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Molecular pathophysiology of the pituitary-gonadal axis
M Simoni1, J Gromoll, W Höppner
1Institute of Reproductive Medicine of the University, Münster, Germany.
Abstract:
Mutations of gonadotropin beta subunits or gonadotropin receptors are involved in some reproductive diseases leading to alterations of pubertal maturation or infertility. Homozygous inactivation of LH results in absence of pubertal maturation and hypogonadism in the male, whereas inactivation of FSH causes primary amenorrhea in females. Mutations of the gonadotropin receptors are classified into activating (the receptor is also active in the absence of the hormone: gain-of-function mutations) and inactivating types (the receptor is not properly processed and/or the hormone cannot bind: loss-of-function mutations). Activating mutations of the LH receptor have been described in familiar and sporadic forms of male-limited pseudoprecocious puberty, whereas they do not express any phenotype in females. The only activating mutation of the FSH receptor described to date was found in a hypophysectomized man who was fertile despite undetectable serum gonadotropin levels; the effects of constitutive FSH receptor activity occurring with normal pituitary function are not known. Homozygous inactivations of the LH and FSH receptor invariably lead to amenorrhea in genotypically female subjects. In males, inactivation of the LH receptor in its more severe form results in a clinical picture similar to the syndrome of complete androgen resistance, but milder forms of hypoandrogenization have been described as well. The clinical consequences of homozygous inactivation of the FSH receptor in males are associated with subfertility. Finally, polymorphic variants of both the gonadotropin LH and the FSH receptor are present in the normal population.
Insights
Mutations in gonadotropin hormones and their receptors can cause infertility and pubertal issues. Genetic changes in LH or FSH receptors lead to conditions like hypogonadism, amenorrhea, and altered sexual development.
Area of Science:
- Reproductive endocrinology
- Human genetics
- Molecular biology
Background:
- Gonadotropins, luteinizing hormone (LH) and follicle-stimulating hormone (FSH), are crucial for reproductive health.
- Mutations in gonadotropin subunits or receptors can disrupt pubertal maturation and fertility.
- Receptor mutations are classified as gain-of-function (activating) or loss-of-function (inactivating).
Purpose of the Study:
- To review the impact of gonadotropin and gonadotropin receptor mutations on reproductive health.
- To elucidate the clinical phenotypes associated with different types of mutations.
- To understand the genetic basis of reproductive diseases related to gonadotropin signaling.
Main Methods:
- Literature review of studies on gonadotropin and receptor mutations.
- Analysis of genetic data and clinical phenotypes.
- Classification of mutations based on functional effects (activating/inactivating).
Main Results:
- LH/FSH receptor inactivation causes hypogonadism, amenorrhea, and infertility in both sexes.
- Activating LH receptor mutations lead to male-limited pseudoprecocious puberty.
- Activating FSH receptor mutations are rare, with one case showing fertility despite low gonadotropins.
- Polymorphic variants are common in the general population.
Conclusions:
- Gonadotropin and receptor mutations are significant causes of reproductive disorders.
- The type and location of mutation determine the clinical presentation.
- Further research is needed to understand constitutive FSH receptor activity.
- Genetic variations in gonadotropin signaling pathways are key to reproductive function.