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Transcriptional and post-translational changes in the brain of mice deficient in cholesterol removal mediated by cytochrome P450 46A1 (CYP46A1)

机译:细胞色素P450 46A1(CYP46A1)介导的胆固醇清除不足的小鼠大脑中的转录和翻译后变化

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摘要

Cytochrome P450 46A1 (CYP46A1) converts cholesterol to 24-hydroxycholesterol and thereby controls the major pathways of cholesterol removal from the brain. Cyp46a1-/- mice have a reduction in the rate of cholesterol biosynthesis in the brain and significant impairments to memory and learning. To gain insights into the mechanisms underlying Cyp46a1-/- phenotype, we used Cyp46a1-/- mice and quantified their brain sterol levels and the expression of the genes pertinent to cholesterol homeostasis. We also compared the Cyp46a1-/- and wild type brains for protein phosphorylation and ubiquitination. The data obtained enable the following inferences. First, there seems to be a compensatory upregulation in the Cyp46a1-/- brain of the pathways of cholesterol storage and CYP46A1-independent removal. Second, transcriptional regulation of the brain cholesterol biosynthesis via sterol regulatory element binding transcription factors is not significantly activated in the Cyp46a1-/- brain to explain a compensatory decrease in cholesterol biosynthesis. Third, some of the liver X receptor target genes (Abca1) are paradoxically upregulated in the Cyp46a1-/- brain, possibly due to a reduced activation of the small GTPases RAB8, CDC42, and RAC as a result of a reduced phosphorylation of RAB3IP and PAK1. Fourth, the phosphorylation of many other proteins (a total of 146) is altered in the Cyp46a1-/- brain, including microtubule associated and neurofilament proteins (the MAP and NEF families) along with proteins related to synaptic vesicles and synaptic neurotransmission (e.g., SLCs, SHANKs, and BSN). Fifth, the extent of protein ubiquitination is increased in the Cyp46a1-/- brain, and the affected proteins pertain to ubiquitination (UBE2N), cognition (STX1B and ATP1A2), cytoskeleton function (TUBA1A and YWHAZ), and energy production (ATP1A2 and ALDOA). The present study demonstrates the diverse potential effects of CYP46A1 deficiency on brain functions and identifies important proteins that could be affected by this deficiency.
机译:细胞色素P450 46A1(CYP46A1)将胆固醇转化为24-羟基胆固醇,从而控制胆固醇从大脑中清除的主要途径。 Cyp46a1 -/-小鼠大脑中胆固醇的生物合成速率降低,对记忆和学习产生重大损害。为了深入了解Cyp46a1 -/-表型的潜在机制,我们使用了Cyp46a1 -/-小鼠,定量了他们的脑甾醇水平以及与胆固醇体内稳态相关的基因的表达。 。我们还比较了Cyp46a1 -/-和野生型大脑的蛋白质磷酸化和泛素化。获得的数据可以进行以下推断。首先,Cyp46a1 -/-脑中似乎存在胆固醇存储和CYP46A1非依赖性清除途径的代偿性上调。其次,Cyp46a1 -//-大脑中通过固醇调节元件结合转录因子的脑胆固醇生物合成的转录调控没有显着激活,以解释胆固醇生物合成的代偿性减少。第三,Cyp46a1 -/-脑中某些肝脏X受体靶基因(Abca1)矛盾地上调,可能是由于小GTPases RAB8,CDC42和RAC的激活减少所致减少的RAB3IP和PAK1的磷酸化。第四, Cyp46a1 -// 大脑中许多其他蛋白质(总共146种)的磷酸化发生了改变,包括微管相关蛋白和神经丝蛋白(MAP和NEF家族)以及与突触小泡和突触神经传递有关的蛋白(例如SLC,SHANK和BSN)。第五,在 Cyp46a1 -/- 大脑中蛋白质泛素化程度增加,并且受影响的蛋白质与泛素化(UBE2N),认知有关(STX1B和ATP1A2),细胞骨架功能(TUBA1A和YWHAZ)和能量产生(ATP1A2和ALDOA)。本研究证明CYP46A1缺乏对脑功能的多种潜在影响,并确定了可能受该缺乏影响的重要蛋白质。

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