首页> 外文期刊>Acta Neuropathologica Communications >ABCA1 haplodeficiency affects the brain transcriptome following traumatic brain injury in mice expressing human APOE isoforms
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ABCA1 haplodeficiency affects the brain transcriptome following traumatic brain injury in mice expressing human APOE isoforms

机译:ABCA1单倍体缺乏影响表达人类APOE亚型的小鼠颅脑损伤后的脑转录组

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Expression of human Apolipoprotein E ( APOE ) modulates the inflammatory response in an isoform specific manner, with APOE4 isoform eliciting a stronger pro-inflammatory response, suggesting a possible mechanism for worse outcome following traumatic brain injury (TBI). APOE lipidation and stability is modulated by ATP-binding cassette transporter A1 (ABCA1), a transmembrane protein that transports lipids and cholesterol onto APOE. We examined the impact of Abca1 deficiency and APOE isoform expression on the response to TBI using 3-months-old, human APOE3 +/ + ( E3/Abca1 +/+) and APOE4 +/+ ( E4/Abca1 +/+ ) targeted replacement mice, and APOE3 + /+ and APOE4 +/+ mice with only one functional copy of the Abca1 gene ( E3/Abca1 +/? ; E4/Abca1 +/?). TBI-treated mice received a craniotomy followed by a controlled cortical impact (CCI) brain injury in the left hemisphere; sham-treated mice received the same surgical procedure without the impact. We performed RNA-seq using samples from cortices and hippocampi followed by genome-wide differential gene expression analysis. We found that TBI significantly impacted unique transcripts within each group, however, the proportion of unique transcripts was highest in E4/Abca1 +/? mice. Additionally, we found that Abca1 haplodeficiency increased the expression of microglia sensome genes among only APOE4 injured mice, a response not seen in injured APOE3 mice, nor in either group of sham-treated mice. To identify gene networks, or modules, correlated to TBI, APOE isoform and Abca1 haplodeficiency, we used weighted gene co-expression network analysis (WGCNA). The module that positively correlated to TBI groups was associated with immune response and featured hub genes that were microglia-specific, including Trem2, Tyrobp, Cd68 and Hexb. The modules positively correlated with APOE4 isoform and negatively to Abca1 haplodeficient mice represented “protein translation” and “oxidation-reduction process”, respectively. Our results reveal E4/Abca1 +/? TBI mice have a distinct response to injury, and unique gene networks are associated with APOE isoform, Abca1 insufficiency and injury.
机译:人载脂蛋白E(APOE)的表达以同工型特异性方式调节炎症反应,APOE4同工型引发更强的促炎反应,提示颅脑外伤(TBI)后不良结局的可能机制。 APOE的脂化和稳定性受ATP结合盒转运蛋白A1(ABCA1)的调节,该转运蛋白是将脂质和胆固醇转运到APOE上的跨膜蛋白。我们使用3个月大的人类APOE3 + / +(E3 / Abca1 + / +)和APOE4 + / +(E4 / Abca1 + / +)靶标,研究了Abca1缺乏和APOE亚型表达对TBI反应的影响替换小鼠,以及仅具有一个功能性拷贝的Abca1基因的APOE3 + / +和APOE4 + / +小鼠(E3 / Abca1 + /?; E4 / Abca1 + /?)。经TBI处理的小鼠在左半球进行了开颅手术,然后进行了可控的皮质撞击(CCI)脑损伤。假手术处理的小鼠接受了相同的手术程序而没有受到影响。我们使用来自皮质和海马的样品进行了RNA测序,然后进行了全基因组差异基因表达分析。我们发现TBI显着影响每个组中的唯一转录本,但是,唯一转录本的比例在E4 / Abca1 + /?中最高。老鼠。此外,我们发现Abca1单倍体缺乏症仅在APOE4损伤的小鼠中增加了小胶质细胞感觉基因的表达,这种反应在受伤的APOE3小鼠和两组假手术小鼠中均未见。为了确定与TBI,APOE亚型和Abca1单倍体缺陷相关的基因网络或模块,我们使用了加权基因共表达网络分析(WGCNA)。与TBI组正相关的模块与免疫反应相关,并具有小胶质细胞特异性的枢纽基因,包括Trem2,Tyrobp,Cd68和Hexb。与APOE4亚型呈正相关而与Abca1单倍体缺陷小鼠呈负相关的模块分别代表“蛋白质翻译”和“氧化还原过程”。我们的结果显示E4 / Abca1 + /? TBI小鼠对损伤有独特的反应,独特的基因网络与APOE亚型,Abca1功能不全和损伤有关。

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