Disturbed Matrix Metalloproteinase Pathway in Both Age-Related Macular Degeneration and Alzheimer's Disease.

Journal of Neurodegenerative Diseases Pub Date : 2017-01-01 Epub Date: 2017-01-18 DOI:10.1155/2017/4810232
Ali Aijaz Hussain, Yunhee Lee, Jin-Jun Zhang, Paul T Francis, John Marshall
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Abstract

Purpose. Abnormal protein deposits including β-amyloid, found in ageing Bruch's membrane and brain, are susceptible to degradation by matrix metalloproteinases (MMPs). In ageing Bruch's membrane, these MMPs become less effective due to polymerisation and aggregation reactions (constituting the MMP Pathway), a situation much advanced in age-related macular degeneration (AMD). The likely presence of this MMP Pathway in brain with the potential to compromise the degradation of β-amyloid associated with Alzheimer's disease (AD) has been investigated. Methods. Presence of high molecular weight MMP species (HMW1 and HMW2) together with the much larger aggregate termed LMMC was determined by standard zymographic techniques. Centrigugation and gel filtration techniques were used to separate and quantify the distribution between bound and free MMP species. Results. The MMP Pathway, initially identified in Bruch's membrane, was also present in brain tissue. The various MMP species displayed bound-free equilibrium and in AD samples, the amount of bound HMW1 and pro-MMP9 species was significantly reduced (p < 0.05). The abnormal operation of the MMP Pathway in AD served to reduce the degradation potential of the MMP system. Conclusion. The presence and abnormalities of the MMP Pathway in both brain and ocular tissues may therefore contribute to the anomalous deposits associated with AD and AMD.

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基质金属蛋白酶通路在老年性黄斑变性和阿尔茨海默病中都受到干扰
目的。在老化的布鲁氏膜和大脑中发现的异常蛋白沉积(包括β-淀粉样蛋白)易被基质金属蛋白酶(MMPs)降解。在老化的布鲁氏膜中,这些金属蛋白酶由于聚合和聚集反应(构成金属蛋白酶途径)而变得不那么有效,这种情况在老年性黄斑变性(AMD)中更为严重。我们研究了大脑中可能存在的这种 MMP 途径,它可能会影响与阿尔茨海默病(AD)相关的 β 淀粉样蛋白的降解。方法。通过标准酶谱技术确定了高分子量 MMP 物种(HMW1 和 HMW2)以及被称为 LMMC 的更大聚合体的存在。离心和凝胶过滤技术用于分离和量化结合型和游离型 MMP 的分布。结果。最初在布鲁氏膜中发现的 MMP 通路也存在于脑组织中。各种 MMP 物种呈无结合平衡状态,在 AD 样本中,结合 HMW1 和原 MMP9 物种的数量显著减少(p < 0.05)。AD 中 MMP 通路的异常运行降低了 MMP 系统的降解潜力。结论因此,MMP通路在脑组织和眼组织中的存在和异常可能导致与AD和AMD相关的异常沉积。
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