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The clock protein period 2 synchronizes mitotic expansion and decidual transformation of human endometrial stromal cells

Implantation requires coordinated interactions between the conceptus and surrounding decidual cells, but the involvement of clock genes in this process is incompletely understood. Circadian oscillations are predicated on transcriptional-translational feedback loops, which balance the activities of t...

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Autores principales: Muter, Joanne, Lucas, Emma S., Chan, Yi-Wah, Brighton, Paul J., Moore, Jonathan D., Lacey, Lauren, Quenby, Siobhan, Lam, Eric W.-F., Brosens, Jan J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Federation of American Societies for Experimental Biology 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4396614/
https://www.ncbi.nlm.nih.gov/pubmed/25573754
http://dx.doi.org/10.1096/fj.14-267195
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author Muter, Joanne
Lucas, Emma S.
Chan, Yi-Wah
Brighton, Paul J.
Moore, Jonathan D.
Lacey, Lauren
Quenby, Siobhan
Lam, Eric W.-F.
Brosens, Jan J.
author_facet Muter, Joanne
Lucas, Emma S.
Chan, Yi-Wah
Brighton, Paul J.
Moore, Jonathan D.
Lacey, Lauren
Quenby, Siobhan
Lam, Eric W.-F.
Brosens, Jan J.
author_sort Muter, Joanne
collection PubMed
description Implantation requires coordinated interactions between the conceptus and surrounding decidual cells, but the involvement of clock genes in this process is incompletely understood. Circadian oscillations are predicated on transcriptional-translational feedback loops, which balance the activities of the transcriptional activators CLOCK (circadian locomotor output cycles kaput) and brain muscle arnt-like 1 and repressors encoded by PER (Period) and Cryptochrome genes. We show that loss of PER2 expression silences circadian oscillations in decidualizing human endometrial stromal cells (HESCs). Down-regulation occurred between 12 and 24 hours following differentiation and coincided with reduced CLOCK binding to a noncanonical E-box enhancer in the PER2 promoter. RNA sequencing revealed that premature inhibition of PER2 by small interfering RNA knockdown leads to a grossly disorganized decidual response. Gene ontology analysis highlighted a preponderance of cell cycle regulators among the 1121 genes perturbed upon PER2 knockdown. Congruently, PER2 inhibition abrogated mitotic expansion of differentiating HESCs by inducing cell cycle block at G2/M. Analysis of 70 midluteal endometrial biopsies revealed an inverse correlation between PER2 transcript levels and the number of miscarriages in women suffering reproductive failure (Spearman rank test, ρ = −0.3260; P = 0.0046). Thus, PER2 synchronizes endometrial proliferation with initiation of aperiodic decidual gene expression; uncoupling of these events may cause recurrent pregnancy loss.—Muter, J., Lucas, E. S., Chan, Y.-W., Brighton, P. J., Moore, J. D., Lacey, L., Quenby, S., Lam, E. W.-F., Brosens, J. J. The clock protein period 2 synchronizes mitotic expansion and decidual transformation of human endometrial stromal cells.
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spelling pubmed-43966142015-05-05 The clock protein period 2 synchronizes mitotic expansion and decidual transformation of human endometrial stromal cells Muter, Joanne Lucas, Emma S. Chan, Yi-Wah Brighton, Paul J. Moore, Jonathan D. Lacey, Lauren Quenby, Siobhan Lam, Eric W.-F. Brosens, Jan J. FASEB J Research Communication Implantation requires coordinated interactions between the conceptus and surrounding decidual cells, but the involvement of clock genes in this process is incompletely understood. Circadian oscillations are predicated on transcriptional-translational feedback loops, which balance the activities of the transcriptional activators CLOCK (circadian locomotor output cycles kaput) and brain muscle arnt-like 1 and repressors encoded by PER (Period) and Cryptochrome genes. We show that loss of PER2 expression silences circadian oscillations in decidualizing human endometrial stromal cells (HESCs). Down-regulation occurred between 12 and 24 hours following differentiation and coincided with reduced CLOCK binding to a noncanonical E-box enhancer in the PER2 promoter. RNA sequencing revealed that premature inhibition of PER2 by small interfering RNA knockdown leads to a grossly disorganized decidual response. Gene ontology analysis highlighted a preponderance of cell cycle regulators among the 1121 genes perturbed upon PER2 knockdown. Congruently, PER2 inhibition abrogated mitotic expansion of differentiating HESCs by inducing cell cycle block at G2/M. Analysis of 70 midluteal endometrial biopsies revealed an inverse correlation between PER2 transcript levels and the number of miscarriages in women suffering reproductive failure (Spearman rank test, ρ = −0.3260; P = 0.0046). Thus, PER2 synchronizes endometrial proliferation with initiation of aperiodic decidual gene expression; uncoupling of these events may cause recurrent pregnancy loss.—Muter, J., Lucas, E. S., Chan, Y.-W., Brighton, P. J., Moore, J. D., Lacey, L., Quenby, S., Lam, E. W.-F., Brosens, J. J. The clock protein period 2 synchronizes mitotic expansion and decidual transformation of human endometrial stromal cells. Federation of American Societies for Experimental Biology 2015-04 2015-01-08 /pmc/articles/PMC4396614/ /pubmed/25573754 http://dx.doi.org/10.1096/fj.14-267195 Text en © The Author(s) http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0) (http://creativecommons.org/licenses/by-nc/4.0/) which permits noncommercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Communication
Muter, Joanne
Lucas, Emma S.
Chan, Yi-Wah
Brighton, Paul J.
Moore, Jonathan D.
Lacey, Lauren
Quenby, Siobhan
Lam, Eric W.-F.
Brosens, Jan J.
The clock protein period 2 synchronizes mitotic expansion and decidual transformation of human endometrial stromal cells
title The clock protein period 2 synchronizes mitotic expansion and decidual transformation of human endometrial stromal cells
title_full The clock protein period 2 synchronizes mitotic expansion and decidual transformation of human endometrial stromal cells
title_fullStr The clock protein period 2 synchronizes mitotic expansion and decidual transformation of human endometrial stromal cells
title_full_unstemmed The clock protein period 2 synchronizes mitotic expansion and decidual transformation of human endometrial stromal cells
title_short The clock protein period 2 synchronizes mitotic expansion and decidual transformation of human endometrial stromal cells
title_sort clock protein period 2 synchronizes mitotic expansion and decidual transformation of human endometrial stromal cells
topic Research Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4396614/
https://www.ncbi.nlm.nih.gov/pubmed/25573754
http://dx.doi.org/10.1096/fj.14-267195
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