Cargando…

TBX2, a Novel Regulator of Labour

Background and Objectives: Therapeutic interventions targeting molecular factors involved in the transition from uterine quiescence to overt labour are not substantially reducing the rate of spontaneous preterm labour. The identification of novel rational therapeutic targets are essential to prevent...

Descripción completa

Detalles Bibliográficos
Autores principales: Fernando, Febilla, Veenboer, Geertruda J.M., Oudijk, Martijn A., Kampman, Marlies A.M., Heida, Karst Y., Lagendijk, Louise J.M., van der Post, Joris A.M., Jongejan, Aldo, Afink, Gijs B., Ris-Stalpers, Carrie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8224059/
https://www.ncbi.nlm.nih.gov/pubmed/34064060
http://dx.doi.org/10.3390/medicina57060515
_version_ 1783711815223476224
author Fernando, Febilla
Veenboer, Geertruda J.M.
Oudijk, Martijn A.
Kampman, Marlies A.M.
Heida, Karst Y.
Lagendijk, Louise J.M.
van der Post, Joris A.M.
Jongejan, Aldo
Afink, Gijs B.
Ris-Stalpers, Carrie
author_facet Fernando, Febilla
Veenboer, Geertruda J.M.
Oudijk, Martijn A.
Kampman, Marlies A.M.
Heida, Karst Y.
Lagendijk, Louise J.M.
van der Post, Joris A.M.
Jongejan, Aldo
Afink, Gijs B.
Ris-Stalpers, Carrie
author_sort Fernando, Febilla
collection PubMed
description Background and Objectives: Therapeutic interventions targeting molecular factors involved in the transition from uterine quiescence to overt labour are not substantially reducing the rate of spontaneous preterm labour. The identification of novel rational therapeutic targets are essential to prevent the most common cause of neonatal mortality. Based on our previous work showing that Tbx2 (T-Box transcription factor 2) is a putative upstream regulator preceding progesterone withdrawal in mouse myometrium, we now investigate the role of TBX2 in human myometrium. Materials and Methods: RNA microarray analysis of (A) preterm human myometrium samples and (B) myometrial cells overexpressing TBX2 in vitro, combined with subsequent analysis of the two publicly available datasets of (C) Chan et al. and (D) Sharp et al. The effect of TBX2 overexpression on cytokines/chemokines secreted to the myometrium cell culture medium were determined by Luminex assay. Results: Analysis shows that overexpression of TBX2 in myometrial cells results in downregulation of TNFα- and interferon signalling. This downregulation is consistent with the decreased expression of cytokines and chemokines of which a subset has been previously associated with the inflammatory pathways relevant for human labour. In contrast, CXCL5 (C-X-C motif chemokine ligand 5), CCL21 and IL-6 (Interleukin 6), previously reported in relation to parturition, do not seem to be under TBX2 control. The combined bioinformatical analysis of the four mRNA datasets identifies a subset of upstream regulators common to both preterm and term labour under control of TBX2. Surprisingly, TBX2 mRNA levels are increased in preterm contractile myometrium. Conclusions: We identified a subset of upstream regulators common to both preterm and term labour that are activated in labour and repressed by TBX2. The increased TBX2 mRNA expression in myometrium collected during a preterm caesarean section while in spontaneous preterm labour compared to tissue harvested during iatrogenic preterm delivery does not fit the bioinformatical model. We can only explain this by speculating that the in vivo activity of TBX2 in human myometrium depends not only on the TBX2 expression levels but also on levels of the accessory proteins necessary for TBX2 activity.
format Online
Article
Text
id pubmed-8224059
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-82240592021-06-25 TBX2, a Novel Regulator of Labour Fernando, Febilla Veenboer, Geertruda J.M. Oudijk, Martijn A. Kampman, Marlies A.M. Heida, Karst Y. Lagendijk, Louise J.M. van der Post, Joris A.M. Jongejan, Aldo Afink, Gijs B. Ris-Stalpers, Carrie Medicina (Kaunas) Article Background and Objectives: Therapeutic interventions targeting molecular factors involved in the transition from uterine quiescence to overt labour are not substantially reducing the rate of spontaneous preterm labour. The identification of novel rational therapeutic targets are essential to prevent the most common cause of neonatal mortality. Based on our previous work showing that Tbx2 (T-Box transcription factor 2) is a putative upstream regulator preceding progesterone withdrawal in mouse myometrium, we now investigate the role of TBX2 in human myometrium. Materials and Methods: RNA microarray analysis of (A) preterm human myometrium samples and (B) myometrial cells overexpressing TBX2 in vitro, combined with subsequent analysis of the two publicly available datasets of (C) Chan et al. and (D) Sharp et al. The effect of TBX2 overexpression on cytokines/chemokines secreted to the myometrium cell culture medium were determined by Luminex assay. Results: Analysis shows that overexpression of TBX2 in myometrial cells results in downregulation of TNFα- and interferon signalling. This downregulation is consistent with the decreased expression of cytokines and chemokines of which a subset has been previously associated with the inflammatory pathways relevant for human labour. In contrast, CXCL5 (C-X-C motif chemokine ligand 5), CCL21 and IL-6 (Interleukin 6), previously reported in relation to parturition, do not seem to be under TBX2 control. The combined bioinformatical analysis of the four mRNA datasets identifies a subset of upstream regulators common to both preterm and term labour under control of TBX2. Surprisingly, TBX2 mRNA levels are increased in preterm contractile myometrium. Conclusions: We identified a subset of upstream regulators common to both preterm and term labour that are activated in labour and repressed by TBX2. The increased TBX2 mRNA expression in myometrium collected during a preterm caesarean section while in spontaneous preterm labour compared to tissue harvested during iatrogenic preterm delivery does not fit the bioinformatical model. We can only explain this by speculating that the in vivo activity of TBX2 in human myometrium depends not only on the TBX2 expression levels but also on levels of the accessory proteins necessary for TBX2 activity. MDPI 2021-05-21 /pmc/articles/PMC8224059/ /pubmed/34064060 http://dx.doi.org/10.3390/medicina57060515 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
Fernando, Febilla
Veenboer, Geertruda J.M.
Oudijk, Martijn A.
Kampman, Marlies A.M.
Heida, Karst Y.
Lagendijk, Louise J.M.
van der Post, Joris A.M.
Jongejan, Aldo
Afink, Gijs B.
Ris-Stalpers, Carrie
TBX2, a Novel Regulator of Labour
title TBX2, a Novel Regulator of Labour
title_full TBX2, a Novel Regulator of Labour
title_fullStr TBX2, a Novel Regulator of Labour
title_full_unstemmed TBX2, a Novel Regulator of Labour
title_short TBX2, a Novel Regulator of Labour
title_sort tbx2, a novel regulator of labour
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8224059/
https://www.ncbi.nlm.nih.gov/pubmed/34064060
http://dx.doi.org/10.3390/medicina57060515
work_keys_str_mv AT fernandofebilla tbx2anovelregulatoroflabour
AT veenboergeertrudajm tbx2anovelregulatoroflabour
AT oudijkmartijna tbx2anovelregulatoroflabour
AT kampmanmarliesam tbx2anovelregulatoroflabour
AT heidakarsty tbx2anovelregulatoroflabour
AT lagendijklouisejm tbx2anovelregulatoroflabour
AT vanderpostjorisam tbx2anovelregulatoroflabour
AT jongejanaldo tbx2anovelregulatoroflabour
AT afinkgijsb tbx2anovelregulatoroflabour
AT risstalperscarrie tbx2anovelregulatoroflabour