尿酮体丢失导致老年slc5a8缺陷小鼠脑白质变性

L. Suissa, Virginie Flachon, J. Guigonis, C. Olivieri, F. Burel-Vandenbos, J. Guglielmi, D. Ambrosetti, M. Gérard, P. Franken, J. Darcourt, L. Pellerin, T. Pourcher, S. Lindenthal
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引用次数: 4

摘要

SLC5A8是一种在多种上皮细胞中表达的钠偶联单羧酸和酮转运蛋白。SLC5A8在神经能量学中的作用也被假设。为了澄清这一问题,我们研究了slc5a8缺陷小鼠在衰老过程中的大脑表型。老年slc5a8缺陷小鼠表现为弥漫性脑白质病,以髓内水肿为特征,无脱髓鞘,提示慢性能量危机。利用99mtc -六甲基丙烯胺肟(HMPAO)单光子发射CT (SPECT)发现老年slc5a8缺陷小鼠白质代谢低下。由于在小鼠大脑中无法检测到SLC5A8蛋白,因此假设衰老SLC5A8缺陷小鼠的白质脑病是由于SLC5A8在SLC5A8强烈表达的外周器官(即肾脏)中缺乏表达引起的。观察到slc5a8缺陷小鼠尿液中β-羟基丁酸酮(BHB)的过量排泄,表明slc5a8缺陷小鼠出现脑BHB功能不全。老年slc5a8缺陷小鼠也表现出葡萄糖代谢的改变。我们提出,BHB的持续肾损失导致老年slc5a8缺陷小鼠的大脑慢性能量缺乏,这些小鼠无法平衡其葡萄糖缺陷。这项研究强调了替代能量底物在神经能量学中的重要性,特别是在限制葡萄糖可用性的条件下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Urinary ketone body loss leads to degeneration of brain white matter in elderly SLC5A8-deficient mice
SLC5A8 is a sodium-coupled monocarboxylate and ketone transporter expressed in various epithelial cells. A putative role of SLC5A8 in neuroenergetics has been also hypothesized. To clarify this issue, we studied the cerebral phenotype of SLC5A8-deficient mice during aging. Elderly SLC5A8-deficient mice presented diffuse leukoencephalopathy characterized by intramyelinic oedema without demyelination suggesting chronic energetic crisis. Hypo-metabolism in the white matter of elderly SLC5A8-deficient mice was found using 99mTc-hexamethylpropyleneamine oxime (HMPAO) single-photon emission CT (SPECT). Since the SLC5A8 protein could not be detected in the mouse brain, it was hypothesized that the leukoencephalopathy of aging SLC5A8-deficient mice was caused by the absence of slc5a8 expression in a peripheral organ, i.e. the kidney, where SLC5A8 is strongly expressed. A hyper-excretion of the ketone β-hydroxybutyrate (BHB) in the urine of SLC5A8-deficient mice was observed and showed that SLC5A8-deficient mice suffered a cerebral BHB insufficiency. Elderly SLC5A8-deficient mice also presented altered glucose metabolism. We propose that the continuous renal loss of BHB leads to a chronic energetic deficiency in the brain of elderly SLC5A8-deficient mice who are unable to counterbalance their glucose deficit. This study highlights the importance of alternative energetic substrates in neuroenergetics especially under conditions of restricted glucose availability.
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