Cargando…

A Novel Role of the Sp/KLF Transcription Factor KLF11 in Arresting Progression of Endometriosis

Endometriosis affects approximately 10% of young, reproductive-aged women. Disease associated pelvic pain; infertility and sexual dysfunction have a significant adverse clinical, social and financial impact. As precise disease etiology has remained elusive, current therapeutic strategies are empiric...

Descripción completa

Detalles Bibliográficos
Autores principales: Daftary, Gaurang S., Zheng, Ye, Tabbaa, Zaid M., Schoolmeester, John K., Gada, Ravi P., Grzenda, Adrienne L., Mathison, Angela J., Keeney, Gary L., Lomberk, Gwen A., Urrutia, Raul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3610699/
https://www.ncbi.nlm.nih.gov/pubmed/23555910
http://dx.doi.org/10.1371/journal.pone.0060165
_version_ 1782264492970737664
author Daftary, Gaurang S.
Zheng, Ye
Tabbaa, Zaid M.
Schoolmeester, John K.
Gada, Ravi P.
Grzenda, Adrienne L.
Mathison, Angela J.
Keeney, Gary L.
Lomberk, Gwen A.
Urrutia, Raul
author_facet Daftary, Gaurang S.
Zheng, Ye
Tabbaa, Zaid M.
Schoolmeester, John K.
Gada, Ravi P.
Grzenda, Adrienne L.
Mathison, Angela J.
Keeney, Gary L.
Lomberk, Gwen A.
Urrutia, Raul
author_sort Daftary, Gaurang S.
collection PubMed
description Endometriosis affects approximately 10% of young, reproductive-aged women. Disease associated pelvic pain; infertility and sexual dysfunction have a significant adverse clinical, social and financial impact. As precise disease etiology has remained elusive, current therapeutic strategies are empiric, unfocused and often unsatisfactory. Lack of a suitable genetic model has impaired further translational research in the field. In this study, we evaluated the role of the Sp/KLF transcription factor KLF11/Klf11 in the pathogenesis of endometriosis. KLF11, a human disease-associated gene is etiologically implicated in diabetes, uterine fibroids and cancer. We found that KLF11 expression was diminished in human endometriosis implants and further investigated its pathogenic role in Klf11-/- knockout mice with surgically induced endometriotic lesions. Lesions in Klf11-/- animals were large and associated with prolific fibrotic adhesions resembling advanced human disease in contrast to wildtype controls. To determine phenotype-specificity, endometriosis was also generated in Klf9-/- animals. Unlike in Klf11-/- mice, lesions in Klf9-/- animals were neither large, nor associated with a significant fibrotic response. KLF11 also bound to specific elements located in the promoter regions of key fibrosis-related genes from the Collagen, MMP and TGF-β families in endometrial stromal cells. KLF11 binding resulted in transcriptional repression of these genes. In summary, we identify a novel pathogenic role for KLF11 in preventing de novo disease-associated fibrosis in endometriosis. Our model validates in vivo the phenotypic consequences of dysregulated Klf11 signaling. Additionally, it provides a robust means not only for further detailed mechanistic investigation but also the ability to test any emergent translational ramifications thereof, so as to expand the scope and capability for treatment of endometriosis.
format Online
Article
Text
id pubmed-3610699
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-36106992013-04-03 A Novel Role of the Sp/KLF Transcription Factor KLF11 in Arresting Progression of Endometriosis Daftary, Gaurang S. Zheng, Ye Tabbaa, Zaid M. Schoolmeester, John K. Gada, Ravi P. Grzenda, Adrienne L. Mathison, Angela J. Keeney, Gary L. Lomberk, Gwen A. Urrutia, Raul PLoS One Research Article Endometriosis affects approximately 10% of young, reproductive-aged women. Disease associated pelvic pain; infertility and sexual dysfunction have a significant adverse clinical, social and financial impact. As precise disease etiology has remained elusive, current therapeutic strategies are empiric, unfocused and often unsatisfactory. Lack of a suitable genetic model has impaired further translational research in the field. In this study, we evaluated the role of the Sp/KLF transcription factor KLF11/Klf11 in the pathogenesis of endometriosis. KLF11, a human disease-associated gene is etiologically implicated in diabetes, uterine fibroids and cancer. We found that KLF11 expression was diminished in human endometriosis implants and further investigated its pathogenic role in Klf11-/- knockout mice with surgically induced endometriotic lesions. Lesions in Klf11-/- animals were large and associated with prolific fibrotic adhesions resembling advanced human disease in contrast to wildtype controls. To determine phenotype-specificity, endometriosis was also generated in Klf9-/- animals. Unlike in Klf11-/- mice, lesions in Klf9-/- animals were neither large, nor associated with a significant fibrotic response. KLF11 also bound to specific elements located in the promoter regions of key fibrosis-related genes from the Collagen, MMP and TGF-β families in endometrial stromal cells. KLF11 binding resulted in transcriptional repression of these genes. In summary, we identify a novel pathogenic role for KLF11 in preventing de novo disease-associated fibrosis in endometriosis. Our model validates in vivo the phenotypic consequences of dysregulated Klf11 signaling. Additionally, it provides a robust means not only for further detailed mechanistic investigation but also the ability to test any emergent translational ramifications thereof, so as to expand the scope and capability for treatment of endometriosis. Public Library of Science 2013-03-28 /pmc/articles/PMC3610699/ /pubmed/23555910 http://dx.doi.org/10.1371/journal.pone.0060165 Text en © 2013 Daftary et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Daftary, Gaurang S.
Zheng, Ye
Tabbaa, Zaid M.
Schoolmeester, John K.
Gada, Ravi P.
Grzenda, Adrienne L.
Mathison, Angela J.
Keeney, Gary L.
Lomberk, Gwen A.
Urrutia, Raul
A Novel Role of the Sp/KLF Transcription Factor KLF11 in Arresting Progression of Endometriosis
title A Novel Role of the Sp/KLF Transcription Factor KLF11 in Arresting Progression of Endometriosis
title_full A Novel Role of the Sp/KLF Transcription Factor KLF11 in Arresting Progression of Endometriosis
title_fullStr A Novel Role of the Sp/KLF Transcription Factor KLF11 in Arresting Progression of Endometriosis
title_full_unstemmed A Novel Role of the Sp/KLF Transcription Factor KLF11 in Arresting Progression of Endometriosis
title_short A Novel Role of the Sp/KLF Transcription Factor KLF11 in Arresting Progression of Endometriosis
title_sort novel role of the sp/klf transcription factor klf11 in arresting progression of endometriosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3610699/
https://www.ncbi.nlm.nih.gov/pubmed/23555910
http://dx.doi.org/10.1371/journal.pone.0060165
work_keys_str_mv AT daftarygaurangs anovelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT zhengye anovelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT tabbaazaidm anovelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT schoolmeesterjohnk anovelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT gadaravip anovelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT grzendaadriennel anovelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT mathisonangelaj anovelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT keeneygaryl anovelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT lomberkgwena anovelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT urrutiaraul anovelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT daftarygaurangs novelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT zhengye novelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT tabbaazaidm novelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT schoolmeesterjohnk novelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT gadaravip novelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT grzendaadriennel novelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT mathisonangelaj novelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT keeneygaryl novelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT lomberkgwena novelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis
AT urrutiaraul novelroleofthespklftranscriptionfactorklf11inarrestingprogressionofendometriosis