Role of Epithelial-Mesenchyme Transition in Chlamydia Pathogenesis.
Chlamydia trachomatis genital infection in women causes serious adverse reproductive complications, and is a strong co-factor for human papilloma virus (HPV)-associated cervical epithelial carcinoma. We tested the hypothesis that Chlamydia induces epithelial-mesenchyme transition (EMT) involving T c...
Main Authors: | , , , , , , , , , , , , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Public Library of Science (PLoS)
2015-01-01
|
Series: | PLoS ONE |
Online Access: | https://doi.org/10.1371/journal.pone.0145198 |
id |
doaj-e3584235c01b41b3af7b6437f572c67d |
---|---|
record_format |
Article |
spelling |
doaj-e3584235c01b41b3af7b6437f572c67d2021-03-04T11:34:32ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-011012e014519810.1371/journal.pone.0145198Role of Epithelial-Mesenchyme Transition in Chlamydia Pathogenesis.Joseph U IgietsemeYusuf OmosunOlga StuchlikMatthew S ReedJames PartinQing HeKahaliah JosephDebra EllersonBrigid BollwegZenas GeorgeFrancis O EkoClaudiu BandeaHsi LiuGenyan YangWun-Ju ShiehJan PohlKevin KaremCarolyn M BlackChlamydia trachomatis genital infection in women causes serious adverse reproductive complications, and is a strong co-factor for human papilloma virus (HPV)-associated cervical epithelial carcinoma. We tested the hypothesis that Chlamydia induces epithelial-mesenchyme transition (EMT) involving T cell-derived TNF-alpha signaling, caspase activation, cleavage inactivation of dicer and dysregulation of micro-RNA (miRNA) in the reproductive epithelium; the pathologic process of EMT causes fibrosis and fertility-related epithelial dysfunction, and also provides the co-factor function for HPV-related cervical epithelial carcinoma. Using a combination of microarrays, immunohistochemistry and proteomics, we showed that chlamydia altered the expression of crucial miRNAs that control EMT, fibrosis and tumorigenesis; specifically, miR-15a, miR-29b, miR-382 and MiR-429 that maintain epithelial integrity were down-regulated, while miR-9, mi-R-19a, miR-22 and miR-205 that promote EMT, fibrosis and tumorigenesis were up-regulated. Chlamydia induced EMT in vitro and in vivo, marked by the suppression of normal epithelial cell markers especially E-cadherin but up-regulation of mesenchymal markers of pathological EMT, including T-cadherin, MMP9, and fibronectin. Also, Chlamydia upregulated pro-EMT regulators, including the zinc finger E-box binding homeobox protein, ZEB1, Snail1/2, and thrombospondin1 (Thbs1), but down-regulated anti-EMT and fertility promoting proteins (i.e., the major gap junction protein connexin 43 (Cx43), Mets1, Add1Scarb1 and MARCKSL1). T cell-derived TNF-alpha signaling was required for chlamydial-induced infertility and caspase inhibitors prevented both infertility and EMT. Thus, chlamydial-induced T cell-derived TNF-alpha activated caspases that inactivated dicer, causing alteration in the expression of reproductive epithelial miRNAs and induction of EMT. EMT causes epithelial malfunction, fibrosis, infertility, and the enhancement of tumorigenesis of HPV oncogene-transformed epithelial cells. These findings provide a novel understanding of the molecular pathogenesis of chlamydia-associated diseases, which may guide a rational prevention strategy.https://doi.org/10.1371/journal.pone.0145198 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Joseph U Igietseme Yusuf Omosun Olga Stuchlik Matthew S Reed James Partin Qing He Kahaliah Joseph Debra Ellerson Brigid Bollweg Zenas George Francis O Eko Claudiu Bandea Hsi Liu Genyan Yang Wun-Ju Shieh Jan Pohl Kevin Karem Carolyn M Black |
spellingShingle |
Joseph U Igietseme Yusuf Omosun Olga Stuchlik Matthew S Reed James Partin Qing He Kahaliah Joseph Debra Ellerson Brigid Bollweg Zenas George Francis O Eko Claudiu Bandea Hsi Liu Genyan Yang Wun-Ju Shieh Jan Pohl Kevin Karem Carolyn M Black Role of Epithelial-Mesenchyme Transition in Chlamydia Pathogenesis. PLoS ONE |
author_facet |
Joseph U Igietseme Yusuf Omosun Olga Stuchlik Matthew S Reed James Partin Qing He Kahaliah Joseph Debra Ellerson Brigid Bollweg Zenas George Francis O Eko Claudiu Bandea Hsi Liu Genyan Yang Wun-Ju Shieh Jan Pohl Kevin Karem Carolyn M Black |
author_sort |
Joseph U Igietseme |
title |
Role of Epithelial-Mesenchyme Transition in Chlamydia Pathogenesis. |
title_short |
Role of Epithelial-Mesenchyme Transition in Chlamydia Pathogenesis. |
title_full |
Role of Epithelial-Mesenchyme Transition in Chlamydia Pathogenesis. |
title_fullStr |
Role of Epithelial-Mesenchyme Transition in Chlamydia Pathogenesis. |
title_full_unstemmed |
Role of Epithelial-Mesenchyme Transition in Chlamydia Pathogenesis. |
title_sort |
role of epithelial-mesenchyme transition in chlamydia pathogenesis. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2015-01-01 |
description |
Chlamydia trachomatis genital infection in women causes serious adverse reproductive complications, and is a strong co-factor for human papilloma virus (HPV)-associated cervical epithelial carcinoma. We tested the hypothesis that Chlamydia induces epithelial-mesenchyme transition (EMT) involving T cell-derived TNF-alpha signaling, caspase activation, cleavage inactivation of dicer and dysregulation of micro-RNA (miRNA) in the reproductive epithelium; the pathologic process of EMT causes fibrosis and fertility-related epithelial dysfunction, and also provides the co-factor function for HPV-related cervical epithelial carcinoma. Using a combination of microarrays, immunohistochemistry and proteomics, we showed that chlamydia altered the expression of crucial miRNAs that control EMT, fibrosis and tumorigenesis; specifically, miR-15a, miR-29b, miR-382 and MiR-429 that maintain epithelial integrity were down-regulated, while miR-9, mi-R-19a, miR-22 and miR-205 that promote EMT, fibrosis and tumorigenesis were up-regulated. Chlamydia induced EMT in vitro and in vivo, marked by the suppression of normal epithelial cell markers especially E-cadherin but up-regulation of mesenchymal markers of pathological EMT, including T-cadherin, MMP9, and fibronectin. Also, Chlamydia upregulated pro-EMT regulators, including the zinc finger E-box binding homeobox protein, ZEB1, Snail1/2, and thrombospondin1 (Thbs1), but down-regulated anti-EMT and fertility promoting proteins (i.e., the major gap junction protein connexin 43 (Cx43), Mets1, Add1Scarb1 and MARCKSL1). T cell-derived TNF-alpha signaling was required for chlamydial-induced infertility and caspase inhibitors prevented both infertility and EMT. Thus, chlamydial-induced T cell-derived TNF-alpha activated caspases that inactivated dicer, causing alteration in the expression of reproductive epithelial miRNAs and induction of EMT. EMT causes epithelial malfunction, fibrosis, infertility, and the enhancement of tumorigenesis of HPV oncogene-transformed epithelial cells. These findings provide a novel understanding of the molecular pathogenesis of chlamydia-associated diseases, which may guide a rational prevention strategy. |
url |
https://doi.org/10.1371/journal.pone.0145198 |
work_keys_str_mv |
AT josephuigietseme roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT yusufomosun roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT olgastuchlik roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT matthewsreed roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT jamespartin roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT qinghe roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT kahaliahjoseph roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT debraellerson roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT brigidbollweg roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT zenasgeorge roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT francisoeko roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT claudiubandea roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT hsiliu roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT genyanyang roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT wunjushieh roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT janpohl roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT kevinkarem roleofepithelialmesenchymetransitioninchlamydiapathogenesis AT carolynmblack roleofepithelialmesenchymetransitioninchlamydiapathogenesis |
_version_ |
1714803620298358784 |