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阿尔茨海默病相关基因在脑胆固醇转运途径上的汇聚:淀粉样前体蛋白、胆固醇、脂蛋白与动脉粥样硬化

Convergence of genes implicated in Alzheimer's disease on the cerebral cholesterol shuttle: APP, cholesterol, lipoproteins, and atherosclerosis.

作者信息

Carter C J

出版信息

Neurochem Int. 2007 Jan;50(1):12-38. doi: 10.1016/j.neuint.2006.07.007. Epub 2006 Sep 12.

Abstract

Polymorphic genes associated with Alzheimer's disease (see ) delineate a clearly defined pathway related to cerebral and peripheral cholesterol and lipoprotein homoeostasis. They include all of the key components of a glia/neurone cholesterol shuttle including cholesterol binding lipoproteins APOA1, APOA4, APOC1, APOC2, APOC3, APOD, APOE and LPA, cholesterol transporters ABCA1, ABCA2, lipoprotein receptors LDLR, LRP1, LRP8 and VLDLR, and the cholesterol metabolising enzymes CYP46A1 and CH25H, whose oxysterol products activate the liver X receptor NR1H2 and are metabolised to esters by SOAT1. LIPA metabolises cholesterol esters, which are transported by the cholesteryl ester transport protein CETP. The transcription factor SREBF1 controls the expression of most enzymes of cholesterol synthesis. APP is involved in this shuttle as it metabolises cholesterol to 7-betahydroxycholesterol, a substrate of SOAT1 and HSD11B1, binds to APOE and is tethered to LRP1 via APPB1, APBB2 and APBB3 at the cytoplasmic domain and via LRPAP1 at the extracellular domain. APP cleavage products are also able to prevent cholesterol binding to APOE. BACE cleaves both APP and LRP1. Gamma-secretase (PSEN1, PSEN2, NCSTN) cleaves LRP1 and LRP8 as well as APP and their degradation products control transcription factor TFCP2, which regulates thymidylate synthase (TS) and GSK3B expression. GSK3B is known to phosphorylate the microtubule protein tau (MAPT). Dysfunction of this cascade, carved out by genes implicated in Alzheimer's disease, may play a major role in its pathology. Many other genes associated with Alzheimer's disease affect cholesterol or lipoprotein function and/or have also been implicated in atherosclerosis, a feature of Alzheimer's disease, and this duality may well explain the close links between vascular and cerebral pathology in Alzheimer's disease. The definition of many of these genes as risk factors is highly contested. However, when polymorphic susceptibility genes belong to the same signaling pathway, the risk associated with multigenic disease is better related to the integrated effects of multiple polymorphisms of genes within the same pathway than to variants in any single gene [Wu, X., Gu, J., Grossman, H.B., Amos, C.I., Etzel, C., Huang, M., Zhang, Q., Millikan, R.E., Lerner, S., Dinney, C.P., Spitz, M.R., 2006. Bladder cancer predisposition: a multigenic approach to DNA-repair and cell-cycle-control genes. Am. J. Hum. Genet. 78, 464-479.]. Thus, the fact that Alzheimer's disease susceptibility genes converge on a clearly defined signaling network has important implications for genetic association studies.

摘要

与阿尔茨海默病相关的多态性基因(见 )描绘了一条与脑和外周胆固醇及脂蛋白稳态相关的明确定义的途径。它们包括神经胶质/神经元胆固醇穿梭系统的所有关键成分,包括胆固醇结合脂蛋白APOA1、APOA4、APOC1、APOC2、APOC3、APOD、APOE和LPA,胆固醇转运蛋白ABCA1、ABCA2,脂蛋白受体LDLR、LRP1、LRP8和VLDLR,以及胆固醇代谢酶CYP46A1和CH25H,其氧化甾醇产物激活肝脏X受体NR1H2并被SOAT1代谢为酯。LIPA代谢胆固醇酯,胆固醇酯由胆固醇酯转运蛋白CETP转运。转录因子SREBF1控制大多数胆固醇合成酶的表达。APP参与此穿梭系统,因为它将胆固醇代谢为7-羟基胆固醇,这是SOAT1和HSD11B1的底物,与APOE结合,并通过细胞质结构域的APPB1、APBB2和APBB3以及细胞外结构域的LRPAP1与LRP1相连。APP裂解产物也能够阻止胆固醇与APOE结合。BACE裂解APP和LRP1。γ-分泌酶(PSEN1、PSEN2、NCSTN)裂解LRP1和LRP8以及APP,它们的降解产物控制转录因子TFCP2,TFCP2调节胸苷酸合成酶(TS)和GSK3B的表达。已知GSK3B使微管蛋白tau(MAPT)磷酸化。由与阿尔茨海默病相关的基因所构建的这个级联反应功能障碍,可能在其病理过程中起主要作用。许多其他与阿尔茨海默病相关的基因会影响胆固醇或脂蛋白功能,和/或也与动脉粥样硬化有关,动脉粥样硬化是阿尔茨海默病的一个特征,这种双重性很可能解释了阿尔茨海默病中血管和脑病理之间的密切联系。将许多这些基因定义为风险因素存在很大争议。然而,当多态性易感基因属于同一信号通路时,与多基因疾病相关的风险与同一通路内多个基因多态性的综合效应的相关性,要比与任何单个基因变异的相关性更好[Wu, X., Gu, J., Grossman, H.B., Amos, C.I., Etzel, C., Huang, M., Zhang, Q., Millikan, R.E., Lerner, S., Dinney, C.P., Spitz, M.R., 2006. 膀胱癌易感性:一种针对DNA修复和细胞周期控制基因的多基因方法。《美国人类遗传学杂志》78, 464 - 479]。因此,阿尔茨海默病易感基因汇聚在一个明确定义的信号网络这一事实,对基因关联研究具有重要意义。

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