Changes in the expression of DNA-binding/differentiation protein inhibitors in neurons and glial cells of the gerbil hippocampus following transient global cerebral ischemia

短暂性全脑缺血后沙鼠海马神经元和神经胶质细胞DNA结合/分化蛋白抑制剂表达的变化

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作者:Jae-Chul Lee, Bai Hui Chen, Jeong-Hwi Cho, In Hye Kim, Ji Hyeon Ahn, Joon Ha Park, Hyun-Jin Tae, Geum-Sil Cho, Bing Chun Yan, Dae Won Kim, In Koo Hwang, Jinseu Park, Yun Lyul Lee, Soo Young Choi, Moo-Ho Won

Abstract

Inhibitors of DNA-binding/differentiation (ID) proteins bind to basic helix‑loop‑helix (bHLH) transcription factors, including those that regulate differentiation and cell‑cycle progression during development, and regulate gene transcription. However, little is known about the role of ID proteins in the brain under transient cerebral ischemic conditions. In the present study, we examined the effects of ischemia‑reperfusion (I-R) injury on the immunoreactivity and protein levels of IDs 1‑4 in the gerbil hippocampus proper Cornu Ammonis regions CA1‑3 following 5 min of transient cerebral ischemia. Strong ID1 immunoreactivity was detected in the nuclei of pyramidal neurons in the hippocampal CA1‑3 regions; immunoreactivity was significantly changed following I-R in the CA1 region, but not in the CA2/3 region. Five days following I-R, ID1 immunoreactivity was not detected in the CA1 pyramidal neurons. ID1 immunoreactivity was detected only in GABAergic interneurons in the ischemic CA1 region. Weak ID4 immunoreactivity was detected in non‑pyramidal cells, and immunoreactivity was again only changed in the ischemic CA1 region. Five days following I-R, strong ID4 immunoreactivity was detected in non‑pyramidal cells, which were identified as microglia, and not astrocytes, in the ischemic CA1 region. Furthermore, changes in the protein levels of ID1 and ID4 in the ischemic CA1 region studied by western blot were consistent with patterns of immunoreactivity. In summary, these results indicate that immunoreactivity and protein levels of ID1 and ID4 are distinctively altered following transient cerebral ischemia only in the CA1 region, and that the changes in ID1 and ID4 expression may relate to the ischemia‑induced delayed neuronal death.

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