Laboratorio di Genetica Molecolare, Istituto Giannina Gaslini, Via Gerolamo Gaslini, 5, 16148 Genova, Italy.
Exp Cell Res. 2012 Sep 10;318(15):1844-54. doi: 10.1016/j.yexcr.2012.06.008. Epub 2012 Jun 15.
Heterozygous mutations of the GFAP gene are responsible for Alexander disease, a neurodegenerative disorder characterized by intracytoplasmic Rosenthal fibers (RFs) in dystrophic astrocytes. In vivo and in vitro models have shown co-localization of mutant GFAP proteins with the small heat shock proteins (sHSPs) HSP27 and alphaB-crystallin, ubiquitin and proteasome components. Results reported by several recent studies agree on ascribing an altered cytoskeletal pattern to mutant GFAP proteins, an effect which induces mutant proteins accumulation, leading to impaired proteasome function and autophagy induction. On the basis of the protective role shown by both these small heat shock proteins (sHSPs), and on the already well established neuroprotective effects of curcumin in several diseases, we have investigated the effects of this compound in an in vitro model of Alexander disease, consisting in U251-MG astrocytoma cells transiently transfected with a construct encoding for GFAP carrying the p.R239C mutation in frame with the reporter green fluorescent protein (GFP). In particular, depending on the dose used, we have observed that curcumin is able to induce both HSP27 and alphaB-crystallin, to reduce expression of both RNA and protein of endogenous GFAP, to induce autophagy and, finally, to rescue the filamentous organization of the GFAP mutant protein, thus suggesting a role of this spice in counteracting the pathogenic effects of GFAP mutations.
GFAP 基因的杂合突变导致 Alexander 病,这是一种神经退行性疾病,其特征是在营养不良的星形胶质细胞中有细胞内 Rosenthal 纤维 (RFs)。体内和体外模型表明突变 GFAP 蛋白与小分子热休克蛋白 (sHSPs) HSP27 和 αB-晶体蛋白、泛素和蛋白酶体成分共定位。最近几项研究的结果一致认为,突变 GFAP 蛋白具有改变的细胞骨架模式,这种效应导致突变蛋白积累,从而损害蛋白酶体功能和自噬诱导。基于这两种小分子热休克蛋白 (sHSPs) 的保护作用,以及姜黄素在几种疾病中已经确立的神经保护作用,我们研究了这种化合物在体外 Alexander 病模型中的作用,该模型由瞬时转染携带 GFP 报告基因的 p.R239C 突变 GFAP 构建体的 U251-MG 星形胶质细胞瘤组成。特别是,根据使用的剂量,我们观察到姜黄素能够诱导 HSP27 和 αB-晶体蛋白的表达,降低内源性 GFAP 的 RNA 和蛋白质表达,诱导自噬,最后挽救突变 GFAP 蛋白的丝状组织,这表明这种香料在对抗 GFAP 突变的致病作用方面具有一定作用。