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Supplementary Tables 1-15 from Genomically Complex Human Angiosarcoma and Canine Hemangiosarcoma Establish Convergent Angiogenic Transcriptional Programs Driven by Novel Gene Fusions

Authors :
Jaime F. Modiano
Kerstin Lindblad-Toh
Matthew Breen
Elinor K. Karlsson
Jason Turner-Maier
Ross Swofford
Ingegerd Elvers
Colleen L. Forster
LeAnn Oseth
Paari Murugan
Michael A. Linden
Ashley J. Schulte
Nuojin Cheng
Yoon Tae Kim
Jung Min Song
Aaron L. Sarver
Rachael Thomas
Kate Megquier
Jong Hyuk Kim
Publication Year :
2023
Publisher :
American Association for Cancer Research (AACR), 2023.

Abstract

Table S1. Demographic and pathological features of human patients with angiosarcoma Table S2. Demographic and pathological features of dogs with HSA Table S3. Primary antibodies for immunohistochemical evaluation Table S4. Gene ontology and biological functions of fusion partner genes in human angiosarcomas Table S5. Gene ontology and biological functions of fusion partner genes in canine HSAs Table S6. Detection of fusion genes in canine HSAs by RT-PCR Table S7. Biological functions associated with 490 upregulated genes in human angiosarcomas Table S8. Association of frequency between fusion genes, TP53 and PIK3CA mutations Table S9. Association of fusion genes with dog signalment and tumor histology Table S10. Association of frequency between fusion genes, TP53 and PIK3CA mutations Table S11. 41 differentially expressed genes in PF (n = 4) compared to P (n = 9) group Table S12. 212 differentially expressed genes in PF (n = 4) compared to PK (n = 6) group Table S13. 377 differentially expressed genes in PF (n = 4) compared to PFK (n = 4) group Table S14. Immunohistochemical features of human angiosarcomas Table S15. Immunohistochemical features of canine HSAs

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....35ab93e5f9c6d85ffd7e05a785309457
Full Text :
https://doi.org/10.1158/1541-7786.22526675