Back

A transient epithelial plasticity state defines the developmental window for uterine gland specification

Rizo, J. A.; Abdelhady, A. W.; Lorenzi, V.; Mopure, D.; Pru, J. M.; Winuthayanon, S.; Vento-Tormo, R.; Amato, C. M.; Spencer, T. E.; Kelleher, A. M.

2026-06-07 developmental biology
10.64898/2026.06.03.729801 bioRxiv
Show abstract

Uterine gland development and function is essential for reproduction and womens health, yet the epithelial cell states and signaling interactions that govern gland fate specification are not well understood. Here, integration of single cell and spatial transcriptomics with organoid culture, lineage tracing, and genetic and hormonal perturbation models were used to define mechanisms regulating postnatal uterine epithelial differentiation. A developmentally restricted epithelial plasticity state was identified that precedes luminal and glandular cell lineage segregation and is accompanied by dynamic reorganization of stromal-epithelial communication during uterine differentiation. Pseudotime analysis revealed progressive acquisition of gland-associated programs, including forkhead box A2 (Foxa2), retinoic acid metabolic genes, and epithelial estrogen receptor alpha (Esr1) expression. Functional studies revealed that ESR1 acquisition and retinoic acid signaling suppress the multilayered organoid phenotype associated with epithelial plasticity, thereby promoting epithelial specification and lineage commitment. Moreover, neonatal hormonal perturbation of adenogenesis and conditional deletion of Foxa2 abolished this organoid phenotype. Together, these findings demonstrate that ESR1 acquisition, retinoic acid signaling and FOXA2-dependent glandular differentiation each restrict a transient epithelial plasticity state, coupling the loss of developmental plasticity to the emergence of the glandular lineage.

Matching journals

The top 5 journals account for 50% of the predicted probability mass.

1
Development
497 papers in training set
Top 0.2%
22.6%
2
Nature Communications
5641 papers in training set
Top 18%
9.9%
3
eLife
5828 papers in training set
Top 11%
9.0%
4
Developmental Cell
196 papers in training set
Top 0.3%
8.0%
5
Cell Reports
1498 papers in training set
Top 7%
5.2%
50% of probability mass above
6
Proceedings of the National Academy of Sciences
2444 papers in training set
Top 10%
4.9%
7
Science Advances
1243 papers in training set
Top 7%
4.1%
8
Biology of Reproduction
36 papers in training set
Top 0.2%
3.2%
9
JCI Insight
277 papers in training set
Top 3%
2.8%
10
The FASEB Journal
194 papers in training set
Top 2%
2.1%
11
Scientific Reports
3612 papers in training set
Top 53%
1.7%
12
PLOS Biology
486 papers in training set
Top 5%
1.7%
13
PLOS Genetics
862 papers in training set
Top 7%
1.7%
14
Science Signaling
65 papers in training set
Top 0.9%
1.3%
15
iScience
1154 papers in training set
Top 25%
1.1%
16
Endocrinology
43 papers in training set
Top 0.5%
1.1%
17
PLOS ONE
5266 papers in training set
Top 54%
1.1%
18
Cellular and Molecular Gastroenterology and Hepatology
46 papers in training set
Top 0.8%
1.0%
19
Molecular Human Reproduction
11 papers in training set
Top 0.2%
1.0%
20
Frontiers in Cell and Developmental Biology
233 papers in training set
Top 4%
1.0%
21
Life Science Alliance
285 papers in training set
Top 7%
0.9%
22
Nucleic Acids Research
1281 papers in training set
Top 13%
0.9%
23
Cell Death Discovery
58 papers in training set
Top 1%
0.9%
24
Developmental Dynamics
56 papers in training set
Top 0.7%
0.9%
25
Disease Models & Mechanisms
119 papers in training set
Top 3%
0.6%
26
Cells
249 papers in training set
Top 8%
0.6%
27
Cell Systems
201 papers in training set
Top 5%
0.6%
28
PNAS Nexus
159 papers in training set
Top 4%
0.6%
29
Molecular Biology of the Cell
311 papers in training set
Top 4%
0.6%