Comprehensive DSRCT multi‐omics analyses unveil CACNA2D2 as a diagnostic hallmark and super‐enhancer‐driven EWSR1::WT1 signature gene
- DOI
- 10.1002/cac2.70015
- Published
- 2025-03-15
- Container
- Cancer Communications
- Publisher
- American Association for the Advancement of Science (AAAS)
- Open access
- unknown
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Cite this work
BibTeX
@article{allodium:10.1002/cac2.70015,
title = {Comprehensive DSRCT multi‐omics analyses unveil CACNA2D2 as a diagnostic hallmark and super‐enhancer‐driven EWSR1::WT1 signature gene},
author = {Florian Henning Geyer and Alina Ritter and Seneca Kinn‐Gurzo and Tobias Faehling and Jing Li and Armin Jarosch and Carine Ngo and Endrit Vinca and Karim Aljakouch and Azhar Orynbek and Shunya Ohmura and Thomas Kirchner and Roland Imle and Laura Romero‐Pérez and Juan Díaz‐Martín and Stefanie Bertram and Enrique de Álava and Clémence Henon and Sophie Postel‐Vilnay and Ana Banito and Martin Sill and Yvonne Versleijen‐Jonkers and Benjamin Friedrich Berthold Mayer and Martin Ebinger and Monika Sparber‐Sauer and Sabine Stegmaier and Daniel Baumhoer and Wolfgang Hartmann and Jeroen Krijgsveld and David Horst and Olivier Delattre and Patrick Joseph Grohar and Thomas Georg Phillip Grünewald and Florencia Cidre‐Aranaz},
year = {2025},
journal = {Cancer Communications},
doi = {10.1002/cac2.70015},
url = {https://doi.org/10.1002/cac2.70015}
}RIS
TY - JOUR TI - Comprehensive DSRCT multi‐omics analyses unveil CACNA2D2 as a diagnostic hallmark and super‐enhancer‐driven EWSR1::WT1 signature gene AU - Florian Henning Geyer AU - Alina Ritter AU - Seneca Kinn‐Gurzo AU - Tobias Faehling AU - Jing Li AU - Armin Jarosch AU - Carine Ngo AU - Endrit Vinca AU - Karim Aljakouch AU - Azhar Orynbek AU - Shunya Ohmura AU - Thomas Kirchner AU - Roland Imle AU - Laura Romero‐Pérez AU - Juan Díaz‐Martín AU - Stefanie Bertram AU - Enrique de Álava AU - Clémence Henon AU - Sophie Postel‐Vilnay AU - Ana Banito AU - Martin Sill AU - Yvonne Versleijen‐Jonkers AU - Benjamin Friedrich Berthold Mayer AU - Martin Ebinger AU - Monika Sparber‐Sauer AU - Sabine Stegmaier AU - Daniel Baumhoer AU - Wolfgang Hartmann AU - Jeroen Krijgsveld AU - David Horst AU - Olivier Delattre AU - Patrick Joseph Grohar AU - Thomas Georg Phillip Grünewald AU - Florencia Cidre‐Aranaz PY - 2025 JO - Cancer Communications DO - 10.1002/cac2.70015 UR - https://doi.org/10.1002/cac2.70015 ER -
APA
Geyer, F. H., Ritter, A., Kinn‐Gurzo, S., Faehling, T., Li, J., Jarosch, A., Ngo, C., Vinca, E., Aljakouch, K., Orynbek, A., Ohmura, S., Kirchner, T., Imle, R., Romero‐Pérez, L., Díaz‐Martín, J., Bertram, S., Álava, E. D., Henon, C., Postel‐Vilnay, S., Banito, A., Sill, M., Versleijen‐Jonkers, Y., Mayer, B. F. B., Ebinger, M., Sparber‐Sauer, M., Stegmaier, S., Baumhoer, D., Hartmann, W., Krijgsveld, J., Horst, D., Delattre, O., Grohar, P. J., Grünewald, T. G. P., & Cidre‐Aranaz, F. (2025). Comprehensive DSRCT multi‐omics analyses unveil CACNA2D2 as a diagnostic hallmark and super‐enhancer‐driven EWSR1::WT1 signature gene. Cancer Communications. https://doi.org/10.1002/cac2.70015
Source records
- crossref · retrieved 2026-09-26T19:32:10.647Z