Search bioRxiv⌕ Search

Biology subjects

Vizkeleti, L.

Publications and source records attributed to Vizkeleti, L..

4 recordsLinked to original sources

Nucleotide excision repair deficiency is a targetable therapeutic vulnerability in clear cell renal cell carcinoma.

PurposeDue to a demonstrated lack of DNA repair deficiencies, clear cell renal cell carcinoma (ccRCC) has not benefitted from targeted synthetic lethality-based therapies. We investigated whether nucleotide excision repair (NER) deficiency is present in an identifiable subset of ccRCC cases that would render those tumors sensitive to therapy targeting this specific DNA repair pathway aberration. Experimental DesignWe used functional assays that detect UV-induced 6-4 pyrimidine-pyrimidone photoproducts to quantify NER deficiency in ccRCC cell lines. We also measured sensitivity to irofulven, an experimental cancer therapeutic agent that specifically targets cells with inactivated transcription-coupled nucleotide excision repair (TC-NER). In order to detect NER deficiency in clinical biopsies, we assessed whole exome sequencing data for the presence of an NER deficiency associated mutational signature previously identified in ERCC2 mutant bladder cancer. ResultsFunctional assays showed NER deficiency in ccRCC cells. Irofulven sensitivity increased in some cell lines. Prostaglandin reductase 1 (PTGR1), which activates irofulven, was also associated with this sensitivity. Next generation sequencing data of the cell lines showed NER deficiency-associated mutational signatures. A significant subset of ccRCC patients had the same signature and high PTGR1 expression. ConclusionsccRCC cell line based analysis showed that NER deficiency is likely present in this cancer type. Approximately 10% of ccRCC patients in the TCGA cohort showed mutational signatures consistent with ERCC2 inactivation associated NER deficiency and also substantial levels of PTGR1 expression. These patients may be responsive to irofulven, a previously abandoned anticancer agent that has minimal activity in NER-proficient cells. Translational relevanceDNA repair deficiencies can be therapeutically targeted by synthetic lethal-based strategies in cancer. However, clear cell renal cell carcinoma (ccRCC) has not benefitted from this therapeutic approach due to a lack of evidence for the presence of specific DNA repair pathway deficiencies. Here, we demonstrate that ccRCC harbors a therapeutically targetable DNA repair pathway aberration, nucleotide excision repair (NER) deficiency. ccRCC cell lines displayed robust signs of NER deficiency as determined by functional assays and some of these cell lines also displayed NER deficiency induced mutational signatures. These cell lines are also sensitive to irofulven, an abandoned anticancer agent that creates DNA lesions which can only be repaired by the NER pathway. We estimate that up to 10% of ccRCC cases may respond to NER-directed therapy with irofulven based on NER deficiency associated mutational signatures and PTGR1 expression levels, which is an enzyme required to activate irofulven.

cancer biology↗

Epigenetic Regulation Explains The Functionality Behind Colon Cancer Specific Biomarker Septin9

Despite advancements in early cancer detection and prevention methods, colorectal cancer (CRC) remains a significant global health problem. It is the third most common cancer and the second leading cause of cancer-related deaths worldwide. Additionally, there has been a marked increase of incidence in young adults, and the reasons for this tendency are not fully understood. Therefore, the need for more effective diagnostic methods of assessing disease risk at early stage is crucial. One of the newly developed blood-based circulating biomarkers with promising potential is the short hypermethylated region located at the Septin9 intronic region. Several clinical studies have proven its performance and applicability. However, the molecular mechanism behind this consistent and recurrent feature present in most of the CRC and related precancerous stages and why it is specific and advantageous for CRC development are poorly understood. Here, we used comprehensive epigenetic and gene expression profile analyses from different sources of human clinical samples and cell line data to link specific hypermethylation events at the Septin9 intronic loci, which initiate alternative transcription of the Septin9 gene. Through our investigation of TCGA-COAD RNA-seq samples (n=287), we found that there was no significant difference in global Septin9 levels between normal and tumor samples. However, we did observe a significant alteration in the transcript variant ratio between v1 and v2, suggesting the use of an alternative promoter. Our findings were further supported by our analysis of ATAC-seq data, which revealed that the v2 promoter conferred higher chromatin accessibility, which correlated with the expression of the v2 isoform. However, this was not supported by promoter or enhancer activity as measured by H3K27ac signals. Hypermethylation at the v2 promoter was confirmed in tumor samples, providing a possible explanation for the switch in variants. Protein sequence analysis confirmed small differences between Septin9 variant A(v1) and B(v2). However, AlphaFold2 indicates a substantial difference at the N terminus, which could impact protein phosphorylation. We hypothesize, that variant A (v1) and variant B (v2) are required for normal cell functions but shifting the balance towards v1 is more favourable for the tumor. Although very little is known about Septin9 and its function in CRC biology, we are confident that our study will help to emphasize the importance of understanding regulatory mechanisms behind tumor-specific biomarkers and helps to improve the application.

cancer biology↗

Proteogenomics Reveals how Metastatic Melanoma Modulates the Immune System to Allow Immune Evasion

Malignant melanoma (MM) develops from the melanocytes and in its advanced stage is the most aggressive type of skin cancer. Here we report a comprehensive analysis on a prospective cohort study, including non-tumor, primary and metastasis tissues (n=77) with the corresponding plasma samples (n=56) from patients with malignant melanoma. The tumors and surrounding tissues were characterized with a combination of high-throughput analyses including quantitative proteomics, phosphoproteomics, acetylomics, and whole exome sequencing (WES) combined with in-depth histopathology analysis. Melanoma cell proliferation highly correlates with dysregulation at the proteome, at the posttranslational- and at the transcriptome level. Some of the changes were also verified in the plasma proteome. The metabolic reprogramming in melanoma includes upregulation of the glycolysis and the oxidative phosphorylation, and an increase in glutamine consumption, while downregulated proteins involved in the degradation of amino acids, fatty acids, and the extracellular matrix (ECM) receptor interaction. The pathways most dysregulated in MM including the MAP kinases-, the PI3K-AKT signaling, and the calcium homeostasis, are among the most affected by mutations, thus, dysregulation in these pathways can be manifested as drivers in melanoma development and progression. The phosphoproteome analysis combined with target-based prediction mapped 75% of the human kinome. Melanoma cell proliferation was driven by two key factors: i) metabolic reprogramming leading to upregulation of the glycolysis and oxidative phosphorylation, supported by HIF-1 signaling pathway and mitochondrial translation; and ii) a dysregulation of the immune system response, which was mirrored by immune system processes in the plasma proteome. Regulation of the melanoma acetylome and expression of deacetylase enzymes discriminated between groups based on tissue origin and proliferation, indicating a way to guide the successful use of HDAC inhibitors in melanoma. The disease progression toward metastasis is driven by the downregulation of the immune system response, including MHC class I and II, which allows tumors to evade immune surveillance. Altogether, new evidence is provided at different molecular levels to allow improved understanding of the melanoma progression, ultimately contributing to better treatment strategies. TOC figure O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=157 SRC="FIGDIR/small/439245v1_ufig1.gif" ALT="Figure 1"> View larger version (58K): org.highwire.dtl.DTLVardef@937db9org.highwire.dtl.DTLVardef@1230b57org.highwire.dtl.DTLVardef@1bd889eorg.highwire.dtl.DTLVardef@547d90_HPS_FORMAT_FIGEXP M_FIG C_FIG

cancer biology↗

Influence of mutagenic versus non-mutagenic pre-operative chemotherapy on the immune infiltration of breast cancer

BackgroundChemotherapeutic agents are often mutagenic. Induction of mutation associated neo-epitopes is one of the mechanisms by which chemotherapy is thought to increase the number of tumor-infiltrating lymphocytes, but the clinical relevance of this triggered immune response is not known.\n\nWe decided to investigate, whether treatment with various chemotherapeutic agents with significantly different mutagenic capacity induce a significantly different number of stromal tumor-infiltrating lymphocytes (StrTIL) in the clinical setting.\n\nMethods112 breast carcinoma cases treated with pre-operative chemotherapy were selected for the study. According to chemotherapy regimen 28/112 patients received platinum-based, 42/112 cyclophosphamide-based and 42/112 anthracycline-based chemotherapy. The percentage of stromal tumor-infiltrating lymphocytes (StrTIL) was evaluated on hematoxylineosin stained slides of pre-treatment core biopsy (pre-StrTIL) and post-treatment surgical tumor samples (post-StrTIL), according to the most recent recommendation of International TILs Working Group. In survival analyses, TIL changes ({Delta}StrTIL) were calculated from the difference between post-StrTIL and pre-StrTIL.\n\nResultsOf the 112 cases, 58.0% (n=65) were hormone receptor (HR) positive and 42.0% (n=47) were HR negative. There was a trend of higher post-StrTIL compared to pre-StrTIL (median 6.25% vs. 3.00%; p<0.001). When analyzing the pre-StrTIL and post-StrTIL among the three treatment groups, we experienced significant StrTIL increase independently of the treatment applied. Based on the results of survival analyses both post-StrTIL and {Delta}StrTIL was found to be independent prognostic factor in HR negative cases. Each 1% increase in post-StrTIL reduced the hazard of distant metastases development by 2.6% (hazard ratio: 0.974; CI: 0.948-1.000; p=0.05) and for each 1% {Delta}StrTIL increment, the risk of distant metastases was reduced by 4.3% (hazard ratio: 0.957; CI: 0.932-0.983; p=0.001). The prognostic role of StrTIL in HR positive cases could not be proven.\n\nConclusionsStrTIL expression might be stimulated by highly (platinum), moderately (cyclophosphamide) and marginally (taxane, anthracycline) mutagenic chemotherapeutic agents. Increase in StrTIL in residual cancer compared to pre-treatment tumor tissue is associated with improved distant metastasis-free survival in cases with HR negative breast carcinoma.

cancer biology↗