Chauhan N B, Siegel G J
Neurology Service, Hines VAH, Hines, IL, USA.
Neurochem Int. 2003 Aug;43(3):225-33. doi: 10.1016/s0197-0186(03)00006-8.
Amyloidogenic processing of beta-amyloid precursor protein (APP) leading to Abeta accumulation is critical in Alzheimer's disease (AD). Abeta leads to pre-synaptic molecular changes in hippocampus of the AD mutant transgenic mouse model Tg2576 prior to plaque formation. Since NGF is critical to neuronal growth and is involved in regulating APP processing, we tested the hypothesis that NGF expression is altered early in this model of AD. We measured APP products and mRNAs for NGF and its low-affinity receptor p75 in 10-month-old Tg2576 whole brain after dietary propentofylline (PPF) or acetyl-L-carnitine (ALCAR) for 4 weeks to induce NGF- or p75-expression, respectively. The results (all P<0.0002) show that compared to wild-type or littermate controls, the transgene leads to decreases of 44% in NGF-mRNA, 25% in p75-mRNA, 64% in sAPPalpha, and 21-fold increases in Abeta40/42. PPF increased NGF-mRNA by 20% and sAPPalpha by 42% while decreasing Abeta40/42 by 45/48%, with no effect on p75-mRNA in Tg animals. ALCAR increased p75-mRNA by 16% and decreased Abeta40/42 by 46/26% with no significant effect on sAPPalpha or NGF-mRNA in Tg animals. The results indicate that NGF expression is reduced early in the Tg brain, that this reduction potentiates further Abeta formation in a vicious cycle, and that inducing NGF shifts the balance toward secretory processing of APP. To a lesser extent, p75 decreases Abeta peptides, possibly via peptidases since sAPPalpha level is not changed.
导致β淀粉样蛋白(Aβ)积累的β淀粉样前体蛋白(APP)的淀粉样生成过程在阿尔茨海默病(AD)中至关重要。在斑块形成之前,Aβ会导致AD突变转基因小鼠模型Tg2576海马中的突触前分子变化。由于神经生长因子(NGF)对神经元生长至关重要且参与调节APP加工,我们检验了在该AD模型中NGF表达早期发生改变的假说。我们在给予饮食中的丙戊茶碱(PPF)或乙酰左旋肉碱(ALCAR)4周以分别诱导NGF或p75表达后,测量了10月龄Tg2576全脑中的APP产物以及NGF及其低亲和力受体p75的mRNA。结果(所有P<0.0002)显示,与野生型或同窝对照相比,转基因导致NGF - mRNA降低44%,p75 - mRNA降低25%,可溶性APPα(sAPPα)降低64%,以及Aβ40/42增加21倍。PPF使Tg动物的NGF - mRNA增加20%,sAPPα增加42%,同时使Aβ40/42降低45/48%,对p75 - mRNA无影响。ALCAR使p75 - mRNA增加16%,使Aβ40/42降低46/26%,对Tg动物的sAPPα或NGF - mRNA无显著影响。结果表明,在Tg脑中NGF表达早期降低,这种降低在恶性循环中进一步增强Aβ形成,并且诱导NGF会使平衡向APP的分泌加工方向转变。在较小程度上,p75可能通过肽酶减少Aβ肽,因为sAPPα水平未改变。