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糖皮质激素通过下调钙调蛋白表达抑制树突棘发育。

Glucocorticoid suppresses dendritic spine development mediated by down-regulation of caldesmon expression.

机构信息

Department of Neuroscience, Graduate School of Medicine, Osaka University, Suita, Osaka 565-0871, Japan.

出版信息

J Neurosci. 2012 Oct 17;32(42):14583-91. doi: 10.1523/JNEUROSCI.2380-12.2012.

Abstract

Glucocorticoids (GCs) mediate the effects of stress to cause structural plasticity in brain regions such as the hippocampus, including simplification of dendrites and shrinkage of dendritic spines. However, the molecular mechanics linking stress and GCs to these effects remain largely unclear. Here, we demonstrated that corticosterone (CORT) reduces the expression levels of caldesmon (CaD), causing dendritic spines to become vulnerable. CaD regulates cell motility by modulating the actin-myosin system and actin filament stability. In cultured rat hippocampal neurons, CaD localized to dendritic spines by binding to filamentous actin (F-actin), and CaD expression levels increased during spine development. CaD stabilized the F-actin dynamics in spines, thereby enlarging the spine heads, whereas CaD knockdown decreased the spine-head size via destabilization of the F-actin dynamics. CaD was also required for chemical LTP-induced actin stabilization. The CaD expression levels were markedly decreased by exposure to CORT mediated by suppression of serum response factor-dependent transcription. High CORT levels reduced both the spine-head size and F-actin stability similarly to CaD knockdown, and overexpressing CaD abolished the detrimental effect of CORT on dendritic spine development. These results indicate that CaD enlarges the spine-head size by stabilizing F-actin dynamics, and that CaD is a critical target in the GC-induced detrimental effects on dendritic spine development.

摘要

糖皮质激素(GCs)介导应激的作用,导致海马等脑区的结构可塑性,包括树突简化和树突棘萎缩。然而,将应激和 GCs 与这些效应联系起来的分子机制在很大程度上仍不清楚。在这里,我们证明了皮质酮(CORT)降低钙调蛋白(CaD)的表达水平,使树突棘变得脆弱。CaD 通过调节肌动球蛋白系统和肌动蛋白丝稳定性来调节细胞运动。在培养的大鼠海马神经元中,CaD 通过与丝状肌动蛋白(F-actin)结合而定位在树突棘上,并且 CaD 的表达水平在棘突发育过程中增加。CaD 稳定了棘突中的 F-actin 动力学,从而增大了棘突头的大小,而 CaD 敲低则通过 F-actin 动力学的不稳定降低了棘突头的大小。CaD 也是化学 LTP 诱导的肌动蛋白稳定所必需的。通过抑制血清反应因子依赖性转录介导的 CORT 暴露,CaD 的表达水平明显降低。高 CORT 水平通过类似 CaD 敲低的方式降低了棘突头的大小和 F-actin 的稳定性,而过表达 CaD 则消除了 CORT 对树突棘发育的有害影响。这些结果表明,CaD 通过稳定 F-actin 动力学来增大棘突头的大小,并且 CaD 是 GCs 对树突棘发育产生有害影响的关键靶标。

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