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Serafim, R. B.

Publications and source records attributed to Serafim, R. B..

2 recordsLinked to original sources

Chromatin Perturbation Promotes Susceptibility to Hypomethylating Agents

Cancer-directed drugs are often clinically deployed without definitive understanding of their molecular mechanisms of action (MOA). Hypomethylating agents (HMAs), which result in the degradation of the DNA methyltransferase 1 (DNMT1), have been deployed for decades in the treatment of haematological malignancies1,2. The precise mechanism of action of these drugs, however, has been debated, rendering the design of rational combination therapies challenging. Here, we identified the deubiquitinating enzyme USP48 as a crucial regulator of posttranslational histone modification in the context of DNA demethylation. USP48 loss selectively enhances response to DNMT1 inhibition, leading to a rapid induction of cell death. We demonstrate that USP48 is localized at sites of DNA damage and deubiquitinates H2A variants and proteins important for DNA damage repair. Functionally, loss of USP48 triggers an increase in chromatin accessibility upon HMA treatment, rendering AML cells more susceptible to DNA damage. Our results support USP48 as a posttranslational histone modifier for chromatin stability and DNA damage in response to HMA-related DNA demethylation. These findings propose USP48 as a new target for combination therapy with HMAs for acute myeloid leukaemia (AML).

cancer biology↗

CDK12/13 inhibition disrupts nucleolar morphology and promotes aberrant expression of IGS transcripts

The transcription-associated cyclin dependent kinases (CDKs) 12 and 13 play important roles in the expression of RNAs involved in DNA damage repair and ribosomal proteins, yet their roles if any, in the regulation of ribosomal DNA expression are unclear. Here we show that these CDKs play critical roles in the processing and degradation of noncoding RNAs in the nucleolus and that inhibition of their function leads to the upregulation of unprocessed ribosomal RNA (rRNA) transcripts in the intergenic spacer (IGS) regions between ribosomal subunits. These upregulated RNAs are aberrantly polyadenylated by the TRAMP complex polymerase TENT4, and are represented as polyadenylated rings surrounding the nucleolus. The accumulation of these noncoding RNAs is associated with increased RNA polymerase II (Pol II)-mediated transcription coupled with failure of degradation by the MTREX (SKIV2L2) RNA helicase, a member of the RNA exosome complex whose expression is prematurely terminated by CDK12/13 inhibition. Altogether, these findings provide new insights into Pol II-mediated transcriptional regulation by CDK12/13 within the nucleolus.

cancer biology↗