Cytochrome P450 expression and regulation in the brain.

IF 3.4 2区 医学 Q2 PHARMACOLOGY & PHARMACY
Drug Metabolism Reviews Pub Date : 2021-02-01 Epub Date: 2020-12-27 DOI:10.1080/03602532.2020.1858856
Wojciech Kuban, Władysława Anna Daniel
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引用次数: 44

Abstract

The regulation of brain cytochrome P450 enzymes (CYPs) is different compared with respective hepatic enzymes. This may result from anatomical bases and physiological functions of the two organs. The brain is composed of a variety of functional structures built of different interconnected cell types endowed with specific receptors that receive various neuronal signals from other brain regions. Those signals activate transcription factors or alter functioning of enzyme proteins. Moreover, the blood-brain barrier (BBB) does not allow free penetration of all substances from the periphery into the brain. Differences in neurotransmitter signaling, availability to endogenous and exogenous active substances, and levels of transcription factors between neuronal and hepatic cells lead to differentiated expression and susceptibility to the regulation of CYP genes in the brain and liver. Herein, we briefly describe the CYP enzymes of CYP1-3 families, their distribution in the brain, and discuss brain-specific regulation of CYP genes. In parallel, a comparison to liver CYP regulation is presented. CYP enzymes play an essential role in maintaining the levels of bioactive molecules within normal ranges. These enzymes modulate the metabolism of endogenous neurochemicals, such as neurosteroids, dopamine, serotonin, melatonin, anandamide, and exogenous substances, including psychotropics, drugs of abuse, neurotoxins, and carcinogens. The role of these enzymes is not restricted to xenobiotic-induced neurotoxicity, but they are also involved in brain physiology. Therefore, it is crucial to recognize the function and regulation of CYP enzymes in the brain to build a foundation for future medicine and neuroprotection and for personalized treatment of brain diseases.

细胞色素P450在大脑中的表达和调控。
脑细胞色素P450酶(CYPs)的调节与相应的肝酶相比是不同的。这可能与两个器官的解剖基础和生理功能有关。大脑由多种功能结构组成,这些结构是由不同的相互连接的细胞类型构成的,这些细胞类型具有特定的受体,可以接收来自其他大脑区域的各种神经元信号。这些信号激活转录因子或改变酶蛋白的功能。此外,血脑屏障(BBB)不允许所有物质从外周自由渗透到大脑。神经元细胞和肝细胞之间的神经递质信号、内源性和外源性活性物质的可利用性以及转录因子水平的差异导致CYP基因在脑和肝脏中的表达差异和易感性调控。本文简要介绍了CYP1-3家族的CYP酶及其在脑中的分布,并讨论了CYP基因的脑特异性调控。同时,对肝脏CYP调控进行了比较。CYP酶在维持生物活性分子水平在正常范围内发挥重要作用。这些酶调节内源性神经化学物质的代谢,如神经类固醇、多巴胺、血清素、褪黑素、anandamide和外源性物质,包括精神药物、滥用药物、神经毒素和致癌物。这些酶的作用不仅限于外源性诱导的神经毒性,而且还涉及脑生理学。因此,认识大脑中CYP酶的功能和调控,为未来的医学和神经保护以及脑部疾病的个性化治疗奠定基础至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Drug Metabolism Reviews
Drug Metabolism Reviews 医学-药学
CiteScore
11.10
自引率
1.70%
发文量
21
审稿时长
1 months
期刊介绍: Drug Metabolism Reviews consistently provides critically needed reviews of an impressive array of drug metabolism research-covering established, new, and potential drugs; environmentally toxic chemicals; absorption; metabolism and excretion; and enzymology of all living species. Additionally, the journal offers new hypotheses of interest to diverse groups of medical professionals including pharmacologists, toxicologists, chemists, microbiologists, pharmacokineticists, immunologists, mass spectroscopists, as well as enzymologists working in xenobiotic biotransformation.
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