Ovarian folliculogenesis relies on tightly coordinated communication between the oocyte and surrounding granulosa cells, yet how this molecular dialogue is remodeled during follicle development remains poorly understood. Here, we reconstructed stage-specific ligand-receptor communication networks through a transcriptomic meta-analysis integrating bovine secondary, early antral, and middle antral follicles. Our analyses revealed that oocyte-granulosa cell communication undergoes progressive remodeling during folliculogenesis, with distinct signaling programs characterizing successive developmental stages. Secondary follicles were predominantly associated with extracellular matrix organization, cell adhesion, and early metabolic regulation. During the early antral stage, signaling shifted toward lipid, steroid, and vitamin metabolism, identifying this phase as a major metabolic transition. Middle antral follicles exhibited a marked increase in communication complexity, with enrichment of PI3K-AKT, mTOR, RAS, Hippo, and cell adhesion pathways accompanying the acquisition of developmental competence. Additional analyses of Brilliant Cresyl Blue-classified cumulus-oocyte complexes identified competence-associated ligand-receptor interactions, while independent validation using the EmbryoGENE dataset confirmed stage-specific expression patterns and highlighted CD47, FGF21, and GPC6 as candidate regulators of oocyte developmental competence. This study provides a comprehensive transcriptomic framework describing the dynamic remodeling of oocyte-granulosa cell communication during bovine folliculogenesis. Beyond confirming established signaling pathways, it identifies novel candidate interactions and offers a biologically grounded resource to guide future functional studies and the optimization of in vitro follicle and cumulus-oocyte complex culture systems.

Dynamic Remodeling of Oocyte‐Granulosa Cell Communication During Bovine Folliculogenesis Revealed by Transcriptomic Meta‐Analyses / N. Monferini, L.D.. - In: THE FASEB JOURNAL. - ISSN 0892-6638. - 40:18(2026 Sep 30), pp. e72289.1-e72289.19. [10.1096/fj.202603316RR]

Dynamic Remodeling of Oocyte‐Granulosa Cell Communication During Bovine Folliculogenesis Revealed by Transcriptomic Meta‐Analyses

N. Monferini
Primo
Writing – Original Draft Preparation
;
L. Donadini
Secondo
Data Curation
;
P. Dey
Data Curation
;
F. Franciosi
Writing – Review & Editing
;
V. Lodde
Writing – Review & Editing
;
A.M. Luciano
Co-ultimo
Supervision
2026

Abstract

Ovarian folliculogenesis relies on tightly coordinated communication between the oocyte and surrounding granulosa cells, yet how this molecular dialogue is remodeled during follicle development remains poorly understood. Here, we reconstructed stage-specific ligand-receptor communication networks through a transcriptomic meta-analysis integrating bovine secondary, early antral, and middle antral follicles. Our analyses revealed that oocyte-granulosa cell communication undergoes progressive remodeling during folliculogenesis, with distinct signaling programs characterizing successive developmental stages. Secondary follicles were predominantly associated with extracellular matrix organization, cell adhesion, and early metabolic regulation. During the early antral stage, signaling shifted toward lipid, steroid, and vitamin metabolism, identifying this phase as a major metabolic transition. Middle antral follicles exhibited a marked increase in communication complexity, with enrichment of PI3K-AKT, mTOR, RAS, Hippo, and cell adhesion pathways accompanying the acquisition of developmental competence. Additional analyses of Brilliant Cresyl Blue-classified cumulus-oocyte complexes identified competence-associated ligand-receptor interactions, while independent validation using the EmbryoGENE dataset confirmed stage-specific expression patterns and highlighted CD47, FGF21, and GPC6 as candidate regulators of oocyte developmental competence. This study provides a comprehensive transcriptomic framework describing the dynamic remodeling of oocyte-granulosa cell communication during bovine folliculogenesis. Beyond confirming established signaling pathways, it identifies novel candidate interactions and offers a biologically grounded resource to guide future functional studies and the optimization of in vitro follicle and cumulus-oocyte complex culture systems.
cell–cell signaling ligand–receptor interactions; cumulus cell; developmental competence; folliculogenesis; oocyte–granulosa cell communication; ovary
Settore MVET-01/A - Anatomia veterinaria
Settore MVET-01/B - Fisiologia veterinaria
Settore MVET-05/B - Clinica ostetrica, ginecologica, andrologica e neonatologia veterinaria
Settore BIOS-04/A - Anatomia, biologia cellulare e biologia dello sviluppo comparate
   European Oocyte Biology Research Innovation Training Net (EUROVA)
   EUROVA
   EUROPEAN COMMISSION
   H2020
   860960

   New perspectives for the exploitation of female reproductive potential in mammals: from the recovery of the untapped natural ovarian reserve to the generation of oocytes and granulosa cells from mesenchymal stem cells.
   InfinitEGG
   MINISTERO DELL'ISTRUZIONE E DEL MERITO
   20209L8BN4_001

   The Cumulus Oophorus extracellular MATRIX as a marker of follicular development, oocyte maturation and embryo quality in human assisted reproduction (CO-MATRIX)
   CO-MATRIX
   MINISTERO DELL'UNIVERSITA' E DELLA RICERCA
   20227EB74M_002

   Approcci integrati in situ ed ex situ per la tutela della biodiversità della razza bovina varzese: Fase 2 del progetto INNOVA (R-INNOVA)
   R-INNOVA
   REGIONE LOMBARDIA - Agricoltura, sovranità alimentare e foreste
30-set-2026
11-set-2026
Article (author)
File in questo prodotto:
File Dimensione Formato  
100678406.pdf

accesso aperto

Tipologia: Publisher's version/PDF
Licenza: Creative commons
Dimensione 7.3 MB
Formato Adobe PDF
7.3 MB Adobe PDF Visualizza/Apri
Pubblicazioni consigliate

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1272135
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus ND
  • ???jsp.display-item.citation.isi??? ND
  • OpenAlex ND
social impact