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首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >7-Ketocholesterol is increased in the plasma of X-ALD patients and induces peroxisomal modifications in microglial cells: Potential roles of 7-ketocholesterol in the pathophysiology of X-ALD
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7-Ketocholesterol is increased in the plasma of X-ALD patients and induces peroxisomal modifications in microglial cells: Potential roles of 7-ketocholesterol in the pathophysiology of X-ALD

机译:X-ALD患者的血浆中,7-酮转化醇增加,并在微胶质细胞中诱导过氧异相变质修饰:7-酮蛋白在X-ALD病理生理学中的潜在作用

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摘要

X-linked adrenoleukodystrophy (X-ALD) is a genetic disorder induced by a mutation in the ABCD1 gene, which causes the accumulation of very long-chain fatty acids in tissue and plasma. Oxidative stress may be a hallmark of X-ALD. In the plasma of X-ALD patients with different forms of the disease, characterized by high levels of C24:0 and C26:0, we observed the presence of oxidative stress revealed by decreased levels of GSH, alpha-tocopherol, and docosahexaenoic acid (DHA). We showed that oxidative stress caused the oxidation of cholesterol and linoleic acid, leading to the formation of cholesterol oxide derivatives oxidized at C7 (7-ketocholesterol (7KC), 7 beta-hydroxycholesterol (7 beta-OHC), and 7 alpha-hydroxycholesrol (7 alpha-OHC)) and of 9- and 13-hydroxyoctadecadienoic acids (9-HODE, 13-HODE), respectively. High levels of 7KC, 7 beta-OHC, 7 alpha-OHC, 9-HODE and 13-HODE were found. As 7KC induces oxidative stress, inflammation and cell death, which could play key roles in the development of X-ALD, the impact of 7KC on the peroxisomal status was determined in microglial BV-2 cells. Indeed, environmental stress factors such as 7KC could exacerbate peroxisomal dysfunctions in microglial cells and thus determine the progression of the disease. 7KC induces oxiapoptophagy in BV-2 cells: overproduction of H2O2 and O-2, presence of cleaved caspase-3 and PARR nuclear condensation and/or fragmentation; elevated [LC3-II/LC3-11 ratio, increased p62 levels. 7KC also induces several peroxisomal modifications: decreased Abcd1, Abcd2, Abcd3, Acox1 and/or Mfp2 mRNA and protein levels, increased catalase activity and decreased Acox1-activity. However, the Pex14 level was unchanged. It is suggested that high levels of 7KC in X-ALD patients could foster generalized peroxisomal dysfunction in microglial cells, which could in turn intensify brain damage. (C) 2016 Elsevier Ltd. All rights reserved.
机译:X-Linked adrenoleukodystrophy(X-Ald)是由ABCD1基因突变引起的遗传疾病,这导致组织和血浆中非常长链脂肪酸的积累。氧化应激可能是X-ALD的标志。在X-ALD患者的血浆中具有不同形式的疾病,其特征在于高水平的C24:0和C26:0,我们观察到氧化应激的存在,通过降低的GSH,α-生育酚和十二碳六烯酸( DHA)。我们表明,氧化应激导致胆固醇和亚油酸的氧化,导致在C7(7-酮转酯(7KC),7β-羟基胆甾醇(7β-OHC)和7α-羟基苯并酚(7甲醇)和7α-羟基苯二酚(7所述7α-OHC)分别和9-羟基苯基二烯酸(9-霍德,13升)。找到高水平的7KC,7β-OHC,7α-OHC,9-HODE和13升。由于7KC诱导氧化应激,炎症和细胞死亡,这可能在X-ALD的发育中起关键作用,在微胶质组BV-2细胞中测定7KC对过氧血清酶体的影响。实际上,7KC等环境应力因子可以加剧小胶质细胞的过氧血清酶促功能障碍,从而确定疾病的进展。 7KC在BV-2细胞中诱导氧化血吸管:H 2 O 2和O-2的过度生产,裂解胱天蛋白酶-3的存在和Parr核缩合和/或碎片;升高[LC3-II / LC3-11比率,增加P62水平。 7KC还诱导几种过氧杀菌剂修饰:减少ABCD1,ABCD2,ABCD3,ACOX1和/或MFP2 mRNA和蛋白质水平,降氧酶活性增加和ACOX1-活性降低。但是,PEX14水平不变。建议X-ALD患者的高水平7KC可以促进微胶质细胞中的广义过氧血清功能障碍,这可能反过来加剧脑损伤。 (c)2016 Elsevier Ltd.保留所有权利。

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