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Publication : Sex-Dimorphic Behavioral Alterations and Altered Neurogenesis in U12 Intron Splicing-Defective <i>Zrsr1</i> Mutant Mice.

First Author  Alén F Year  2019
Journal  Int J Mol Sci Volume  20
Issue  14 PubMed ID  31331069
Mgi Jnum  J:291941 Mgi Id  MGI:6443000
Doi  10.3390/ijms20143543 Citation  Alen F, et al. (2019) Sex-Dimorphic Behavioral Alterations and Altered Neurogenesis in U12 Intron Splicing-Defective Zrsr1 Mutant Mice. Int J Mol Sci 20(14):3543
abstractText  Mutant mice with respect to the splicing factor Zrsr1 present altered spermatogenesis and infertility. To investigate whether Zrsr1 is involved in the homeostatic control that the hypothalamus exerts over reproductive functions, we first analyzed both differential gene and isoform expression and alternative splicing alterations in Zrsr1 mutant (Zrsr1(mu)) hypothalamus; second, we analyzed the spontaneous and social behavior of Zrsr1(mu) mice; and third, we analyzed adult cell proliferation and survival in the Zrsr1(mu) hypothalamus. The Zrsr1(mu) hypothalamus showed altered expression of genes and isoforms related to the glutathione metabolic process, synaptonemal complex assembly, mRNA transport, and altered splicing events involving the enrichment of U12-type intron retention (IR). Furthermore, increased IR in U12-containing genes related with the prolactin, progesterone, and gonadotropin-releasing hormone (GnRH) reproductive signaling pathway was observed. This was associated with a hyperactive phenotype in both males and females, with an anxious phenotype in females, and with increased social interaction in males, instead of the classical aggressive behavior. In addition, Zrsr1(mu) females but not males exhibited reduced cell proliferation in both the hypothalamus and the subventricular zone. Overall, these results suggest that Zrsr1 expression and function are relevant to organization of the hypothalamic cell network controlling behavior.
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