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神经退行性疾病 FXTAS 中与周围生物能量缺陷相关的脑萎缩和白质损伤。

Brain Atrophy and White Matter Damage Linked to Peripheral Bioenergetic Deficits in the Neurodegenerative Disease FXTAS.

机构信息

Center for Mind and Brain, University of California Davis, Davis, CA 95618, USA.

Department of Molecular Biosciences, School of Veterinary Medicine, University of California Davis, Davis, CA 95616, USA.

出版信息

Int J Mol Sci. 2021 Aug 25;22(17):9171. doi: 10.3390/ijms22179171.

Abstract

Fragile X-associated tremor/ataxia syndrome (FXTAS) is a neurodegenerative disorder affecting subjects (premutation carriers) with a 55-200 CGG-trinucleotide expansion in the 5'UTR of the fragile X mental retardation 1 gene () typically after age 50. As both the presence of white matter hyperintensities (WMHs) and atrophied gray matter on magnetic resonance imaging (MRI) are linked to age-dependent decline in cognition, here we tested whether MRI outcomes (WMH volume (WMHV) and brain volume) were correlated with mitochondrial bioenergetics from peripheral blood monocytic cells in 87 carriers with and without FXTAS. As a parameter assessing cumulative damage, WMHV was correlated to both FXTAS stages and age, and brain volume discriminated between carriers and non-carriers. Similarly, mitochondrial mass and ATP production showed an age-dependent decline across all participants, but in contrast to WMHV, only FADH-linked ATP production was significantly reduced in carriers vs. non-carriers. In carriers, WMHV negatively correlated with ATP production sustained by glucose-glutamine and FADH-linked substrates, whereas brain volume was positively associated with the latter and mitochondrial mass. The observed correlations between peripheral mitochondrial bioenergetics and MRI findings-and the lack of correlations with FXTAS diagnosis/stages-may stem from early brain bioenergetic deficits even before overt FXTAS symptoms and/or imaging findings.

摘要

脆性 X 相关震颤/共济失调综合征 (FXTAS) 是一种影响携带者(前突变携带者)的神经退行性疾病,他们的脆性 X 智力迟钝 1 基因 () 的 5'UTR 中有 55-200 个 CGG-三核苷酸扩展,通常在 50 岁以后。由于磁共振成像 (MRI) 上的白质高信号 (WMH) 和灰质萎缩与认知能力随年龄下降有关,因此我们在这里测试了 87 名携带者和不携带 FXTAS 的外周血单核细胞中的线粒体生物能学是否与 MRI 结果(WMH 体积 (WMHV) 和脑容量)相关。作为评估累积损伤的参数,WMHV 与 FXTAS 分期和年龄相关,而脑容量可区分携带者和非携带者。同样,线粒体质量和 ATP 产生在所有参与者中均表现出随年龄的下降,但与 WMHV 不同,仅在携带者与非携带者之间,FADH 连接的 ATP 产生显著降低。在携带者中,WMHV 与葡萄糖-谷氨酰胺和 FADH 连接的底物维持的 ATP 产生呈负相关,而脑容量与后者和线粒体质量呈正相关。观察到的外周线粒体生物能学与 MRI 发现之间的相关性 - 以及与 FXTAS 诊断/分期之间缺乏相关性 - 可能源于早期大脑生物能学缺陷,甚至在出现明显的 FXTAS 症状和/或影像学发现之前。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27a8/8431233/c22e70212e93/ijms-22-09171-g001.jpg

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