Cargando…

Establishment of a Novel In Vitro Model of Endometriosis with Oncogenic KRAS and PIK3CA Mutations for Understanding the Underlying Biology and Molecular Pathogenesis

SIMPLE SUMMARY: Endometriosis is a common gynecological condition that causes pelvic pain and infertility. Despite having normal histological features, several cells bear cancer-associated somatic mutations that result in local tissue invasion but rarely metastasize. Several cancer-associated genes,...

Descripción completa

Detalles Bibliográficos
Autores principales: Hossain, Mohammad Mahmud, Nakayama, Kentaro, Shanta, Kamrunnahar, Razia, Sultana, Ishikawa, Masako, Ishibashi, Tomoka, Yamashita, Hitomi, Sato, Seiya, Iida, Kouji, Kanno, Kosuke, Ishikawa, Noriyoshi, Kiyono, Tohru, Kyo, Satoru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8269352/
https://www.ncbi.nlm.nih.gov/pubmed/34202354
http://dx.doi.org/10.3390/cancers13133174
_version_ 1783720560284401664
author Hossain, Mohammad Mahmud
Nakayama, Kentaro
Shanta, Kamrunnahar
Razia, Sultana
Ishikawa, Masako
Ishibashi, Tomoka
Yamashita, Hitomi
Sato, Seiya
Iida, Kouji
Kanno, Kosuke
Ishikawa, Noriyoshi
Kiyono, Tohru
Kyo, Satoru
author_facet Hossain, Mohammad Mahmud
Nakayama, Kentaro
Shanta, Kamrunnahar
Razia, Sultana
Ishikawa, Masako
Ishibashi, Tomoka
Yamashita, Hitomi
Sato, Seiya
Iida, Kouji
Kanno, Kosuke
Ishikawa, Noriyoshi
Kiyono, Tohru
Kyo, Satoru
author_sort Hossain, Mohammad Mahmud
collection PubMed
description SIMPLE SUMMARY: Endometriosis is a common gynecological condition that causes pelvic pain and infertility. Despite having normal histological features, several cells bear cancer-associated somatic mutations that result in local tissue invasion but rarely metastasize. Several cancer-associated genes, such as KRAS and PIK3CA, are frequently mutated in the endometriotic epithelium. However, the functional behavior and molecular pathogenesis of this disorder remain unclear. In this study, we developed an immortalized endometriotic epithelial cell line with mutations in KRAS and PIK3CA, which are genes associated with aggressive behaviors, such as increased cell migration, invasion, and proliferation. Through microarray analysis, the KRAS- and PIK3CA-specific gene signatures were identified; LOX and PTX3 were found to be responsible for this metastatic behavior. Knockdown of these two genes by siRNA markedly reduced the metastatic ability of the cells. Our findings suggest that inhibition of LOX and PTX3 may be an alternative therapeutic strategy to reduce the incidence of endometriosis. ABSTRACT: Endometriosis-harboring cancer-associated somatic mutations of PIK3CA and KRAS provides new opportunities for studying the multistep processes responsible for the functional and molecular changes in this disease. We aimed to establish a novel in vitro endometriosis model to clarify the functional behavior and molecular pathogenesis of this disorder. Immortalized HMOsisEC10 human ovarian endometriotic epithelial cell line was used in which KRAS and PIK3CA mutations were introduced. Migration, invasion, proliferation, and microarray analyses were performed using KRAS and PIK3CA mutant cell lines. In vitro assays showed that migration, invasion, and proliferation were significantly increased in KRAS and PIK3CA mutant cell lines, indicating that these mutations played causative roles in the aggressive behavior of endometriosis. Microarray analysis identified a cluster of gene signatures; among them, two significantly upregulated cancer-related genes, lysyl oxidase (LOX) and pentraxin3 (PTX3), were associated with cell proliferation, invasion, and migration capabilities. Furthermore, siRNA knockdown of the two genes markedly reduced the metastatic ability of the cells. These results suggest that endometriosis with KRAS or PIK3CA mutations can significantly enhance cell migration, invasion, and proliferation by upregulating LOX and PTX3. We propose that LOX and PTX3 silencing using small molecules could be an alternative therapeutic regimen for severe endometriosis.
format Online
Article
Text
id pubmed-8269352
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-82693522021-07-10 Establishment of a Novel In Vitro Model of Endometriosis with Oncogenic KRAS and PIK3CA Mutations for Understanding the Underlying Biology and Molecular Pathogenesis Hossain, Mohammad Mahmud Nakayama, Kentaro Shanta, Kamrunnahar Razia, Sultana Ishikawa, Masako Ishibashi, Tomoka Yamashita, Hitomi Sato, Seiya Iida, Kouji Kanno, Kosuke Ishikawa, Noriyoshi Kiyono, Tohru Kyo, Satoru Cancers (Basel) Article SIMPLE SUMMARY: Endometriosis is a common gynecological condition that causes pelvic pain and infertility. Despite having normal histological features, several cells bear cancer-associated somatic mutations that result in local tissue invasion but rarely metastasize. Several cancer-associated genes, such as KRAS and PIK3CA, are frequently mutated in the endometriotic epithelium. However, the functional behavior and molecular pathogenesis of this disorder remain unclear. In this study, we developed an immortalized endometriotic epithelial cell line with mutations in KRAS and PIK3CA, which are genes associated with aggressive behaviors, such as increased cell migration, invasion, and proliferation. Through microarray analysis, the KRAS- and PIK3CA-specific gene signatures were identified; LOX and PTX3 were found to be responsible for this metastatic behavior. Knockdown of these two genes by siRNA markedly reduced the metastatic ability of the cells. Our findings suggest that inhibition of LOX and PTX3 may be an alternative therapeutic strategy to reduce the incidence of endometriosis. ABSTRACT: Endometriosis-harboring cancer-associated somatic mutations of PIK3CA and KRAS provides new opportunities for studying the multistep processes responsible for the functional and molecular changes in this disease. We aimed to establish a novel in vitro endometriosis model to clarify the functional behavior and molecular pathogenesis of this disorder. Immortalized HMOsisEC10 human ovarian endometriotic epithelial cell line was used in which KRAS and PIK3CA mutations were introduced. Migration, invasion, proliferation, and microarray analyses were performed using KRAS and PIK3CA mutant cell lines. In vitro assays showed that migration, invasion, and proliferation were significantly increased in KRAS and PIK3CA mutant cell lines, indicating that these mutations played causative roles in the aggressive behavior of endometriosis. Microarray analysis identified a cluster of gene signatures; among them, two significantly upregulated cancer-related genes, lysyl oxidase (LOX) and pentraxin3 (PTX3), were associated with cell proliferation, invasion, and migration capabilities. Furthermore, siRNA knockdown of the two genes markedly reduced the metastatic ability of the cells. These results suggest that endometriosis with KRAS or PIK3CA mutations can significantly enhance cell migration, invasion, and proliferation by upregulating LOX and PTX3. We propose that LOX and PTX3 silencing using small molecules could be an alternative therapeutic regimen for severe endometriosis. MDPI 2021-06-25 /pmc/articles/PMC8269352/ /pubmed/34202354 http://dx.doi.org/10.3390/cancers13133174 Text en © 2021 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 Article
Hossain, Mohammad Mahmud
Nakayama, Kentaro
Shanta, Kamrunnahar
Razia, Sultana
Ishikawa, Masako
Ishibashi, Tomoka
Yamashita, Hitomi
Sato, Seiya
Iida, Kouji
Kanno, Kosuke
Ishikawa, Noriyoshi
Kiyono, Tohru
Kyo, Satoru
Establishment of a Novel In Vitro Model of Endometriosis with Oncogenic KRAS and PIK3CA Mutations for Understanding the Underlying Biology and Molecular Pathogenesis
title Establishment of a Novel In Vitro Model of Endometriosis with Oncogenic KRAS and PIK3CA Mutations for Understanding the Underlying Biology and Molecular Pathogenesis
title_full Establishment of a Novel In Vitro Model of Endometriosis with Oncogenic KRAS and PIK3CA Mutations for Understanding the Underlying Biology and Molecular Pathogenesis
title_fullStr Establishment of a Novel In Vitro Model of Endometriosis with Oncogenic KRAS and PIK3CA Mutations for Understanding the Underlying Biology and Molecular Pathogenesis
title_full_unstemmed Establishment of a Novel In Vitro Model of Endometriosis with Oncogenic KRAS and PIK3CA Mutations for Understanding the Underlying Biology and Molecular Pathogenesis
title_short Establishment of a Novel In Vitro Model of Endometriosis with Oncogenic KRAS and PIK3CA Mutations for Understanding the Underlying Biology and Molecular Pathogenesis
title_sort establishment of a novel in vitro model of endometriosis with oncogenic kras and pik3ca mutations for understanding the underlying biology and molecular pathogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8269352/
https://www.ncbi.nlm.nih.gov/pubmed/34202354
http://dx.doi.org/10.3390/cancers13133174
work_keys_str_mv AT hossainmohammadmahmud establishmentofanovelinvitromodelofendometriosiswithoncogenickrasandpik3camutationsforunderstandingtheunderlyingbiologyandmolecularpathogenesis
AT nakayamakentaro establishmentofanovelinvitromodelofendometriosiswithoncogenickrasandpik3camutationsforunderstandingtheunderlyingbiologyandmolecularpathogenesis
AT shantakamrunnahar establishmentofanovelinvitromodelofendometriosiswithoncogenickrasandpik3camutationsforunderstandingtheunderlyingbiologyandmolecularpathogenesis
AT raziasultana establishmentofanovelinvitromodelofendometriosiswithoncogenickrasandpik3camutationsforunderstandingtheunderlyingbiologyandmolecularpathogenesis
AT ishikawamasako establishmentofanovelinvitromodelofendometriosiswithoncogenickrasandpik3camutationsforunderstandingtheunderlyingbiologyandmolecularpathogenesis
AT ishibashitomoka establishmentofanovelinvitromodelofendometriosiswithoncogenickrasandpik3camutationsforunderstandingtheunderlyingbiologyandmolecularpathogenesis
AT yamashitahitomi establishmentofanovelinvitromodelofendometriosiswithoncogenickrasandpik3camutationsforunderstandingtheunderlyingbiologyandmolecularpathogenesis
AT satoseiya establishmentofanovelinvitromodelofendometriosiswithoncogenickrasandpik3camutationsforunderstandingtheunderlyingbiologyandmolecularpathogenesis
AT iidakouji establishmentofanovelinvitromodelofendometriosiswithoncogenickrasandpik3camutationsforunderstandingtheunderlyingbiologyandmolecularpathogenesis
AT kannokosuke establishmentofanovelinvitromodelofendometriosiswithoncogenickrasandpik3camutationsforunderstandingtheunderlyingbiologyandmolecularpathogenesis
AT ishikawanoriyoshi establishmentofanovelinvitromodelofendometriosiswithoncogenickrasandpik3camutationsforunderstandingtheunderlyingbiologyandmolecularpathogenesis
AT kiyonotohru establishmentofanovelinvitromodelofendometriosiswithoncogenickrasandpik3camutationsforunderstandingtheunderlyingbiologyandmolecularpathogenesis
AT kyosatoru establishmentofanovelinvitromodelofendometriosiswithoncogenickrasandpik3camutationsforunderstandingtheunderlyingbiologyandmolecularpathogenesis