Department of Neurosurgery, University of Rochester Medical Center, Rochester NY 14642, USA.
Proc Natl Acad Sci U S A. 2013 Sep 3;110(36):14771-6. doi: 10.1073/pnas.1302212110. Epub 2013 Aug 19.
Whereas amyloid-β (Aβ) accumulates in the brain of normal animals dosed with low levels of copper (Cu), the mechanism is not completely known. Cu could contribute to Aβ accumulation by altering its clearance and/or its production. Because Cu homeostasis is altered in transgenic mice overexpressing Aβ precursor protein (APP), the objective of this study was to elucidate the mechanism of Cu-induced Aβ accumulation in brains of normal mice and then to explore Cu's effects in a mouse model of Alzheimer's disease. In aging mice, accumulation of Cu in brain capillaries was associated with its reduction in low-density lipoprotein receptor-related protein 1 (LRP1), an Aβ transporter, and higher brain Aβ levels. These effects were reproduced by chronic dosing with low levels of Cu via drinking water without changes in Aβ synthesis or degradation. In human brain endothelial cells, Cu, at its normal labile levels, caused LRP1-specific down-regulation by inducing its nitrotyrosination and subsequent proteosomal-dependent degradation due in part to Cu/cellular prion protein/LRP1 interaction. In APP(sw/0) mice, Cu not only down-regulated LRP1 in brain capillaries but also increased Aβ production and neuroinflammation because Cu accumulated in brain capillaries and, unlike in control mice, in the parenchyma. Thus, we have demonstrated that Cu's effect on brain Aβ homeostasis depends on whether it is accumulated in the capillaries or in the parenchyma. These findings should provide unique insights into preventative and/or therapeutic approaches to control neurotoxic Aβ levels in the aging brain.
虽然淀粉样蛋白-β(Aβ)在接受低水平铜(Cu)处理的正常动物脑中积累,但具体机制尚不完全清楚。Cu 可能通过改变 Aβ的清除率和/或产生来促进 Aβ的积累。由于过度表达 Aβ前体蛋白(APP)的转基因小鼠的 Cu 稳态发生改变,因此本研究的目的是阐明正常小鼠脑中 Cu 诱导 Aβ积累的机制,然后探讨 Cu 在阿尔茨海默病小鼠模型中的作用。在衰老的小鼠中,脑毛细血管中 Cu 的积累与 Aβ转运蛋白低密度脂蛋白受体相关蛋白 1(LRP1)的减少以及大脑中 Aβ水平的升高有关。这些效应通过通过饮用水进行慢性低水平 Cu 处理而重现,而不会改变 Aβ的合成或降解。在人脑内皮细胞中,在正常的不稳定水平下,Cu 通过诱导其硝基酪氨酸化和随后的蛋白酶体依赖性降解,特异性地下调 LRP1,这部分是由于 Cu/细胞朊蛋白/LRP1 相互作用所致。在 APP(sw/0)小鼠中,Cu 不仅下调了脑毛细血管中的 LRP1,而且增加了 Aβ的产生和神经炎症,因为 Cu 不仅在脑毛细血管中积累,而且与对照小鼠不同,还在脑实质中积累。因此,我们已经证明,Cu 对脑 Aβ稳态的影响取决于它是在毛细血管中积累还是在实质中积累。这些发现应该为控制衰老大脑中神经毒性 Aβ水平的预防和/或治疗方法提供独特的见解。