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Published on: February 21, 2016
Abnormal development of the olfactory bulb and reproductive system in mice lacking prokineticin receptor PKR2
Shun-Ichiro Matsumoto1, Chihiro Yamazaki, Koh-Hei Masumoto
1Molecular Medicine Research Laboratories, Drug Discovery Research, Astellas Pharma, Inc., 21 Miyukigaoka, Tsukuba, Ibaraki 305-8585, Japan. shunichiro.matsumoto@jp.astellas.com
Abstract:
Prokineticins, multifunctional secreted proteins, activate two endogenous G protein-coupled receptors PKR1 and PKR2. From in situ analysis of the mouse brain, we discovered that PKR2 is predominantly expressed in the olfactory bulb (OB). To examine the role of PKR2 in the OB, we created PKR1- and PKR2-gene-disrupted mice (Pkr1(-/-) and Pkr2(-/-), respectively). Phenotypic analysis indicated that not Pkr1(-/-)but Pkr2(-/-)mice exhibited hypoplasia of the OB. This abnormality was observed in the early developmental stages of fetal OB in the Pkr2(-/-) mice. In addition, the Pkr2(-/-) mice showed severe atrophy of the reproductive system, including the testis, ovary, uterus, vagina, and mammary gland. In the Pkr2(-/-) mice, the plasma levels of testosterone and follicle-stimulating hormone were decreased, and the mRNA transcription levels of gonadotropin-releasing hormone in the hypothalamus and luteinizing hormone and follicle-stimulating hormone in the pituitary were also significantly reduced. Immunohistochemical analysis revealed that gonadotropin-releasing hormone neurons were absent in the hypothalamus in the Pkr2(-/-) mice. The phenotype of the Pkr2(-/-) mice showed similarity to the clinical features of Kallmann syndrome, a human disease characterized by association of hypogonadotropic hypogonadism and anosmia. Our current findings demonstrated that physiological activation of PKR2 is essential for normal development of the OB and sexual maturation.
Insights
Prokineticin receptor 2 (PKR2) is crucial for olfactory bulb development and sexual maturation. PKR2 gene disruption in mice led to olfactory bulb hypoplasia and reproductive system atrophy, mimicking Kallmann syndrome.
Area of Science:
- Neuroscience
- Endocrinology
- Developmental Biology
Background:
- Prokineticins are secreted proteins activating G protein-coupled receptors PKR1 and PKR2.
- PKR2 shows predominant expression in the mouse olfactory bulb (OB).
Purpose of the Study:
- To investigate the role of PKR2 in olfactory bulb development and function.
- To analyze the impact of PKR2 deficiency on reproductive system maturation.
Main Methods:
- Generation of Pkr1 and Pkr2 gene-disrupted mouse models.
- Phenotypic analysis of olfactory bulb and reproductive organs.
- Hormonal level assays (testosterone, FSH, LH) and gene expression analysis (GnRH, LH, FSH).
- Immunohistochemistry for gonadotropin-releasing hormone (GnRH) neurons.
Main Results:
- Pkr2(-/-) mice exhibited olfactory bulb hypoplasia during fetal development.
- Severe atrophy of reproductive organs (testis, ovary, uterus, vagina, mammary gland) was observed in Pkr2(-/-) mice.
- Reduced plasma testosterone and FSH levels, and decreased hypothalamic GnRH and pituitary LH/FSH mRNA levels were noted in Pkr2(-/-) mice.
- Absence of GnRH neurons in the hypothalamus of Pkr2(-/-) mice.
Conclusions:
- PKR2 is essential for normal olfactory bulb development.
- PKR2 plays a critical role in sexual maturation and the regulation of the hypothalamic-pituitary-gonadal axis.
- The phenotype of Pkr2(-/-) mice resembles human Kallmann syndrome, highlighting PKR2's significance in related disorders.

