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An ovarian phenotype of alpha 7 nicotinic receptor knockout mice
Pia Seßenhausen1, Karolina M Caban2, Nicole Kreitmair1
1Biomedical Center Munich (BMC), Cell Biology, Anatomy III, Faculty of Medicine, Ludwig Maximilian University of Munich, Planegg-Martinsried, Germany.
In Brief:
Nicotinic acetylcholine receptor alpha 7 (nAChRa7), encoded by Chrna7, is expressed by various murine ovarian cells. Morphological and molecular investigations, including a proteomic study of adult Chrna7 knockout (KO) mouse ovaries, reveal the roles of these receptors in the local regulation of the ovary.
Abstract:
Nicotinic acetylcholine receptor alpha 7 (nAChRa7), encoded by Chrna7, is involved in cellular functions ranging from synaptic transmission in neurons to regulation of inflammation, cell growth and metabolism to cell death in other cells. Our qPCR results and other studies indicated that nAChRa7 is expressed in the adult mouse ovary, while in situ hybridization and single-cell sequencing data suggested this expression may be shared by several ovarian cells, including fibroblast-like and steroidogenic stroma cells, macrophages and oocytes of small follicles. To explore a possible involvement of nAChRa7 in ovarian functions, we evaluated ovarian morphology of Chrna7-null mutant adult mice (KO) and wildtype mice (WT; 3 months, metestrus) by performing immunohistochemistry, qPCR studies, measurements of serum progesterone and proteomic analyses. The evaluation of serial sections indicated fewer primordial follicles but similar numbers of primary, secondary and tertiary follicles, as well as corpora lutea in KO and WT mice. Atresia was unchanged. Serum progesterone and mRNA levels of proliferation and most apoptosis markers were not changed, yet two typical macrophage markers were elevated. Furthermore, the proteomes of KO ovaries were significantly altered with 96 proteins increased and 32 decreased in abundance in KOs compared to WTs. Among the elevated proteins were markers for stroma cells. Hence, the lack of nAChRa7 causes changes in small follicle counts and alterations of the ovarian stroma cells. The ovarian phenotype of Chrna7 mutant mice links this channel protein to the local regulation of ovarian cells, including stroma cells.
Insights
The nicotinic acetylcholine receptor alpha 7 (nAChRa7) plays a role in ovarian function. Lack of nAChRa7 in mice alters ovarian stroma cells and small follicle counts, indicating its involvement in local ovarian regulation.
Area of Science:
- Reproductive biology
- Neuroendocrinology
- Molecular biology
Background:
- Nicotinic acetylcholine receptor alpha 7 (nAChRa7) is expressed in various cells and involved in diverse cellular functions.
- nAChRa7 is present in adult mouse ovaries, potentially in stroma cells, macrophages, and oocytes.
Purpose of the Study:
- To investigate the role of nAChRa7 in ovarian function using Chrna7 knockout (KO) mice.
- To evaluate the impact of nAChRa7 absence on ovarian morphology, cell populations, and protein expression.
Main Methods:
- Comparative analysis of Chrna7 KO and wildtype (WT) adult mouse ovaries.
- Immunohistochemistry, qPCR, serum progesterone measurements, and proteomic analysis were employed.
- Ovarian morphology, follicle counts, atresia, and protein abundance were assessed.
Main Results:
- Chrna7 KO mice showed fewer primordial follicles but similar numbers of other follicle types and corpora lutea compared to WT.
- No significant changes in serum progesterone or most proliferation/apoptosis markers were observed.
- Proteomic analysis revealed significant alterations in protein abundance, with elevated markers for stroma cells and macrophages in KO ovaries.
Conclusions:
- The absence of nAChRa7 leads to changes in ovarian stroma cell populations and affects small follicle counts.
- These findings link nAChRa7 to the local regulation of ovarian cells, particularly stroma cells.

