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哺乳动物大脑中维生素稳态与DNA合成及修饰的联系。

The nexus of vitamin homeostasis and DNA synthesis and modification in mammalian brain.

作者信息

Spector Reynold, Johanson Conrad E

机构信息

Robert Wood Johnson Medical School, 105 Stone Hill Road, Colts Neck NJ 07722, USA.

出版信息

Mol Brain. 2014 Jan 10;7:3. doi: 10.1186/1756-6606-7-3.

Abstract

The purpose of this review is to discuss the implications of the 2009 discovery of the sixth deoxyribonucleoside (dN) [5-hydroxymethyldeoxycytidine (hmdC)] in DNA which is the most abundant in neurons. The concurrent discovery of the three ten-eleven translocation enzymes (TET) which not only synthesize but also oxidize hmdC in DNA, prior to glycosylase removal and base excision repair, helps explain many heretofore unexplained phenomena in brain including: 1) the high concentration of ascorbic acid (AA) in neurons since AA is a cofactor for the TET enzymes, 2) the requirement for reduced folates and the dN synthetic enzymes in brain, 3) continued DNA synthesis in non-dividing neurons to repair the dynamic formation/removal of hmdC, and 4) the heretofore unexplained mechanism to remove 5-methyldeoxycytidine, the fifth nucleoside, from DNA. In these processes, we also describe the important role of choroid plexus and CSF in supporting vitamin homeostasis in brain: especially for AA and folates, for hmdC synthesis and removal, and methylated deoxycytidine (mdC) removal from DNA in brain. The nexus linking AA and folates to methylation, hydroxymethylation, and demethylation of DNA is pivotal to understanding not only brain development but also the subsequent function.

摘要

本综述的目的是讨论2009年发现的第六种脱氧核糖核苷(dN)[5-羟甲基脱氧胞苷(hmdC)]在DNA中的意义,这种核苷在神经元中含量最为丰富。同时发现的三种十一易位酶(TET),它们不仅能在DNA中合成hmdC,还能在糖基化酶切除和碱基切除修复之前将其氧化,这有助于解释许多迄今为止在大脑中无法解释的现象,包括:1)神经元中高浓度的抗坏血酸(AA),因为AA是TET酶的辅助因子;2)大脑中对还原型叶酸和dN合成酶的需求;3)非分裂神经元中持续的DNA合成以修复hmdC的动态形成/去除;4)迄今为止无法解释的从DNA中去除第五种核苷5-甲基脱氧胞苷的机制。在这些过程中,我们还描述了脉络丛和脑脊液在支持大脑维生素稳态中的重要作用:特别是对于AA和叶酸,对于hmdC的合成和去除,以及从大脑DNA中去除甲基化脱氧胞苷(mdC)。将AA和叶酸与DNA的甲基化、羟甲基化和去甲基化联系起来的纽带,不仅对于理解大脑发育,而且对于理解随后的功能都至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a84/3896782/2e3215c9a03a/1756-6606-7-3-1.jpg

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