Cargando…

Improved Gene Fusion Detection in Childhood Cancer Diagnostics Using RNA Sequencing

Gene fusions play a significant role in cancer etiology, making their detection crucial for accurate diagnosis, prognosis, and determining therapeutic targets. Current diagnostic methods largely focus on either targeted or low-resolution genome-wide techniques, which may be unable to capture rare ev...

Descripción completa

Detalles Bibliográficos
Autores principales: Hehir-Kwa, Jayne Y., Koudijs, Marco J., Verwiel, Eugene T. P., Kester, Lennart A., van Tuil, Marc, Strengman, Eric, Buijs, Arjan, Kranendonk, Mariëtte E. G., Hiemcke-Jiwa, Laura S., de Haas, Valerie, van de Geer, Ellen, de Leng, Wendy, van der Lugt, Jasper, Lijnzaad, Philip, Holstege, Frank C. P., Kemmeren, Patrick, Tops, Bastiaan B. J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer Health 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8830514/
https://www.ncbi.nlm.nih.gov/pubmed/35085008
http://dx.doi.org/10.1200/PO.20.00504
_version_ 1784648289069563904
author Hehir-Kwa, Jayne Y.
Koudijs, Marco J.
Verwiel, Eugene T. P.
Kester, Lennart A.
van Tuil, Marc
Strengman, Eric
Buijs, Arjan
Kranendonk, Mariëtte E. G.
Hiemcke-Jiwa, Laura S.
de Haas, Valerie
van de Geer, Ellen
de Leng, Wendy
van der Lugt, Jasper
Lijnzaad, Philip
Holstege, Frank C. P.
Kemmeren, Patrick
Tops, Bastiaan B. J.
author_facet Hehir-Kwa, Jayne Y.
Koudijs, Marco J.
Verwiel, Eugene T. P.
Kester, Lennart A.
van Tuil, Marc
Strengman, Eric
Buijs, Arjan
Kranendonk, Mariëtte E. G.
Hiemcke-Jiwa, Laura S.
de Haas, Valerie
van de Geer, Ellen
de Leng, Wendy
van der Lugt, Jasper
Lijnzaad, Philip
Holstege, Frank C. P.
Kemmeren, Patrick
Tops, Bastiaan B. J.
author_sort Hehir-Kwa, Jayne Y.
collection PubMed
description Gene fusions play a significant role in cancer etiology, making their detection crucial for accurate diagnosis, prognosis, and determining therapeutic targets. Current diagnostic methods largely focus on either targeted or low-resolution genome-wide techniques, which may be unable to capture rare events or both fusion partners. We investigate if RNA sequencing can overcome current limitations with traditional diagnostic techniques to identify gene fusion events. METHODS: We first performed RNA sequencing on a validation cohort of 24 samples with a known gene fusion event, after which a prospective pan-pediatric cancer cohort (n = 244) was tested by RNA sequencing in parallel to existing diagnostic procedures. This cohort included hematologic malignancies, tumors of the CNS, solid tumors, and suspected neoplastic samples. All samples were processed in the routine diagnostic workflow and analyzed for gene fusions using standard-of-care methods and RNA sequencing. RESULTS: We identified a clinically relevant gene fusion in 83 of 244 cases in the prospective cohort. Sixty fusions were detected by both routine diagnostic techniques and RNA sequencing, and one fusion was detected only in routine diagnostics, but an additional 24 fusions were detected solely by RNA sequencing. RNA sequencing, therefore, increased the diagnostic yield by 38%-39%. In addition, RNA sequencing identified both gene partners involved in the gene fusion, in contrast to most routine techniques. For two patients, the newly identified fusion by RNA sequencing resulted in treatment with targeted agents. CONCLUSION: We show that RNA sequencing is sufficiently robust for gene fusion detection in routine diagnostics of childhood cancers and can make a difference in treatment decisions.
format Online
Article
Text
id pubmed-8830514
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Wolters Kluwer Health
record_format MEDLINE/PubMed
spelling pubmed-88305142022-02-11 Improved Gene Fusion Detection in Childhood Cancer Diagnostics Using RNA Sequencing Hehir-Kwa, Jayne Y. Koudijs, Marco J. Verwiel, Eugene T. P. Kester, Lennart A. van Tuil, Marc Strengman, Eric Buijs, Arjan Kranendonk, Mariëtte E. G. Hiemcke-Jiwa, Laura S. de Haas, Valerie van de Geer, Ellen de Leng, Wendy van der Lugt, Jasper Lijnzaad, Philip Holstege, Frank C. P. Kemmeren, Patrick Tops, Bastiaan B. J. JCO Precis Oncol Original Reports Gene fusions play a significant role in cancer etiology, making their detection crucial for accurate diagnosis, prognosis, and determining therapeutic targets. Current diagnostic methods largely focus on either targeted or low-resolution genome-wide techniques, which may be unable to capture rare events or both fusion partners. We investigate if RNA sequencing can overcome current limitations with traditional diagnostic techniques to identify gene fusion events. METHODS: We first performed RNA sequencing on a validation cohort of 24 samples with a known gene fusion event, after which a prospective pan-pediatric cancer cohort (n = 244) was tested by RNA sequencing in parallel to existing diagnostic procedures. This cohort included hematologic malignancies, tumors of the CNS, solid tumors, and suspected neoplastic samples. All samples were processed in the routine diagnostic workflow and analyzed for gene fusions using standard-of-care methods and RNA sequencing. RESULTS: We identified a clinically relevant gene fusion in 83 of 244 cases in the prospective cohort. Sixty fusions were detected by both routine diagnostic techniques and RNA sequencing, and one fusion was detected only in routine diagnostics, but an additional 24 fusions were detected solely by RNA sequencing. RNA sequencing, therefore, increased the diagnostic yield by 38%-39%. In addition, RNA sequencing identified both gene partners involved in the gene fusion, in contrast to most routine techniques. For two patients, the newly identified fusion by RNA sequencing resulted in treatment with targeted agents. CONCLUSION: We show that RNA sequencing is sufficiently robust for gene fusion detection in routine diagnostics of childhood cancers and can make a difference in treatment decisions. Wolters Kluwer Health 2022-01-27 /pmc/articles/PMC8830514/ /pubmed/35085008 http://dx.doi.org/10.1200/PO.20.00504 Text en © 2022 by American Society of Clinical Oncology https://creativecommons.org/licenses/by/4.0/Licensed under the Creative Commons Attribution 4.0 License: http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/)
spellingShingle Original Reports
Hehir-Kwa, Jayne Y.
Koudijs, Marco J.
Verwiel, Eugene T. P.
Kester, Lennart A.
van Tuil, Marc
Strengman, Eric
Buijs, Arjan
Kranendonk, Mariëtte E. G.
Hiemcke-Jiwa, Laura S.
de Haas, Valerie
van de Geer, Ellen
de Leng, Wendy
van der Lugt, Jasper
Lijnzaad, Philip
Holstege, Frank C. P.
Kemmeren, Patrick
Tops, Bastiaan B. J.
Improved Gene Fusion Detection in Childhood Cancer Diagnostics Using RNA Sequencing
title Improved Gene Fusion Detection in Childhood Cancer Diagnostics Using RNA Sequencing
title_full Improved Gene Fusion Detection in Childhood Cancer Diagnostics Using RNA Sequencing
title_fullStr Improved Gene Fusion Detection in Childhood Cancer Diagnostics Using RNA Sequencing
title_full_unstemmed Improved Gene Fusion Detection in Childhood Cancer Diagnostics Using RNA Sequencing
title_short Improved Gene Fusion Detection in Childhood Cancer Diagnostics Using RNA Sequencing
title_sort improved gene fusion detection in childhood cancer diagnostics using rna sequencing
topic Original Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8830514/
https://www.ncbi.nlm.nih.gov/pubmed/35085008
http://dx.doi.org/10.1200/PO.20.00504
work_keys_str_mv AT hehirkwajayney improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT koudijsmarcoj improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT verwieleugenetp improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT kesterlennarta improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT vantuilmarc improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT strengmaneric improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT buijsarjan improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT kranendonkmarietteeg improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT hiemckejiwalauras improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT dehaasvalerie improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT vandegeerellen improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT delengwendy improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT vanderlugtjasper improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT lijnzaadphilip improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT holstegefrankcp improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT kemmerenpatrick improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing
AT topsbastiaanbj improvedgenefusiondetectioninchildhoodcancerdiagnosticsusingrnasequencing