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本文引用的文献

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Oligodendrocyte Maturation Alters the Cell Death Mechanisms That Cause Demyelination.少突胶质细胞成熟改变导致脱髓鞘的细胞死亡机制。
J Neurosci. 2024 Mar 27;44(13):e1794232024. doi: 10.1523/JNEUROSCI.1794-23.2024.
2
Carnosine synthase deficiency aggravates neuroinflammation in multiple sclerosis.肌肽合酶缺乏加重多发性硬化症中的神经炎症。
Prog Neurobiol. 2023 Dec;231:102532. doi: 10.1016/j.pneurobio.2023.102532. Epub 2023 Sep 27.
3
Extensive profiling of histidine-containing dipeptides reveals species- and tissue-specific distribution and metabolism in mice, rats, and humans.组氨酸二肽的广泛分析揭示了在小鼠、大鼠和人类中的物种和组织特异性分布和代谢。
Acta Physiol (Oxf). 2023 Sep;239(1):e14020. doi: 10.1111/apha.14020. Epub 2023 Jul 24.
4
NADK-mediated de novo NADP(H) synthesis is a metabolic adaptation essential for breast cancer metastasis.NADK 介导的从头 NADP(H)合成是乳腺癌转移所必需的代谢适应。
Redox Biol. 2023 May;61:102627. doi: 10.1016/j.redox.2023.102627. Epub 2023 Feb 9.
5
Antioxidant and Neuroprotective Effects of Carnosine: Therapeutic Implications in Neurodegenerative Diseases.肌肽的抗氧化和神经保护作用:对神经退行性疾病的治疗意义
Antioxidants (Basel). 2022 Apr 26;11(5):848. doi: 10.3390/antiox11050848.
6
Oligodendrocyte death and myelin loss in the cuprizone model: an updated overview of the intrinsic and extrinsic causes of cuprizone demyelination.寡突胶质细胞死亡和髓鞘丢失在铜诱导模型中的作用:铜诱导脱髓鞘的内在和外在原因的最新综述。
Mol Neurodegener. 2022 May 7;17(1):34. doi: 10.1186/s13024-022-00538-8.
7
Absence of endogenous carnosine synthesis does not increase protein carbonylation and advanced lipoxidation end products in brain, kidney or muscle.内源性肌肽合成缺失不会增加大脑、肾脏或肌肉中的蛋白质羰基化和晚期脂质氧化终产物。
Amino Acids. 2022 Jul;54(7):1013-1023. doi: 10.1007/s00726-022-03150-8. Epub 2022 Mar 16.
8
Histidine dipeptides are key regulators of excitation-contraction coupling in cardiac muscle: Evidence from a novel CARNS1 knockout rat model.组氨酸二肽是心肌兴奋-收缩耦联的关键调节剂:来自新型 CARNS1 敲除大鼠模型的证据。
Redox Biol. 2021 Aug;44:102016. doi: 10.1016/j.redox.2021.102016. Epub 2021 May 20.
9
Understanding the antioxidant and carbonyl sequestering activity of carnosine: direct and indirect mechanisms.了解肌肽的抗氧化和羰基封闭活性:直接和间接机制。
Free Radic Res. 2021 Apr;55(4):321-330. doi: 10.1080/10715762.2020.1856830. Epub 2020 Dec 11.
10
Ferroptosis Mediates Cuprizone-Induced Loss of Oligodendrocytes and Demyelination.铁死亡介导铜锌抑制剂诱导的少突胶质细胞丢失和脱髓鞘。
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内源性组氨酸肽是生理性抗氧化剂,可在体内防止少突胶质细胞死亡和髓鞘丢失。

Endogenous histidine peptides are physiological antioxidants that prevent oligodendrocyte cell death and myelin loss in vivo.

作者信息

Sajrawi Clara, Odeh Maali, Tiwari Akshay K, Agranovich Bella, Abramovich Ifat, Zubedat Salman, Saar Galit, Shaulov Lihi, Avital Avi, Reznik Dan, Benhar Moran, Radzishevsky Inna, Engelender Simone, Wolosker Herman

机构信息

Department of Biochemistry. Rappaport Faculty of Medicine, Technion-Israel Institute of Technology, Haifa, Israel.

Laura and Isaac Perlmutter Metabolomics Center, Rappaport Faculty of Medicine, Technion-Israel Institute of Technology, Haifa, Israel.

出版信息

Glia. 2025 Jan;73(1):122-139. doi: 10.1002/glia.24624. Epub 2024 Oct 3.

DOI:10.1002/glia.24624
PMID:39360557
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11661932/
Abstract

Histidine dipeptides (HDs) are synthesized in brain oligodendrocytes by carnosine synthase (carns1), but their role is unknown. Using metabolomics and in vivo experiments with both constitutive and oligodendrocyte-selective carns1-KO mouse models, we found that HDs are critical for oligodendrocyte survival and protect against oxidative stress. Carns1-KO mouse models had lower numbers of mature oligodendrocytes, increased lipid peroxidation, and behavioral changes. Cuprizone administration, which increases reactive oxygen species in vivo, resulted in higher oligodendrocyte death, demyelination, axonal alterations, and oxidative damage in the corpus callosum of carns1-KO mice. Gliosis and oxidative damage by cuprizone were prevented by pretreatment with the antioxidant N-acetylcysteine. NADPH levels were increased threefold in the brains of carns1-KO mice as an antioxidant response to oxidative stress through acceleration of the pentose phosphate pathway (PPP). This was due to overexpression of glucose-6-phosphate dehydrogenase, the rate-limiting enzyme of the PPP. Likewise, expression of NAD kinase, the biosynthetic enzyme for NADP+, and NAMPT, which replenishes the NAD+ pool, was higher in carns1-KO mice brains than in controls. Our observations suggest that HDs cell-autonomously protect oligodendrocytes from oxidative stress, with implications for demyelinating diseases.

摘要

组氨酸二肽(HDs)由肌肽合酶(carns1)在脑少突胶质细胞中合成,但其作用尚不清楚。通过代谢组学以及对组成型和少突胶质细胞选择性carns1基因敲除(KO)小鼠模型进行的体内实验,我们发现HDs对少突胶质细胞的存活至关重要,并能抵御氧化应激。Carns1-KO小鼠模型中成熟少突胶质细胞数量减少、脂质过氧化增加且出现行为改变。铜离子载体(一种可在体内增加活性氧的物质)的给药导致carns1-KO小鼠胼胝体中少突胶质细胞死亡增加、脱髓鞘、轴突改变以及氧化损伤。用抗氧化剂N-乙酰半胱氨酸预处理可预防铜离子载体引起的胶质增生和氧化损伤。作为对氧化应激的抗氧化反应,通过加速磷酸戊糖途径(PPP),carns1-KO小鼠大脑中的烟酰胺腺嘌呤二核苷酸磷酸(NADPH)水平增加了两倍。这是由于PPP的限速酶葡萄糖-6-磷酸脱氢酶的过度表达所致。同样,NADP +的生物合成酶烟酰胺腺嘌呤二核苷酸激酶(NAD激酶)以及补充NAD +池的烟酰胺磷酸核糖转移酶(NAMPT)在carns1-KO小鼠大脑中的表达高于对照组。我们的观察结果表明,HDs可自主保护少突胶质细胞免受氧化应激,这对脱髓鞘疾病具有重要意义。