Cargando…

lncRNA UCA1-Mediated Cdc42 Signaling Promotes Oncolytic Vaccinia Virus Cell-to-Cell Spread in Ovarian Cancer

Oncolytic vaccinia virus (OVV) has demonstrated appropriate safety profiles for clinical development. Although designed to kill cancer cells efficiently, OVV sensitivity varies in individual cancers, and predictive biomarkers of therapeutic responses have not been identified. Here we found that OVV...

Descripción completa

Detalles Bibliográficos
Autores principales: Horita, Kosuke, Kurosaki, Hajime, Nakatake, Motomu, Kuwano, Nozomi, Oishi, Tetsuro, Itamochi, Hiroaki, Sato, Sho, Kono, Hiromichi, Ito, Mai, Hasegawa, Kosei, Harada, Tasuku, Nakamura, Takafumi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6463205/
https://www.ncbi.nlm.nih.gov/pubmed/31011626
http://dx.doi.org/10.1016/j.omto.2019.03.003
_version_ 1783410725903925248
author Horita, Kosuke
Kurosaki, Hajime
Nakatake, Motomu
Kuwano, Nozomi
Oishi, Tetsuro
Itamochi, Hiroaki
Sato, Sho
Kono, Hiromichi
Ito, Mai
Hasegawa, Kosei
Harada, Tasuku
Nakamura, Takafumi
author_facet Horita, Kosuke
Kurosaki, Hajime
Nakatake, Motomu
Kuwano, Nozomi
Oishi, Tetsuro
Itamochi, Hiroaki
Sato, Sho
Kono, Hiromichi
Ito, Mai
Hasegawa, Kosei
Harada, Tasuku
Nakamura, Takafumi
author_sort Horita, Kosuke
collection PubMed
description Oncolytic vaccinia virus (OVV) has demonstrated appropriate safety profiles for clinical development. Although designed to kill cancer cells efficiently, OVV sensitivity varies in individual cancers, and predictive biomarkers of therapeutic responses have not been identified. Here we found that OVV was much more efficient in KFTX paclitaxel-resistant ovarian cancer cells compared to that in KFlow paclitaxel-sensitive cells. Microarray analysis identified long non-coding RNA urothelial carcinoma-associated 1 (UCA1) upregulation, which contributed to both enhanced paclitaxel resistance and OVV spread. In addition, UCA1 expression correlated with efficient OVV spread in other ovarian cell lines and primary cancer cell cultures. When host pathways underlying OVV spread were analyzed, differences were detected in the activation of the Rho GTPase Cdc42, suggesting that filopodia formation enhances OVV cell-to-cell spread and tumor migration. Moreover, we established a clinically relevant mouse model of peritoneal metastasis using KFTX or KFlow cells. Paclitaxel exerted anti-tumor effects on KFlow, but not KFTX, tumors. In mice bearing KFTX cells after paclitaxel failure, OVV treatment induced the regression of residual tumors and improved survival. Our findings demonstrated that UCA1 promotes OVV cell-to-cell spread in ovarian cancer, resulting in enhanced therapeutic outcome.
format Online
Article
Text
id pubmed-6463205
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher American Society of Gene & Cell Therapy
record_format MEDLINE/PubMed
spelling pubmed-64632052019-04-22 lncRNA UCA1-Mediated Cdc42 Signaling Promotes Oncolytic Vaccinia Virus Cell-to-Cell Spread in Ovarian Cancer Horita, Kosuke Kurosaki, Hajime Nakatake, Motomu Kuwano, Nozomi Oishi, Tetsuro Itamochi, Hiroaki Sato, Sho Kono, Hiromichi Ito, Mai Hasegawa, Kosei Harada, Tasuku Nakamura, Takafumi Mol Ther Oncolytics Article Oncolytic vaccinia virus (OVV) has demonstrated appropriate safety profiles for clinical development. Although designed to kill cancer cells efficiently, OVV sensitivity varies in individual cancers, and predictive biomarkers of therapeutic responses have not been identified. Here we found that OVV was much more efficient in KFTX paclitaxel-resistant ovarian cancer cells compared to that in KFlow paclitaxel-sensitive cells. Microarray analysis identified long non-coding RNA urothelial carcinoma-associated 1 (UCA1) upregulation, which contributed to both enhanced paclitaxel resistance and OVV spread. In addition, UCA1 expression correlated with efficient OVV spread in other ovarian cell lines and primary cancer cell cultures. When host pathways underlying OVV spread were analyzed, differences were detected in the activation of the Rho GTPase Cdc42, suggesting that filopodia formation enhances OVV cell-to-cell spread and tumor migration. Moreover, we established a clinically relevant mouse model of peritoneal metastasis using KFTX or KFlow cells. Paclitaxel exerted anti-tumor effects on KFlow, but not KFTX, tumors. In mice bearing KFTX cells after paclitaxel failure, OVV treatment induced the regression of residual tumors and improved survival. Our findings demonstrated that UCA1 promotes OVV cell-to-cell spread in ovarian cancer, resulting in enhanced therapeutic outcome. American Society of Gene & Cell Therapy 2019-03-26 /pmc/articles/PMC6463205/ /pubmed/31011626 http://dx.doi.org/10.1016/j.omto.2019.03.003 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Horita, Kosuke
Kurosaki, Hajime
Nakatake, Motomu
Kuwano, Nozomi
Oishi, Tetsuro
Itamochi, Hiroaki
Sato, Sho
Kono, Hiromichi
Ito, Mai
Hasegawa, Kosei
Harada, Tasuku
Nakamura, Takafumi
lncRNA UCA1-Mediated Cdc42 Signaling Promotes Oncolytic Vaccinia Virus Cell-to-Cell Spread in Ovarian Cancer
title lncRNA UCA1-Mediated Cdc42 Signaling Promotes Oncolytic Vaccinia Virus Cell-to-Cell Spread in Ovarian Cancer
title_full lncRNA UCA1-Mediated Cdc42 Signaling Promotes Oncolytic Vaccinia Virus Cell-to-Cell Spread in Ovarian Cancer
title_fullStr lncRNA UCA1-Mediated Cdc42 Signaling Promotes Oncolytic Vaccinia Virus Cell-to-Cell Spread in Ovarian Cancer
title_full_unstemmed lncRNA UCA1-Mediated Cdc42 Signaling Promotes Oncolytic Vaccinia Virus Cell-to-Cell Spread in Ovarian Cancer
title_short lncRNA UCA1-Mediated Cdc42 Signaling Promotes Oncolytic Vaccinia Virus Cell-to-Cell Spread in Ovarian Cancer
title_sort lncrna uca1-mediated cdc42 signaling promotes oncolytic vaccinia virus cell-to-cell spread in ovarian cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6463205/
https://www.ncbi.nlm.nih.gov/pubmed/31011626
http://dx.doi.org/10.1016/j.omto.2019.03.003
work_keys_str_mv AT horitakosuke lncrnauca1mediatedcdc42signalingpromotesoncolyticvacciniaviruscelltocellspreadinovariancancer
AT kurosakihajime lncrnauca1mediatedcdc42signalingpromotesoncolyticvacciniaviruscelltocellspreadinovariancancer
AT nakatakemotomu lncrnauca1mediatedcdc42signalingpromotesoncolyticvacciniaviruscelltocellspreadinovariancancer
AT kuwanonozomi lncrnauca1mediatedcdc42signalingpromotesoncolyticvacciniaviruscelltocellspreadinovariancancer
AT oishitetsuro lncrnauca1mediatedcdc42signalingpromotesoncolyticvacciniaviruscelltocellspreadinovariancancer
AT itamochihiroaki lncrnauca1mediatedcdc42signalingpromotesoncolyticvacciniaviruscelltocellspreadinovariancancer
AT satosho lncrnauca1mediatedcdc42signalingpromotesoncolyticvacciniaviruscelltocellspreadinovariancancer
AT konohiromichi lncrnauca1mediatedcdc42signalingpromotesoncolyticvacciniaviruscelltocellspreadinovariancancer
AT itomai lncrnauca1mediatedcdc42signalingpromotesoncolyticvacciniaviruscelltocellspreadinovariancancer
AT hasegawakosei lncrnauca1mediatedcdc42signalingpromotesoncolyticvacciniaviruscelltocellspreadinovariancancer
AT haradatasuku lncrnauca1mediatedcdc42signalingpromotesoncolyticvacciniaviruscelltocellspreadinovariancancer
AT nakamuratakafumi lncrnauca1mediatedcdc42signalingpromotesoncolyticvacciniaviruscelltocellspreadinovariancancer