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ABCA8 在多系统萎缩大脑中的表达增加与致病蛋白的变化有关。

Increased expression of ABCA8 in multiple system atrophy brain is associated with changes in pathogenic proteins.

机构信息

Neuroscience Research Australia, Sydney, NSW, Australia School of Medical Sciences, University of New South Wales, Sydney, NSW, Australia.

出版信息

J Parkinsons Dis. 2013 Jan 1;3(3):331-9. doi: 10.3233/JPD-130203.

Abstract

BACKGROUND

Multiple system atrophy (MSA) is a fatal neurodegenerative disease of unknown aetiology characterised by the accumulation of insoluble α-synuclein (α-syn) aggregates in the cytoplasm of myelin-producing oligodendrocytes. Dysfunction of the lipid-rich myelin membrane may precede α-syn pathology in MSA pathogenesis. ATP-binding cassette transporter A8 (ABCA8) is a little-studied lipid transporter, which has recently been found to be highly expressed in oligodendrocyte-rich white matter regions of the human brain. ABCA8 expression promotes sphingomyelin production in oligodendrocytes in vitro, suggesting a role in myelin formation and maintenance.

OBJECTIVE

We hypothesise that aberrant ABCA8 expression in oligodendrocytes plays a role in the early pathogenesis of MSA by impacting myelin stability and regulation of α-syn and p25α.

METHODS

We measured the expression of ABCA8, α-syn and p25α in MSA brains in disease-affected grey matter (GM, putamen and cerebellum), disease-affected white matter (WM, under the motor cortex) and an unaffected brain region (visual cortex). We transfected human oligodendrocytes with ABCA8 and assessed its impact on α-syn and p25α expression.

RESULTS

ABCA8 expression was significantly increased in the disease-affected GM and WM with no significant change in the unaffected brain region. α-syn and p25α expression were significantly increased in the disease-affected WM and GM respectively. Overexpression of ABCA8 in oligodendrocytes caused significant increases in both α-syn and p25α expression.

CONCLUSIONS

These data suggest a direct relationship between the levels of ABCA8 and the ectopic expression of α-syn and increased expression of p25α. As these data reflect results found in MSA, we hypothesise that increased ABCA8 may precipitate MSA pathology.

摘要

背景

多系统萎缩(MSA)是一种病因不明的致命神经退行性疾病,其特征是在产生髓磷脂的少突胶质细胞的细胞质中积累不溶性α-突触核蛋白(α-syn)聚集体。脂质丰富的髓磷脂膜的功能障碍可能先于 MSA 发病机制中的α-syn 病理学。ATP 结合盒转运蛋白 A8(ABCA8)是一种研究较少的脂质转运蛋白,最近在富含少突胶质细胞的人脑白质区域中发现其高度表达。ABCA8 的表达促进体外少突胶质细胞中神经鞘磷脂的产生,表明其在髓鞘形成和维持中发挥作用。

目的

我们假设,少突胶质细胞中异常的 ABCA8 表达通过影响髓鞘稳定性以及调节α-syn 和 p25α,在 MSA 的早期发病机制中发挥作用。

方法

我们测量了 MSA 大脑中受影响的灰质(GM,壳核和小脑)、受影响的白质(WM,运动皮层下)和未受影响的大脑区域(视觉皮层)中 ABCA8、α-syn 和 p25α 的表达。我们用 ABCA8 转染人少突胶质细胞,并评估其对α-syn 和 p25α 表达的影响。

结果

ABCA8 的表达在受影响的 GM 和 WM 中显著增加,而在未受影响的大脑区域中没有明显变化。α-syn 和 p25α 的表达分别在受影响的 WM 和 GM 中显著增加。ABCA8 在少突胶质细胞中的过表达导致α-syn 和 p25α 的表达均显著增加。

结论

这些数据表明 ABCA8 的水平与α-syn 的异位表达和 p25α 的表达增加之间存在直接关系。由于这些数据反映了在 MSA 中发现的结果,我们假设增加的 ABCA8 可能引发 MSA 病理学。

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