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首页> 外文期刊>International Journal of Molecular Sciences >Subchronic Exposure to Arsenic Represses the TH/TRβ1-CaMK IV Signaling Pathway in Mouse Cerebellum
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Subchronic Exposure to Arsenic Represses the TH/TRβ1-CaMK IV Signaling Pathway in Mouse Cerebellum

机译:亚慢性暴露于砷会抑制小鼠小脑的TH /TRβ1-CaMKIV信号通路。

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We previously reported that arsenic (As) impaired learning and memory by down-regulating calmodulin-dependent protein kinase IV (CaMK IV) in mouse cerebellum. It has been documented that the thyroid hormone receptor (TR)/retinoid X receptor (RXR) heterodimer and thyroid hormone (TH) may be involved in the regulation of CaMK IV. To investigate whether As affects the TR/RXR heterodimer and TH, we determined As concentration in serum and cerebellum, 3,5,3’-triiodothyronine (T3) and thyroxin (T4) levels in serum, and expression of CaMK IV, TR and RXR in cerebellum of mice exposed to As. Cognition function was examined by the step-down passive avoidance task and Morris water maze (MWM) tests. Morphology of the cerebellum was observed by H e matoxylin-Eosin staining under light microscope. Our results showed that the concentrations of As in the serum and cerebellum of mice both increased with increasing As-exposure level. A significant positive correlation was found between the two processes. Adeficit in learning and memory was found in the exposed mice. Abnormal morphologic changes of Purkinje cells were observed in cerebellum of the exposed mice. Moreover, the cerebellar expressions of CaMK IV protein and the TRβ gene, and TRβ1 protein were significantly lower in As-exposed mice than those in controls. Subchronic exposure to As appears to increase its level in serum and cerebella of mice, impairing learning and memory and down-regulating expression of TRβ1 as well as down-stream CaMK IV. It is also suggested that the increased As may be responsible for down-regulation of TRβ1 and CaMK IV in cerebellum and that the down-regulated TRβ1 may be involved in As-induced impairment of learning and memory via inhibiting CaMK IV and its down-stream pathway.
机译:我们先前曾报道砷(As)通过下调小鼠小脑中钙调蛋白依赖性蛋白激酶IV(CaMK IV)来损害学习和记忆。已经证明甲状腺激素受体(TR)/类维生素X受体(RXR)异二聚体和甲状腺激素(TH)可能参与CaMK IV的调节。为了研究As是否会影响TR / RXR异二聚体和TH,我们确定了血清和小脑中As的浓度,血清中3,5,3'-三碘甲状腺素(T3)和甲状腺素(T4)的水平,以及CaMK IV,TR和暴露于As的小鼠小脑中的RXR。通过逐步降低的被动回避任务和莫里斯水迷宫(MWM)测试来检验认知功能。在光学显微镜下通过苏木精-曙红染色观察小脑的形态。我们的结果表明,小鼠血清和小脑中砷的浓度均随砷暴露水平的升高而增加。在两个过程之间发现了显着的正相关。在暴露的小鼠中发现学习和记忆缺乏。在暴露的小鼠小脑中观察到浦肯野细胞的异常形态变化。此外,AsM暴露小鼠的CaMK IV蛋白和TRβ基因以及TRβ1蛋白的小脑表达明显低于对照组。亚慢性暴露于As似乎会增加其在小鼠血清和小脑中的水平,损害学习和记忆,并下调TRβ1和下游CaMK IV的表达。还提示As的升高可能是小脑TRβ1和CaMK IV下调的原因,TRβ1的下调可能通过抑制CaMK IV及其下游而参与As诱导的学习和记忆障碍。途径。

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