Bian Yuting, Fukui Yusuke, Ota-Elliott Ricardo Satoshi, Hu Xinran, Sun Hongming, Bian Zhihong, Zhai Yun, Yu Haibo, Hu Xiao, An Hangping, Liu Hongzhi, Morihara Ryuta, Ishiura Hiroyuki, Yamashita Toru
Department of Neurology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University, 2-5-1 Shikata-cho, Kita-Ku, Okayama 700-8558, Japan.
Neurosci Res. 2025 Apr;213:128-137. doi: 10.1016/j.neures.2025.01.006. Epub 2025 Jan 29.
The disruption of transactive response DNA binding protein 43 kDa (TDP-43) shuttling leads to the depletion of nuclear localization and the cytoplasmic accumulation of TDP-43. We aimed to evaluate the mechanism underlying the behavior of TDP-43 in ischemic stroke. Adult male C57BL/6 J mice were subjected to 30 or 60 min of transient middle cerebral artery occlusion (tMCAO), and examined at 1, 6, and 24 h post reperfusion. Immunostaining was used to evaluate the expression of TDP-43, G3BP1, HDAC6, and RAD23B. The total and cytoplasmic number of TDP-43-positive cells increased compared with sham operation group and peaked at 6 h post reperfusion after tMCAO. The elevated expression of G3BP1 protein peaked at 6 h after reperfusion and decreased at 24 h after reperfusion in ischemic mice brains. We also observed an increase of expression level of HDAC6 and the number of RAD23B-positive cells increased after tMCAO. RAD23B was colocalized with TDP-43 24 h after tMCAO. We proposed that the formation of stress granules might be involved in the mislocalization of TDP-43, based on an evaluation of G3BP1 and HDAC6. Subsequently, RAD23B, may also contribute to the downstream degradation of mislocalized TDP-43 in mice tMCAO model.
转录激活反应DNA结合蛋白43千道尔顿(TDP - 43)穿梭的破坏导致核定位的耗竭以及TDP - 43在细胞质中的积累。我们旨在评估缺血性中风中TDP - 43行为的潜在机制。成年雄性C57BL / 6J小鼠接受30或60分钟的短暂大脑中动脉闭塞(tMCAO),并在再灌注后1、6和24小时进行检查。免疫染色用于评估TDP - 43、G3BP1、HDAC6和RAD23B的表达。与假手术组相比,TDP - 43阳性细胞的总数和细胞质数量增加,并在tMCAO再灌注后6小时达到峰值。缺血小鼠脑中G3BP1蛋白的表达升高在再灌注后6小时达到峰值,并在再灌注后24小时下降。我们还观察到tMCAO后HDAC6表达水平增加以及RAD23B阳性细胞数量增加。tMCAO后24小时,RAD23B与TDP - 43共定位。基于对G3BP1和HDAC6的评估,我们提出应激颗粒的形成可能与TDP - 43的错误定位有关。随后,RAD23B也可能在小鼠tMCAO模型中促成错误定位的TDP - 43的下游降解。