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Ullrich, V.

Publications and source records attributed to Ullrich, V..

2 recordsLinked to original sources

Redirecting resistance evolution in BRAFV600 melanoma by inhibition of the peroxiredoxin-thioredoxin system

Drug-tolerant persister cells (DTPs) exhibit remarkable cell state heterogeneity and phenotypic evolvability. However, the central question of how DTPs epigenetically coordinate their metabolic flexibility to adapt early to therapeutic stress remains unanswered. We have recently shown that the histone demethylase KDM5B, which is intrinsically expressed in differentiated melanoma DTPs, reprograms the metabolic cell landscape. However, the exact mechanism by which KDM5B affects underlying metabolic enzymes, and whether this reveals new druggable vulnerabilities, remain unknown. By transcriptional and epigenetic profiling of BRAFV600 melanoma cells following KDM5B gene silencing, we discovered a direct molecular axis between the epigenetic regulator KDM5B and the PRDX/TXN ROS detoxification system. This metabolic axis is regulated independently of KDM5Bs demethylase activity. Furthermore, RNAi approaches and the pharmacological inhibition of the PRDX/TXN system led to ROS-induced cell death in differentiated melanoma DTPs and a delay of resistance development to MAPK inhibition. This process was independent of lipid-ROS-driven ferroptosis. Additionally, single-cell transcriptome analyses from pre-clinical melanoma models under continuous MAPK inhibitory treatment demonstrated altered cellular differentiation dynamics, with a reduction in the early evolution into the mesenchymal DTP state under concomitant PRDX inhibition. Interestingly, the degree of melanoma cell state differentiation at the onset of treatment was a major determinant for the transition towards the neural crest-like DTP state. Our study identified a high degree of epigenetic-metabolic connectivity and flexibility within the melanoma DTP pool and urges caution with single redox pathway-targeted strategies for tumor elimination in the future. Prospectively, our results point towards a new resistance targeting strategy for BRAFV600 melanoma patients based on pharmacological re-direction of the evolution of melanoma cell states already at therapy onset. HighlightsO_LITranscriptional and epigenetic profiling identified KDM5B as a regulator of the PRDX/TXN-ROS detoxification system C_LIO_LIPRDX inhibition increases the vulnerability of KDM5Bhigh DTPs to ROS, independent of ferroptosis C_LIO_LIPRDX inhibition delays resistance to MAPK inhibition in BRAFV600 melanoma cells C_LIO_LILongitudinal single-cell transcriptome analysis reveals that PRDX inhibition re-directs early DTP evolution C_LIO_LIPRDX/TXN gene expression is predictive for melanoma patient survival C_LI

cancer biology↗

TERT expression is associated with metastasis from thin primaries, exhausted CD4+ T cells in melanoma and with DNA repair across cancer entities

Telomerase reverse transcriptase (TERT) promoter mutations occur frequently in cancer, have been associated with increased TERT expression and cell proliferation, and could potentially influence therapeutic regimens for melanoma. As the role of TERT expression in malignant melanoma and the non-canonical functions of TERT remain understudied, we aimed to extend the current knowledge on both types of TERT alterations with respect to survival, further clinical and molecular parameters. Using multivariate models, TERT alterations were not consistently associated with survival in melanoma cohorts under immune checkpoint inhibition. The presence of CD4+ T cells increased with TERT expression and correlated with the expression of exhaustion markers. While the frequency of promoter mutations did not change with Breslow thickness, TERT expression was increased in metastases arising from thinner primaries. Enrichment analyses of single-cell RNA-seq showed TERT expression is associated with genes involved in cell migration and dynamics of the extracellular matrix, supporting the role of TERT during invasion and metastasis. Co-regulated genes in several bulk tumors and single-cell RNA-seq cohorts also indicated non-canonical functions of TERT related to mitochondrial DNA stability and nuclear DNA repair in line with increased TERT expression during chromothripsis (PCAWG cohort) and under hypoxic conditions (PCAWG and SKCM cohorts). Also in glioblastoma (Klughammer and PCAWG cohorts), TERT was co-expressed with DNA repair genes. Our results thus indicate a relevance of TERT expression in melanoma metastasis, T cell dysfunction and DNA repair across cancer entities. SignificanceIn addition to the frequently occurring TERT promoter mutations, we test TERT expression with respect to clinical and molecular associates, extending the canonical role of TERT in melanoma and other cancer entities.

cancer biology↗