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Changes on chromosome 11p15.5 as specific marker for embryonal rhabdomyosarcoma?

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Author
Vícha, AlešORCiD Profile - 0000-0003-3075-5554WoS Profile - J-4774-2014Scopus Profile - 6506952685
Jenčová, PavlaScopus Profile - 57194511826
Nováková Kodetová, DanielaScopus Profile - 6603041889
Štolová, LucieScopus Profile - 57231344400
Voříšková, Dagmar
Vyleťalová, Kristýna
Brož, PetrORCiD Profile - 0000-0002-6779-7718Scopus Profile - 57218917546
Drahokoupilová, EvaScopus Profile - 16026693300
Guha, AnasuyaORCiD Profile - 0000-0001-8297-9491WoS Profile - C-1792-2018Scopus Profile - 57204943795
Kopecká, MarieORCiD Profile - 0009-0000-4345-3964WoS Profile - JAD-2201-2023
Krsková, LenkaORCiD Profile - 0000-0002-6113-6310Scopus Profile - 6602653517

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Publication date
2023
Published in
Genes, Chromosomes & Cancer
Volume / Issue
62 (12)
ISBN / ISSN
ISSN: 1045-2257
ISBN / ISSN
eISSN: 1098-2264
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  • 2. Faculty of Medicine
  • 3. Faculty of Medicine

This publication has a published version with DOI 10.1002/gcc.23194

Abstract
Rhabdomyosarcomas (RMS) constitute a heterogeneous spectrum of tumors with respect to clinical behavior and tumor morphology. The paternal uniparental disomy (pUPD) of 11p15.5 is a molecular change described mainly in embryonal RMS. In addition to LOH, UPD, the MLPA technique (ME030kit) also determines copy number variants and methylation of H19 and KCNQ1OT1 genes, which have not been systematically investigated in RMS. All 127 RMS tumors were divided by histology and PAX status into four groups, pleomorphic histology (n = 2); alveolar RMS PAX fusion-positive (PAX+; n = 39); embryonal RMS (n = 70) and fusion-negative RMS with alveolar pattern (PAX-RMS-AP; n = 16). The following changes were detected; negative (n = 21), pUPD (n = 75), gain of paternal allele (n = 9), loss of maternal allele (n = 9), hypermethylation of H19 (n = 6), hypomethylation of KCNQ1OT1 (n = 6), and deletion of CDKN1C (n = 1). We have shown no difference in the frequency of pUPD 11p15.5 in all groups. Thus, we have proven that changes in the 11p15.5 are not only specific to the embryonal RMS (ERMS), but are often also present in alveolar RMS (ARMS). We have found changes that have not yet been described in RMS. We also demonstrated new potential diagnostic markers for ERMS (paternal duplication and UPD of whole chromosome 11) and for ARMS PAX+ (hypomethylation KCNQ1OT1).
Keywords
CDKN1C, H19, KCNQ1OT1, PAX, UPD, alveolar RMS, embryonal RMS
Permanent link
https://hdl.handle.net/20.500.14178/1999
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WOS:001041476000001
SCOPUS:2-s2.0-85166634411
PUBMED:37530573
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