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短期给予铜灰霉素喂养会导致少突胶质细胞中出现选择性氨基酸剥夺,同时激活整合应激反应。

Short-term cuprizone feeding induces selective amino acid deprivation with concomitant activation of an integrated stress response in oligodendrocytes.

机构信息

Faculty of Medicine, Institute of Neuroanatomy, RWTH Aachen University, Wendlingweg 2, 52074, Aachen, Germany.

出版信息

Cell Mol Neurobiol. 2013 Nov;33(8):1087-98. doi: 10.1007/s10571-013-9975-y. Epub 2013 Aug 25.

DOI:10.1007/s10571-013-9975-y
PMID:23979168
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11497941/
Abstract

Cuprizone [bis(cyclohexylidenehydrazide)]-induced toxic demyelination is an experimental approach frequently used to study de- and re-myelination in the central nervous system. In this model, mice are fed with the copper chelator cuprizone which leads to oligodendrocyte apoptosis and subsequent microgliosis, astrocytosis, and demyelination. The underlying mechanisms of cuprizone-induced oligodendrocyte death are still unknown. We analysed differences in amino acid levels after short-term cuprizone exposure (i.e., 4 days). Furthermore, an amino acid response (AAR) pathway activated in oligodendrocytes after cuprizone intoxication was evaluated. Short-term cuprizone exposure resulted in a selective decrease of alanine, glycine, and proline plasma levels, which was paralleled by an increase of apoptotic cells in the liver and a decrease of alanine aminotransferase in the serum. These parameters were paralleled by oligodendrocyte apoptosis and the induction of an AAR with increased expression of the transcription factors ATF-3 and ATF-4 (activating transcription factor-3 and -4). Immunohistochemistry revealed that ATF-3 is exclusively expressed by oligodendrocytes and localized to the nuclear compartment. Our results suggest that cuprizone-induced liver dysfunction results in amino acid starvation and in consequence to the activation of an AAR. We propose that this stress response modulates oligodendrocyte viability in the cuprizone animal model.

摘要

杯状铜[双(环己基亚肼)]诱导的毒性脱髓鞘是一种常用于研究中枢神经系统去髓鞘和再髓鞘的实验方法。在该模型中,给小鼠喂食铜螯合剂杯状铜,导致少突胶质细胞凋亡,随后发生小胶质细胞增生、星形胶质细胞增生和脱髓鞘。杯状铜诱导少突胶质细胞死亡的潜在机制尚不清楚。我们分析了短期杯状铜暴露(即 4 天)后的氨基酸水平差异。此外,还评估了杯状铜中毒后少突胶质细胞中激活的氨基酸反应(AAR)途径。短期杯状铜暴露导致丙氨酸、甘氨酸和脯氨酸血浆水平选择性降低,同时肝脏中凋亡细胞增加,血清中丙氨酸氨基转移酶减少。这些参数与少突胶质细胞凋亡以及转录因子 ATF-3 和 ATF-4(激活转录因子-3 和 -4)表达增加的 AAR 诱导平行。免疫组织化学显示,ATF-3 仅由少突胶质细胞表达,并定位于核区室。我们的结果表明,杯状铜诱导的肝功能障碍导致氨基酸饥饿,并导致 AAR 的激活。我们提出,这种应激反应调节杯状铜动物模型中少突胶质细胞的存活。

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The neural androgen receptor: a therapeutic target for myelin repair in chronic demyelination.神经雄激素受体:慢性脱髓鞘疾病髓鞘修复的治疗靶点。
Brain. 2013 Jan;136(Pt 1):132-46. doi: 10.1093/brain/aws284.
2
Corticospinal tract and pontocerebellar fiber of central pontine myelinolysis.中央桥脑髓鞘溶解症的皮质脊髓束和桥脑小脑纤维
Ann Rehabil Med. 2012 Dec;36(6):887-92. doi: 10.5535/arm.2012.36.6.887. Epub 2012 Dec 28.
3
Elevated cJUN expression and an ATF/CRE site within the ATF3 promoter contribute to activation of ATF3 transcription by the amino acid response.cJUN 表达水平升高以及 ATF3 启动子内的 ATF/CRE 位点有助于氨基酸反应激活 ATF3 转录。
Physiol Genomics. 2013 Feb 15;45(4):127-37. doi: 10.1152/physiolgenomics.00160.2012. Epub 2012 Dec 26.
4
Identification and characterization of a potent activator of p53-independent cellular senescence via a small-molecule screen for modifiers of the integrated stress response.通过小分子筛选鉴定和表征整合应激反应调节剂诱导 p53 非依赖性细胞衰老的强效激活剂。
Mol Pharmacol. 2013 Mar;83(3):594-604. doi: 10.1124/mol.112.081810. Epub 2012 Dec 10.
5
Selective ultrastructural vulnerability in the cuprizone-induced experimental demyelination.在铜螯合剂诱导的实验性脱髓鞘中选择性超微结构易损性
Ideggyogy Sz. 2012 Jul 30;65(7-8):266-70.
6
Pathogenesis of multiple sclerosis: what can we learn from the cuprizone model.多发性硬化症的发病机制:我们能从铜螯合剂模型中学到什么。
Methods Mol Biol. 2012;900:403-31. doi: 10.1007/978-1-60761-720-4_20.
7
Alanine and aspartate aminotransferase and glutamine-cycling pathway: their roles in pathogenesis of metabolic syndrome.丙氨酸和天冬氨酸氨基转移酶与谷氨酰胺循环途径:在代谢综合征发病机制中的作用。
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Reduced astrocytic NF-κB activation by laquinimod protects from cuprizone-induced demyelination.拉喹莫德通过减少星形胶质细胞 NF-κB 的激活来预防 Cuprizone 诱导的脱髓鞘。
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