Jakub Mieczkowski
Affiliations: | Nencki Institute, Warsaw, Poland, Warszawa, mazowieckie, Poland |
Website:
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Parents
Sign in to add mentorBozena Kaminska | grad student | 2008-2013 | Nencki Institute, Warsaw, Poland |
Collaborators
Sign in to add collaboratorRobert E. Kingston | collaborator | (Chemistry Tree) | |
Charles W. M. Roberts | collaborator | (Cell Biology Tree) |
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Publications
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Maleszewska M, Wojnicki K, Mieczkowski J, et al. (2024) DMRTA2 supports glioma stem-cell mediated neovascularization in glioblastoma. Cell Death & Disease. 15: 228 |
Leszczynska KB, Freitas-Huhtamäki A, Jayaprakash C, et al. (2024) H2A.Z histone variants facilitate HDACi-dependent removal of H3.3K27M mutant protein in pediatric high-grade glioma cells. Cell Reports. 43: 113707 |
Leszczynska KB, Dzwigonska M, Estephan H, et al. (2023) Hypoxia-mediated regulation of DDX5 through decreased chromatin accessibility and post-translational targeting restricts R-loop accumulation. Molecular Oncology |
Amin A, Kadam S, Mieczkowski J, et al. (2023) Disruption of polyhomeotic polymerization decreases nucleosome occupancy and alters genome accessibility. Life Science Alliance. 6 |
Perdyan A, Lawrynowicz U, Horbacz M, et al. (2022) Integration of single-cell RNA sequencing and spatial transcriptomics to reveal the glioblastoma heterogeneity. F1000research. 11: 1180 |
Stępniak K, Machnicka MA, Mieczkowski J, et al. (2021) Author Correction: Mapping chromatin accessibility and active regulatory elements reveals pathological mechanisms in human gliomas. Nature Communications. 12: 7218 |
Leszczynska KB, Jayaprakash C, Kaminska B, et al. (2021) Emerging Advances in Combinatorial Treatments of Epigenetically Altered Pediatric High-Grade H3K27M Gliomas. Frontiers in Genetics. 12: 742561 |
Stępniak K, Machnicka MA, Mieczkowski J, et al. (2021) Mapping chromatin accessibility and active regulatory elements reveals pathological mechanisms in human gliomas. Nature Communications. 12: 3621 |
Ochocka N, Segit P, Walentynowicz KA, et al. (2021) Single-cell RNA sequencing reveals functional heterogeneity of glioma-associated brain macrophages. Nature Communications. 12: 1151 |
Ciechomska IA, Gielniewski B, Wojtas B, et al. (2020) EGFR/FOXO3a/BIM signaling pathway determines chemosensitivity of BMP4-differentiated glioma stem cells to temozolomide. Experimental & Molecular Medicine |