Cargando…
hPaf1/PD2 interacts with OCT3/4 to promote self-renewal of ovarian cancer stem cells
Cancer stem cells (CSCs), which mediate drug resistance and disease recurrence in several cancers, are therapeutically relevant to ovarian cancer (OC), wherein approximately 80% of patients manifest with tumor recurrence. While there are several markers for ovarian CSCs (OCSCs), the mechanism for th...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Impact Journals LLC
2017
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5362445/ https://www.ncbi.nlm.nih.gov/pubmed/28122356 http://dx.doi.org/10.18632/oncotarget.14775 |
_version_ | 1782516951057170432 |
---|---|
author | Karmakar, Saswati Seshacharyulu, Parthasarathy Lakshmanan, Imayavaramban Vaz, Arokia P. Chugh, Seema Sheinin, Yuri M. Mahapatra, Sidharth Batra, Surinder K. Ponnusamy, Moorthy P. |
author_facet | Karmakar, Saswati Seshacharyulu, Parthasarathy Lakshmanan, Imayavaramban Vaz, Arokia P. Chugh, Seema Sheinin, Yuri M. Mahapatra, Sidharth Batra, Surinder K. Ponnusamy, Moorthy P. |
author_sort | Karmakar, Saswati |
collection | PubMed |
description | Cancer stem cells (CSCs), which mediate drug resistance and disease recurrence in several cancers, are therapeutically relevant to ovarian cancer (OC), wherein approximately 80% of patients manifest with tumor recurrence. While there are several markers for ovarian CSCs (OCSCs), the mechanism for their self-renewal maintenance by unique driver/markers is poorly understood. Here, we evaluated the role of hPaf1/PD2, a core component of RNA Polymerase II-Associated Factor (PAF) complex, in self-renewal of OCSCs through marker and functional analyses, including CRISPR/Cas9-silencing of hPaf1/PD2 in OCSCs and provided a possible mechanism for maintenance of OCSCs. Expression of hPaf1/PD2 showed moderate to intense staining in 32.4% of human OC tissues, whereas 67.6% demonstrated basal expression by immunohistochemistry analysis, implying that the minor proportion of cells overexpressing hPaf1/PD2 could be putative OCSCs. Isolated OCSCs showed higher expression of hPaf1/PD2 along with established CSC and self-renewal markers. Knockdown of hPaf1/PD2 in OCSCs resulted in a significant downregulation of CSC and self-renewal markers, and impairment of in vitro tumor sphere (P < 0.05) and colony formation (P = 0.013). Co-immunoprecipitation revealed that OCT3/4 specifically interacts with hPaf1/PD2, and not with other PAF components (Ctr9, Leo1, Parafibromin) in OCSCs, suggesting a complex-independent role for hPaf1/PD2 in OCSC maintenance. Moreover, there was a significant overexpression and co-localization of hPaf1/PD2 with OCT3/4 in OC tissues compared to normal ovary tissues. Our results indicate that hPaf1/PD2 is overexpressed in OCSCs and maintains the self-renewal of OCSCs through its interaction with OCT3/4; thus, hPaf1/PD2 may be a potential therapeutic target to overcome tumor relapse in OC. |
format | Online Article Text |
id | pubmed-5362445 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | Impact Journals LLC |
record_format | MEDLINE/PubMed |
spelling | pubmed-53624452017-04-24 hPaf1/PD2 interacts with OCT3/4 to promote self-renewal of ovarian cancer stem cells Karmakar, Saswati Seshacharyulu, Parthasarathy Lakshmanan, Imayavaramban Vaz, Arokia P. Chugh, Seema Sheinin, Yuri M. Mahapatra, Sidharth Batra, Surinder K. Ponnusamy, Moorthy P. Oncotarget Research Paper Cancer stem cells (CSCs), which mediate drug resistance and disease recurrence in several cancers, are therapeutically relevant to ovarian cancer (OC), wherein approximately 80% of patients manifest with tumor recurrence. While there are several markers for ovarian CSCs (OCSCs), the mechanism for their self-renewal maintenance by unique driver/markers is poorly understood. Here, we evaluated the role of hPaf1/PD2, a core component of RNA Polymerase II-Associated Factor (PAF) complex, in self-renewal of OCSCs through marker and functional analyses, including CRISPR/Cas9-silencing of hPaf1/PD2 in OCSCs and provided a possible mechanism for maintenance of OCSCs. Expression of hPaf1/PD2 showed moderate to intense staining in 32.4% of human OC tissues, whereas 67.6% demonstrated basal expression by immunohistochemistry analysis, implying that the minor proportion of cells overexpressing hPaf1/PD2 could be putative OCSCs. Isolated OCSCs showed higher expression of hPaf1/PD2 along with established CSC and self-renewal markers. Knockdown of hPaf1/PD2 in OCSCs resulted in a significant downregulation of CSC and self-renewal markers, and impairment of in vitro tumor sphere (P < 0.05) and colony formation (P = 0.013). Co-immunoprecipitation revealed that OCT3/4 specifically interacts with hPaf1/PD2, and not with other PAF components (Ctr9, Leo1, Parafibromin) in OCSCs, suggesting a complex-independent role for hPaf1/PD2 in OCSC maintenance. Moreover, there was a significant overexpression and co-localization of hPaf1/PD2 with OCT3/4 in OC tissues compared to normal ovary tissues. Our results indicate that hPaf1/PD2 is overexpressed in OCSCs and maintains the self-renewal of OCSCs through its interaction with OCT3/4; thus, hPaf1/PD2 may be a potential therapeutic target to overcome tumor relapse in OC. Impact Journals LLC 2017-01-20 /pmc/articles/PMC5362445/ /pubmed/28122356 http://dx.doi.org/10.18632/oncotarget.14775 Text en Copyright: © 2017 Karmakar et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Paper Karmakar, Saswati Seshacharyulu, Parthasarathy Lakshmanan, Imayavaramban Vaz, Arokia P. Chugh, Seema Sheinin, Yuri M. Mahapatra, Sidharth Batra, Surinder K. Ponnusamy, Moorthy P. hPaf1/PD2 interacts with OCT3/4 to promote self-renewal of ovarian cancer stem cells |
title | hPaf1/PD2 interacts with OCT3/4 to promote self-renewal of ovarian cancer stem cells |
title_full | hPaf1/PD2 interacts with OCT3/4 to promote self-renewal of ovarian cancer stem cells |
title_fullStr | hPaf1/PD2 interacts with OCT3/4 to promote self-renewal of ovarian cancer stem cells |
title_full_unstemmed | hPaf1/PD2 interacts with OCT3/4 to promote self-renewal of ovarian cancer stem cells |
title_short | hPaf1/PD2 interacts with OCT3/4 to promote self-renewal of ovarian cancer stem cells |
title_sort | hpaf1/pd2 interacts with oct3/4 to promote self-renewal of ovarian cancer stem cells |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5362445/ https://www.ncbi.nlm.nih.gov/pubmed/28122356 http://dx.doi.org/10.18632/oncotarget.14775 |
work_keys_str_mv | AT karmakarsaswati hpaf1pd2interactswithoct34topromoteselfrenewalofovariancancerstemcells AT seshacharyuluparthasarathy hpaf1pd2interactswithoct34topromoteselfrenewalofovariancancerstemcells AT lakshmananimayavaramban hpaf1pd2interactswithoct34topromoteselfrenewalofovariancancerstemcells AT vazarokiap hpaf1pd2interactswithoct34topromoteselfrenewalofovariancancerstemcells AT chughseema hpaf1pd2interactswithoct34topromoteselfrenewalofovariancancerstemcells AT sheininyurim hpaf1pd2interactswithoct34topromoteselfrenewalofovariancancerstemcells AT mahapatrasidharth hpaf1pd2interactswithoct34topromoteselfrenewalofovariancancerstemcells AT batrasurinderk hpaf1pd2interactswithoct34topromoteselfrenewalofovariancancerstemcells AT ponnusamymoorthyp hpaf1pd2interactswithoct34topromoteselfrenewalofovariancancerstemcells |