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Abnormal development of the olfactory bulb and reproductive system in mice lacking prokineticin receptor PKR2

机译:缺乏促动素受体PKR2的小鼠嗅球和生殖系统异常发育

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摘要

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.
机译:动力蛋白,多功能分泌蛋白,激活两个内源性G蛋白偶联受体PKR1和PKR2。通过对小鼠大脑的原位分析,我们发现PKR2主要在嗅球(OB)中表达。为了检查PKR2在OB中的作用,我们创建了PKR1-和PKR2-基因破坏的小鼠(分别为Pkr1-/-和Pkr2-/-)。表型分析表明,不是Pkr1-/-而是Pkr2-/-小鼠表现出OB发育不全。在Pkr2-/-小鼠的胎儿OB的早期发育阶段观察到了这种异常。此外,Pkr2-/-小鼠显示出生殖系统严重萎缩,包括睾丸,卵巢,子宫,阴道和乳腺。在Pkr2-/-小鼠中,血浆睾丸激素和促卵泡激素水平降低,下丘脑中促性腺激素释放激素的mRNA转录水平以及垂体中促黄体生成激素和促卵泡激素的水平也显着降低。免疫组织化学分析显示,Pkr2-/-小鼠的下丘脑不存在促性腺激素释放激素神经元。 Pkr2-/-小鼠的表型显示出与Kallmann综合征的临床特征相似,后者是一种以性腺功能低下性腺功能减退症和失眠症为特征的人类疾病。我们目前的发现表明,PKR2的生理激活对于OB的正常发育和性成熟至关重要。

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