that despite the occurrence of rapid silencing events, the majority of {gamma}RV LTRs can drive stable expression after retrovirus integration or CRISPR-Cas9-directed knock-in outside of the preferred chromatin landscape.

molecular biology↗

The SV40 virus enhancer functions as a somatic hypermutation-targeting element with potential oncogenic activity

Simian virus 40 (SV40) is a monkey virus associated with several types of human cancers. SV40 is most frequently detected in mesotheliomas, brain and bone tumors and lymphomas, but the mechanism for SV40 tumorigenesis in humans is not clear. SV40 relative Merkel cell polyomavirus (MCPyV) causes Merkel cell carcinoma (MCC) in humans by expressing truncated large tumor antigen (LT) caused by APOBEC cytidine deaminase family enzymes induced mutations. AID (activation-induced cytidine deaminase), a member of the APOBEC family, is the initiator of the antibody diversification process known as somatic hypermutation (SHM) and its aberrant expression and targeting is a frequent source of lymphomagenesis. In this study, we investigated whether AID-induced mutations could cause truncation of SV40 LT. We demonstrate that the SV40 enhancer has strong SHM targeting activity in several cell types and that AID-induced mutations accumulate to SV40 LT in B cells and kidney cells and cause truncated LT expression in B cells. Our results argue that the ability of the SV40 enhancer to target SHM to LT is a potential source of LT truncation events in various cell types that could contribute to carcinogenesis.

microbiology↗