CiteExportLink to record
Permanent link

Direct link
Cite
Citation style
  • apa
  • ieee
  • modern-language-association-8th-edition
  • vancouver
  • Other style
More styles
Language
  • de-DE
  • en-GB
  • en-US
  • fi-FI
  • nn-NO
  • nn-NB
  • sv-SE
  • Other locale
More languages
Output format
  • html
  • text
  • asciidoc
  • rtf
Developmental Control of Reproductive Tract Morphogenesis: Comparative Analysis of Conserved Transcriptional Mechanisms
Stockholm University, Faculty of Science, Department of Molecular Biosciences, The Wenner-Gren Institute.ORCID iD: 0000-0002-4875-1829
2026 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

The formation of functional organs requires the coordinated integration of distinct epithelial tissues. A central challenge in this process is how heterotypic epithelial populations recognize one another, remodel their properties, and establish stable structural and luminal continuity. Despite its fundamental importance during organogenesis, the molecular mechanisms governing heterotypic epithelial tissue fusion remain poorly understood. In this thesis, I use the male reproductive system (RS) as a model to investigate the transcriptional regulation of epithelial tissue remodeling and fusion, with a particular focus on the PRDI-BF1–RIZ1 (PR)-domain transcription factors Hamlet (Ham) and PRDM16. By combining studies in Drosophila melanogaster and mouse, I examine how these factors guide epithelial morphogenesis and assess whether their functions are evolutionarily conserved. 

In the first paper, I identify a previously unrecognized role for Ham in epithelial remodeling and fusion between the testis and seminal vesicle of the Drosophila male reproductive tract. Ham is required for the specification of testis terminal epithelial cells, as complete loss of ham results in the absence of this cell population. Furthermore, even a modest reduction of Ham levels disrupts epithelial tube fusion. Transcriptomic and genetic analyses reveal that Ham regulates an extensive gene network involved in epithelial differentiation, cell adhesion, cytoskeletal organization and signaling. Ham activates genes required for epithelial differentiation and remodeling while repressing genes associated with tissue growth and patterning. Key downstream effectors include E-cadherin, Toll, and Wnt2 signaling pathways, which together coordinate epithelial interactions and tissue fusion. These findings define a comprehensive gene regulatory network underlying heterotypic epithelial tissue fusion.

 Given the evolutionary conservation of Ham and its orthologs, and the remarkable sensitivity of the RS to reduced Ham activity, I next investigate the function of PRDM16 in the murine reproductive tract. In the second paper, I show that PRDM16 is specifically expressed in a subset of somatic gonadal precursor cells and their descendant rete testis (RT) epithelial cells. Loss of Prdm16 leads to defective RT morphogenesis, characterized by reduced cell proliferation, decreased E-cadherin expression and impaired lumen formation. These defects are accompanied by disrupted WNT and BMP signaling, suggesting that PRDM16 coordinates signaling, and transcriptional programs required for epithelial tissue organization.

Together, these findings uncover an evolutionarily conserved role for Ham and PRDM16 in epithelial morphogenesis and tissue connectivity. They establish a comparative framework for understanding how transcriptional programs regulate epithelial tissue fusion during organogenesis.

Place, publisher, year, edition, pages
Stockholm: Department of Molecular Biosciences, The Wenner-Gren Institute, Stockholm University , 2026. , p. 63
Keywords [en]
Epithelial tissue fusion, reproductive system development, Hamlet, PRDM16, organogenesis, transcriptional regulation, gene network
National Category
Developmental Biology Cell and Molecular Biology
Research subject
Molecular Bioscience
Identifiers
URN: urn:nbn:se:su:diva-256795ISBN: 978-91-8107-678-3 (print)ISBN: 978-91-8107-679-0 (electronic)OAI: oai:DiVA.org:su-256795DiVA, id: diva2:2075279
Public defence
2026-09-11, Vivi Täckholm-salen, NPQ-huset, Svante Arrhenius väg 20D, Stockholm, 09:30 (English)
Opponent
Supervisors
Available from: 2026-08-19 Created: 2026-06-18 Last updated: 2026-08-11Bibliographically approved
List of papers
1. Drosophila hamlet mediates epithelial tissue assembly of the reproductive system
Open this publication in new window or tab >>Drosophila hamlet mediates epithelial tissue assembly of the reproductive system
Show others...
2024 (English)In: eLIFE, E-ISSN 2050-084X, Vol. 13, article id RP104164Article in journal (Refereed) Published
Abstract [en]

Epithelial tissue fusion requires coordinated molecular events at the ends of two epithelial structures. Regulatory mechanisms controlling these events remain largely elusive. In the Drosophila reproductive system (RS), this fusion unites the gonad and the genital disc-derived tissues, into a continuous tube. This study unveils the pivotal role of Hamlet (Ham), a Drosophila PR domain containing transcription factor, in orchestrating epithelial tissue fusion in the RS. Loss of ham leads to sterility and disconnection between the testes and seminal vesicles. Systematic analysis of Ham downstream genes reveals cytoskeletal, metabolic regulators and signaling pathway components. Ham activates genes for epithelial differentiation and remodeling, while repressing genes required for tissue growth and patterning. Using multiplexed in situ hybridization, we demonstrate spatial–temporal gene expression dynamics in contacting epithelia. Key Ham downstream effectors include E-Cadherin (E-Cad), Toll (Tl), and Wnt2 signaling pathways, regulating tissue interaction and fusion. Our findings present a comprehensive gene network crucial for heterotypic epithelial tissue fusion. Mammalian Ham orthologs PRDM3 and PRDM16 are highly expressed in epithelial tissues, suggesting a conserved role across species.

National Category
Developmental Biology
Identifiers
urn:nbn:se:su:diva-249362 (URN)10.7554/eLife.104164 (DOI)001523072400001 ()40613556 (PubMedID)
Available from: 2025-11-10 Created: 2025-11-10 Last updated: 2026-06-18Bibliographically approved
2. PRDM16 regulates epithelial remodeling and morphogenesis of the murine rete testis
Open this publication in new window or tab >>PRDM16 regulates epithelial remodeling and morphogenesis of the murine rete testis
(English)Manuscript (preprint) (Other academic)
Abstract [en]

Formation of interconnected epithelial tubes is essential for organogenesis and organ function, yet the molecular mechanisms governing epithelial morphogenesis and tissue connectivity remain largely elusive. The mammalian rete testis is a specialized epithelium that connects the seminiferous tubules to the efferent ducts and is required for sperm transport. During development, the rete testis undergoes extensive remodeling to establish a continuous reproductive ductal network. Here, we identify a critical role for the transcriptional regulator PRDM16 in murine rete testis development. PRDM16 is expressed in a subset of somatic gonadal precursor cells and their descendant rete testis epithelium. Loss of Prdm16 does not affect rete testis specification but impairs epithelialization, resulting in reduced cell proliferation, decreased E-cadherin expression, defective lumen formation, and abnormal rete testis morphogenesis. These defects are accompanied by altered expression of WNT- and BMP-associated genes, suggesting that PRDM16 coordinates signaling and transcriptional programs required for epithelial differentiation and tissue organization. Our previous work identified a similar role for the Drosophila PRDM16 ortholog Hamlet in epithelial remodeling and tube fusion within the male reproductive tract, raising the possibility of an evolutionarily conserved function. Together, our findings establish PRDM16 as a key regulator of rete testis morphogenesis and support a conserved role for PRDM16 family proteins in epithelial tissue connectivity across species.

National Category
Developmental Biology Cell and Molecular Biology
Research subject
Molecular Bioscience; Developmental Biology
Identifiers
urn:nbn:se:su:diva-256959 (URN)
Available from: 2026-06-18 Created: 2026-06-18 Last updated: 2026-06-18

Open Access in DiVA

Developmental Control of Reproductive Tract Morphogenesis: Comparative Analysis of Conserved Transcriptional Mechanisms(6484 kB)18 downloads
File information
File name FULLTEXT01.pdfFile size 6484 kBChecksum SHA-512
f55ddaea171543839c75d123c959c4ffaf636bc602f12c8e8ed56d2fa7804ffe38fe10f0c9a64b0a3dcca8566a9b036c3016bcd3a6a0e58a8b2363557b871519
Type fulltextMimetype application/pdf

Authority records

Wang, Huazhen

Search in DiVA

By author/editor
Wang, Huazhen
By organisation
Department of Molecular Biosciences, The Wenner-Gren Institute
Developmental BiologyCell and Molecular Biology

Search outside of DiVA

GoogleGoogle Scholar
The number of downloads is the sum of all downloads of full texts. It may include eg previous versions that are now no longer available

isbn
urn-nbn

Altmetric score

isbn
urn-nbn
Total: 5879 hits
CiteExportLink to record
Permanent link

Direct link
Cite
Citation style
  • apa
  • ieee
  • modern-language-association-8th-edition
  • vancouver
  • Other style
More styles
Language
  • de-DE
  • en-GB
  • en-US
  • fi-FI
  • nn-NO
  • nn-NB
  • sv-SE
  • Other locale
More languages
Output format
  • html
  • text
  • asciidoc
  • rtf