Cargando…

ALK, ROS1, RET and NTRK1–3 Gene Fusions in Colorectal and Non-Colorectal Microsatellite-Unstable Cancers

This study aimed to conduct a comprehensive analysis of actionable gene rearrangements in tumors with microsatellite instability (MSI). The detection of translocations involved tests for 5′/3′-end expression imbalance, variant-specific PCR and RNA-based next generation sequencing (NGS). Gene fusions...

Descripción completa

Detalles Bibliográficos
Autores principales: Mulkidjan, Rimma S., Saitova, Evgeniya S., Preobrazhenskaya, Elena V., Asadulaeva, Karimat A., Bubnov, Mikhail G., Otradnova, Ekaterina A., Terina, Darya M., Shulga, Sofia S., Martynenko, Darya E., Semina, Maria V., Belogubova, Evgeniya V., Tiurin, Vladislav I., Amankwah, Priscilla S., Martianov, Aleksandr S., Imyanitov, Evgeny N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10488195/
https://www.ncbi.nlm.nih.gov/pubmed/37686416
http://dx.doi.org/10.3390/ijms241713610
_version_ 1785103421483778048
author Mulkidjan, Rimma S.
Saitova, Evgeniya S.
Preobrazhenskaya, Elena V.
Asadulaeva, Karimat A.
Bubnov, Mikhail G.
Otradnova, Ekaterina A.
Terina, Darya M.
Shulga, Sofia S.
Martynenko, Darya E.
Semina, Maria V.
Belogubova, Evgeniya V.
Tiurin, Vladislav I.
Amankwah, Priscilla S.
Martianov, Aleksandr S.
Imyanitov, Evgeny N.
author_facet Mulkidjan, Rimma S.
Saitova, Evgeniya S.
Preobrazhenskaya, Elena V.
Asadulaeva, Karimat A.
Bubnov, Mikhail G.
Otradnova, Ekaterina A.
Terina, Darya M.
Shulga, Sofia S.
Martynenko, Darya E.
Semina, Maria V.
Belogubova, Evgeniya V.
Tiurin, Vladislav I.
Amankwah, Priscilla S.
Martianov, Aleksandr S.
Imyanitov, Evgeny N.
author_sort Mulkidjan, Rimma S.
collection PubMed
description This study aimed to conduct a comprehensive analysis of actionable gene rearrangements in tumors with microsatellite instability (MSI). The detection of translocations involved tests for 5′/3′-end expression imbalance, variant-specific PCR and RNA-based next generation sequencing (NGS). Gene fusions were detected in 58/471 (12.3%) colorectal carcinomas (CRCs), 4/69 (5.8%) gastric cancers (GCs) and 3/65 (4.6%) endometrial cancers (ECs) (ALK: 8; RET: 12; NTRK1: 24; NTRK2: 2; NTRK3: 19), while none of these alterations were observed in five cervical carcinomas (CCs), four pancreatic cancers (PanCs), three cholangiocarcinomas (ChCs) and two ovarian cancers (OCs). The highest frequency of gene rearrangements was seen in KRAS/NRAS/BRAF wild-type colorectal carcinomas (53/204 (26%)). Surprisingly, as many as 5/267 (1.9%) KRAS/NRAS/BRAF-mutated CRCs also carried tyrosine kinase fusions. Droplet digital PCR (ddPCR) analysis of the fraction of KRAS/NRAS/BRAF mutated gene copies in kinase-rearranged tumors indicated that there was simultaneous co-occurrence of two activating events in cancer cells, but not genetic mosaicism. CRC patients aged above 50 years had a strikingly higher frequency of translocations as compared to younger subjects (56/365 (15.3%) vs. 2/106 (1.9%), p = 0.002), and this difference was particularly pronounced for tumors with normal KRAS/NRAS/BRAF status (52/150 (34.7%) vs. 1/54 (1.9%), p = 0.001). There were no instances of MSI in 56 non-colorectal tumors carrying ALK, ROS1, RET or NTRK1 rearrangements. An analysis of tyrosine kinase gene translocations is particularly feasible in KRAS/NRAS/BRAF wild-type microsatellite-unstable CRCs, although other categories of tumors with MSI also demonstrate moderate occurrence of these events.
format Online
Article
Text
id pubmed-10488195
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-104881952023-09-09 ALK, ROS1, RET and NTRK1–3 Gene Fusions in Colorectal and Non-Colorectal Microsatellite-Unstable Cancers Mulkidjan, Rimma S. Saitova, Evgeniya S. Preobrazhenskaya, Elena V. Asadulaeva, Karimat A. Bubnov, Mikhail G. Otradnova, Ekaterina A. Terina, Darya M. Shulga, Sofia S. Martynenko, Darya E. Semina, Maria V. Belogubova, Evgeniya V. Tiurin, Vladislav I. Amankwah, Priscilla S. Martianov, Aleksandr S. Imyanitov, Evgeny N. Int J Mol Sci Communication This study aimed to conduct a comprehensive analysis of actionable gene rearrangements in tumors with microsatellite instability (MSI). The detection of translocations involved tests for 5′/3′-end expression imbalance, variant-specific PCR and RNA-based next generation sequencing (NGS). Gene fusions were detected in 58/471 (12.3%) colorectal carcinomas (CRCs), 4/69 (5.8%) gastric cancers (GCs) and 3/65 (4.6%) endometrial cancers (ECs) (ALK: 8; RET: 12; NTRK1: 24; NTRK2: 2; NTRK3: 19), while none of these alterations were observed in five cervical carcinomas (CCs), four pancreatic cancers (PanCs), three cholangiocarcinomas (ChCs) and two ovarian cancers (OCs). The highest frequency of gene rearrangements was seen in KRAS/NRAS/BRAF wild-type colorectal carcinomas (53/204 (26%)). Surprisingly, as many as 5/267 (1.9%) KRAS/NRAS/BRAF-mutated CRCs also carried tyrosine kinase fusions. Droplet digital PCR (ddPCR) analysis of the fraction of KRAS/NRAS/BRAF mutated gene copies in kinase-rearranged tumors indicated that there was simultaneous co-occurrence of two activating events in cancer cells, but not genetic mosaicism. CRC patients aged above 50 years had a strikingly higher frequency of translocations as compared to younger subjects (56/365 (15.3%) vs. 2/106 (1.9%), p = 0.002), and this difference was particularly pronounced for tumors with normal KRAS/NRAS/BRAF status (52/150 (34.7%) vs. 1/54 (1.9%), p = 0.001). There were no instances of MSI in 56 non-colorectal tumors carrying ALK, ROS1, RET or NTRK1 rearrangements. An analysis of tyrosine kinase gene translocations is particularly feasible in KRAS/NRAS/BRAF wild-type microsatellite-unstable CRCs, although other categories of tumors with MSI also demonstrate moderate occurrence of these events. MDPI 2023-09-02 /pmc/articles/PMC10488195/ /pubmed/37686416 http://dx.doi.org/10.3390/ijms241713610 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Mulkidjan, Rimma S.
Saitova, Evgeniya S.
Preobrazhenskaya, Elena V.
Asadulaeva, Karimat A.
Bubnov, Mikhail G.
Otradnova, Ekaterina A.
Terina, Darya M.
Shulga, Sofia S.
Martynenko, Darya E.
Semina, Maria V.
Belogubova, Evgeniya V.
Tiurin, Vladislav I.
Amankwah, Priscilla S.
Martianov, Aleksandr S.
Imyanitov, Evgeny N.
ALK, ROS1, RET and NTRK1–3 Gene Fusions in Colorectal and Non-Colorectal Microsatellite-Unstable Cancers
title ALK, ROS1, RET and NTRK1–3 Gene Fusions in Colorectal and Non-Colorectal Microsatellite-Unstable Cancers
title_full ALK, ROS1, RET and NTRK1–3 Gene Fusions in Colorectal and Non-Colorectal Microsatellite-Unstable Cancers
title_fullStr ALK, ROS1, RET and NTRK1–3 Gene Fusions in Colorectal and Non-Colorectal Microsatellite-Unstable Cancers
title_full_unstemmed ALK, ROS1, RET and NTRK1–3 Gene Fusions in Colorectal and Non-Colorectal Microsatellite-Unstable Cancers
title_short ALK, ROS1, RET and NTRK1–3 Gene Fusions in Colorectal and Non-Colorectal Microsatellite-Unstable Cancers
title_sort alk, ros1, ret and ntrk1–3 gene fusions in colorectal and non-colorectal microsatellite-unstable cancers
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10488195/
https://www.ncbi.nlm.nih.gov/pubmed/37686416
http://dx.doi.org/10.3390/ijms241713610
work_keys_str_mv AT mulkidjanrimmas alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT saitovaevgeniyas alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT preobrazhenskayaelenav alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT asadulaevakarimata alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT bubnovmikhailg alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT otradnovaekaterinaa alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT terinadaryam alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT shulgasofias alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT martynenkodaryae alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT seminamariav alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT belogubovaevgeniyav alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT tiurinvladislavi alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT amankwahpriscillas alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT martianovaleksandrs alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers
AT imyanitovevgenyn alkros1retandntrk13genefusionsincolorectalandnoncolorectalmicrosatelliteunstablecancers