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Gene and protein expression profiles of JAK-STAT signalling pathway in the developing brain of the Ts1Cje down syndrome mouse model. | LitMetric

AI Article Synopsis

  • The JAK-STAT signaling pathway plays a crucial role in brain development, particularly influencing the balance between neurogenesis and gliogenesis.
  • Individuals and mouse models of Down syndrome (DS) show an increased number of astrocytes due to dysregulation in this pathway.
  • The study aimed to analyze the gene and protein expression of JAK-STAT components in different brain regions and stages of development in a DS mouse model, finding specific downregulation of key proteins associated with the signaling pathway.

Article Abstract

The JAK-STAT signalling pathway is one of the key regulators of pro-gliogenesis process during brain development. Down syndrome (DS) individuals, as well as DS mouse models, exhibit an increased number of astrocytes, suggesting an imbalance of neurogenic-to-gliogenic shift attributed to dysregulated JAK-STAT signalling pathway. The gene and protein expression profiles of JAK-STAT pathway members have not been characterised in the DS models. Therefore, we aimed to profile the expression of , , , and at different stages of brain development in the Ts1Cje mouse model of DS. Whole brain samples from Ts1Cje and wild-type mice at embryonic day (E)10.5, E15, postnatal day (P)1.5; and embryonic cortex-derived neurospheres were collected for gene and protein expression analysis. Gene expression profiles of three brain regions (cerebral cortex, cerebellum and hippocampus) from Ts1Cje and wild-type mice across four time-points (P1.5, P15, P30 and P84) were also analysed. In the developing mouse brain, none of the / genes were differentially expressed in the Ts1Cje model compared to wild-type mice. However, Western blot analyses indicated that phosphorylated (p)-Jak2, p-Stat3 and p-Stat6 were downregulated in the Ts1Cje model. During the postnatal brain development, / genes showed complex expression patterns, as most of the members were downregulated at different selected time-points. Notably, embryonic cortex-derived neurospheres from Ts1Cje mouse brain expressed lower Stat3 and Stat6 protein compared to the wild-type group. The comprehensive expression profiling of Jak/Stat candidates provides insights on the potential role of the JAK-STAT signalling pathway during abnormal development of the Ts1Cje mouse brains.

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Source
http://dx.doi.org/10.1080/00207454.2019.1580280DOI Listing

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