Apolipoprotein E: from cardiovascular disease to neurodegenerative disorders

被引:356
作者
Mahley, Robert W. [1 ,2 ,3 ]
机构
[1] Gladstone Inst Neurol Dis, 1650 Owens St, San Francisco, CA 94158 USA
[2] Univ Calif San Francisco, Dept Pathol, San Francisco, CA 94143 USA
[3] Univ Calif San Francisco, Dept Med, San Francisco, CA 94143 USA
来源
JOURNAL OF MOLECULAR MEDICINE-JMM | 2016年 / 94卷 / 07期
基金
英国惠康基金;
关键词
Alzheimer's disease; ApoE; Atherosclerosis; Cholesterol; Small-molecule structure correctors; LOW-DENSITY LIPOPROTEINS; CENTRAL-NERVOUS-SYSTEM; LDL RECEPTOR-BINDING; ALZHEIMERS-DISEASE; INTEGRATED APPROACH; FAT TRANSPORT; AMYLOID DEPOSITION; DOMAIN INTERACTION; DEPENDENT IMPAIRMENT; PLASMA-LIPOPROTEINS;
D O I
10.1007/s00109-016-1427-y
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Apolipoprotein (apo) E was initially described as a lipid transport protein and major ligand for low density lipoprotein (LDL) receptors with a role in cholesterol metabolism and cardiovascular disease. It has since emerged as a major risk factor (causative gene) for Alzheimer's disease and other neurodegenerative disorders. Detailed understanding of the structural features of the three isoforms (apoE2, apoE3, and apoE4), which differ by only a single amino acid interchange, has elucidated their unique functions. ApoE2 and apoE4 increase the risk for heart disease: apoE2 increases atherogenic lipoprotein levels (it binds poorly to LDL receptors), and apoE4 increases LDL levels (it binds preferentially to triglyceride-rich, very low density lipoproteins, leading to downregulation of LDL receptors). ApoE4 also increases the risk for neurodegenerative diseases, decreases their age of onset, or alters their progression. ApoE4 likely causes neurodegeneration secondary to its abnormal structure, caused by an interaction between its carboxyl- and amino-terminal domains, called domain interaction. When neurons are stressed or injured, they synthesize apoE to redistribute cholesterol for neuronal repair or remodeling. However, because of its altered structure, neuronal apoE4 undergoes neuron-specific proteolysis, generating neurotoxic fragments (12-29 kDa) that escape the secretory pathway and cause mitochondrial dysfunction and cytoskeletal alterations, including tau phosphorylation. ApoE4-associated pathology can be prevented by small-molecule structure correctors that block domain interaction by converting apoE4 to a molecule that resembles apoE3 both structurally and functionally. Structure correctors are a potential therapeutic approach to reduce apoE4 pathology in both cardiovascular and neurological disorders.
引用
收藏
页码:739 / 746
页数:8
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