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Relationship: 3647
Title
Decreased, release of kisspeptin from AVPV neurons leads to Decreased, GnRH pulsatility/release
Upstream event
Downstream event
Key Event Relationship Overview
AOPs Referencing Relationship
| AOP Name | Adjacency | Weight of Evidence | Quantitative Understanding | Point of Contact | Author Status | OECD Status |
|---|---|---|---|---|---|---|
| Activation, estrogen receptor alpha leads to prolonged estrus cycle via decreased kisspeptin release | adjacent | High | John Frisch (send email) | Under development: Not open for comment. Do not cite |
Taxonomic Applicability
| Term | Scientific Term | Evidence | Link |
|---|---|---|---|
| mammals | mammals | High | NCBI |
Sex Applicability
| Sex | Evidence |
|---|---|
| Unspecific | High |
Life Stage Applicability
| Term | Evidence |
|---|---|
| Adult, reproductively mature | Moderate |
| Juvenile | Moderate |
Key Event Relationship Description
Kisspeptin is a key signalling neuropeptide hormone in mammals. Kisspeptin is released by the anteroventral periventricular nucleus (AVPV) region of the hypothalamus, and binds kisspeptin receptors (GPR54, KISS1R) on Gonadotropin-releasing hormone neurons.
Gonadotropin-releasing hormone (GnRH) is produced by the hypothalamus. Gonadotropin-releasing hormone is a peptide hormone composed of 10 amino acids (Hassanein et al. 2024). Decreased kisspeptin results in decreased levels of released GnRH.
Evidence Collection Strategy
This Key Event Relationship was part of an Environmental Protection Agency effort to develop AOPs that establish scientifically supported causal linkages between alternative endpoints measured using new approach methodologies (NAMs) and guideline apical endpoints measured in Tier 1 and Tier 2 test guidelines (U.S. EPA, 2024) employed by the Endocrine Disruptor Screening Program (EDSP). A series of key events that represent significant, measurable, milestones connecting molecular initiation to apical endpoints indicative of adversity were identified based on scientific review articles and empirical studies. Additionally, scientific evidence supporting the causal relationships between each pair of key events was assembled and evaluated. The present effort focused primarily on empirical studies with laboratory rodents and other mammals.
Cited empirical studies are focused on decreased release of kisspeptin from anteroventral periventricular nucleus (AVPV) neurons and resulting decreased, GnRH pulsatility/release in laboratory mammals, in support of development of AOP 609.
Authors of KER 3647 did a further evaluation of published peer-reviewed literature to provide additional evidence in support of the key event relationship. The literature used to support this KER began with the test guidelines and followed to primary, secondary, and/or tertiary works concerning the relevant underlying biology. In addition, search engines were used to target journal articles with terms ‘kisspeptin’ and ‘Gonadotropin-releasing hormone.’
Evidence Supporting this KER
Biological Plausibility
Decreased release of kisspeptin from anteroventral periventricular nucleus (AVPV) neurons and resulting decreased, GnRH pulsatility/release have been studied in laboratory mammals by toxicants known to increase estrogen receptor activation (Feng et al. 2015; Cao et al. 2018; Wang et al. 2018; Tang et al. 2020; Yin et al. 2021). Gene knock-out studies have been useful in essentiality of kisspeptin genes in the hypothalamus- pituitary-gonadal (HPG) axis, with subsequent hormone addition restoring normal function (d'Anglemont de Tassigny et al. 2007; Clarkson et al. 2008; Novaira et al. 2014). Ovariectomized animals have been used to show the role of hormones in reproductive development and the estrus cycle, with hormone replacement restoring normal function (Clarkson et al. 2008; Dubois et al 2015; McQuillan et al. 2022).
Empirical Evidence
|
Species |
Duration |
Dose |
Decreased AVPV kisspeptin? |
Decreased GnRH? |
Summary |
Citation |
|
Mice (Mus musculus) |
4 months |
0.1 mg/kg/bw/d PFOS. |
yes |
yes |
Female mice exposed to PFOS had statistically significant decreased AVPV-Kiss1 mRNA leading to statistically significant decreased GnRH mRNA and GnRH hormone during proestrus. |
Feng et al. (2015) |
|
Mice (Mus musculus) |
50 days |
1,10,100 mg/kg/day Triclosan. |
yes |
yes |
Female mice exposed to 10, 100 mg/kg/day Triclosan had statistically significant decreased AVPV-Kiss1 mRNA leading to statistically significant decreased GnRH mRNA. Separate trial with addition of kisspeptin was able to restore GnRH mRNA levels. |
Cao et al. (2018) |
|
Mice (Mus musculus) |
30 days |
10 mg/kg PFOS. |
yes |
yes |
Female mice exposed to PFOS had statistically significant decreased AVPV-Kiss1 mRNA and immunoreactive kisspeptin neurons leading to statistically significant decreased GnRH hormone. |
Wang et al. (2018) |
|
Mice (Mus musculus) |
60 days |
50 ug/kg/bw BPA |
yes |
yes |
Female mice exposed to BPA had statistically significant decreased AVPV-Kiss1 mRNA and immunoreactive kisspeptin neurons leading to statistically significant decreased GnRH hormone. Separate trial with kisspeptin was able to restore GnRH hormone levels. |
Tang et al. (2020) |
|
Mice (Mus musculus) |
42 days |
5 mg/kg/d PFHxS |
yes |
yes |
Female mice exposed to PFHxS had statistically significant decreased AVPV-Kiss1 mRNA and immunoreactive kisspeptin neurons leading to statistically decreased GnRH mRNA. Separate trial with kisspeptin was able to restore GnRH hormone levels. |
Yin et al. (2021) |
Uncertainties and Inconsistencies
Known modulating factors
Quantitative Understanding of the Linkage
Response-response Relationship
Time-scale
Known Feedforward/Feedback loops influencing this KER
Domain of Applicability
Life Stage: Applies to adult, reproductively mature and juveniles.
Sex: Applies to both males and females.
Taxonomic: Primarily studied in humans and laboratory rodents. Plausible for most mammals due to conserved hormone pathways regulating hypothalamus-pituitary-gonadal axis processes. For vertebrates, largely absent from bird species; role in fish uncertain as some evidence suggests a compensatory rather than required role, and perhaps reduced function (Sivalingam et al. 2022).
References
Cao XY, Hua X, Xiong JW, Zhu WT, Zhang J, Chen L. 2018. Impact of Triclosan on Female Reproduction through Reducing Thyroid Hormones to Suppress Hypothalamic Kisspeptin Neurons in Mice. Frontiers in Molecular Neuroscience 11(6).
Clarkson J, d'Anglemont de Tassigny X, Moreno AS, Colledge WH, Herbison AE. 2008. Kisspeptin-GPR54 signaling is essential for preovulatory gonadotropin-releasing hormone neuron activation and the luteinizing hormone surge. The Journal of Neuroscience 2008 28(35): 8691-8697.
d'Anglemont de Tassigny X, Fagg LA, Dixon JP, Day K, Leitch HG, Hendrick AG, Zahn D, Franceschini I, Caraty A, Carlton MB, Aparicio SA, Colledge WH. 2007. Hypogonadotropic hypogonadism in mice lacking a functional Kiss1 gene. Proceedings of the National Academy of Science 104(25): 10714-10719.
Dubois SL, Acosta-Martínez M, DeJoseph MR, Wolfe A, Radovick S, Boehm U, Urban JH, Levine JE. 2015. Positive, but not negative feedback actions of estradiol in adult female mice require estrogen receptor α in kisspeptin neurons. Endocrinology 156(3): 1111-1120.
Feng X, Wang X, Cao X, Xia Y, Zhou R, Chen L. 2015. Chronic Exposure of Female Mice to an Environmental Level of Perfluorooctane Sulfonate Suppresses Estrogen Synthesis Through Reduced Histone H3K14 Acetylation of the StAR Promoter Leading to Deficits in Follicular Development and Ovulation. Toxicological Sciences 148(2): 368-379.
Hassanein, E.M., Szelényi, Z., Szenci, O. 2024. Gonadotropin-Releasing Hormone (GnRH) and Its Agonists in Bovine Reproduction I: Structure, Biosynthesis, Physiological Effects, and Its Role in Estrous Synchronization. Animals 14: 1473.
McQuillan HJ, Clarkson J, Kauff A, Han SY, Yip SH, Cheong I, Porteous R, Heather AK, Herbison AE. 2022. Definition of the estrogen negative feedback pathway controlling the GnRH pulse generator in female mice. Nature Communications 13(1):7433.
Novaira HJ, Sonko ML, Hoffman G, Koo Y, Ko C, Wolfe A, Radovick S. 2014. Disrupted kisspeptin signaling in GnRH neurons leads to hypogonadotrophic hypogonadism. Molecular Endocrinololgy 28(2): 225-338.
Sivalingam M, Ogawa S, Trudeau VL, Parhar IS. 2022. Conserved functions of hypothalamic kisspeptin in vertebrates. General and Comparative Endocrinology 317: 113973.
Tang C, Zhang J, Liu P, Zhou Y, Hu Q, Zhong Y, Wang X, Chen L. 2020. Chronic exposure to low dose of bisphenol A causes follicular atresia by inhibiting kisspeptin neurons in anteroventral periventricular nucleus in female mice. Neurotoxicology 79: 164-176.
U.S. Environmental Protection Agency. 2004. EDSP Test Guidelines and Guidance Document. https://www.epa.gov/test-guidelines-pesticides-and-toxic-substances/edsp-test-guidelines-and-guidance-document (retrieved 25 July 2025).
Uenoyama, Y., Inoue, N., Nakamura, S., and Tsukamura, H. 2021. Kisspeptin Neurons and Estrogen–Estrogen Receptor α Signaling: Unraveling the Mystery of Steroid Feedback System Regulating Mammalian Reproduction. International Journal of Molecular Sciences 22(17): 9229.
Wang X, Bai Y, Tang C, Cao X, Chang F, Chen L. 2018. Impact of Perfluorooctane Sulfonate on Reproductive Ability of Female Mice through Suppression of Estrogen Receptor α-Activated Kisspeptin Neurons. Toxicological Sciences 165(2): 475-486.
Yin X, Di T, Cao X, Liu Z, Xie J, Zhang S. 2021. Chronic exposure to perfluorohexane sulfonate leads to a reproduction deficit by suppressing hypothalamic kisspeptin expression in mice. Journal of Ovarian Research 14(1): 141.
Italics indicate edits from John Frisch October 2025. A full list of updates can be found in the Change Log on the View History page.