Graduate Program in Neuroscience, Institute for Brain Science and Technology, Inje University, Busan, 614-735, Korea.
Mol Cells. 2010 Jan;29(1):51-6. doi: 10.1007/s10059-010-0016-0. Epub 2009 Dec 18.
Although alterations in the functions of neurotransmitter systems have been implicated in the pathology of Alzheimer's disease (AD), the mechanisms that give rise to these alterations are not well understood. The amount of p25, an aberrant cleavage product of p35 that activates cyclin-dependent kinase 5 (Cdk5), is elevated in AD brains. The role of Cdk5 in neurotransmitter release has been well established. In this study, we examined whether p25 was linked to altered neurotransmitter release in AD. Transient or stable expression of p25 significantly increased basal secretion of human growth hormone (hGH) or neurotransmitter in PC12 cells. Expression of a p25 phosphorylation-deficient mutant, T138A, inhibited basal hGH secretion relative to the p25 wild type, suggesting the involvement of Thr138 phosphorylation in secretion. The expression and activity of beta-site amyloid precursor protein cleaving enzyme 1 (BACE1), a key protease in the generation of beta-amyloid, are increased in AD brains. Our previous studies indicated that overexpression of BACE1 enhanced basal secretion of hGH in PC12 cells. Transient coexpression of p25 and BACE1 further stimulated spontaneous basal secretion. These results indicate a novel role for p25 in the secretory pathway and suggest that elevated levels of p25 and BACE1 in AD brains may contribute to altered neurotransmitter pathology of AD through enhancing spontaneous basal secretion.
虽然神经递质系统功能的改变与阿尔茨海默病(AD)的病理学有关,但导致这些改变的机制尚不清楚。p35 的异常切割产物 p25 会激活周期蛋白依赖性激酶 5(Cdk5),其在 AD 大脑中的含量升高。Cdk5 在神经递质释放中的作用已得到充分证实。在这项研究中,我们研究了 p25 是否与 AD 中神经递质释放的改变有关。p25 的瞬时或稳定表达显著增加了 PC12 细胞中人生长激素(hGH)或神经递质的基础分泌。与 p25 野生型相比,p25 磷酸化缺陷突变体 T138A 的表达抑制了基础 hGH 分泌,这表明 Thr138 磷酸化参与了分泌。β-淀粉样前体蛋白切割酶 1(BACE1)的表达和活性在 AD 大脑中增加,BACE1 是β-淀粉样生成的关键蛋白酶。我们之前的研究表明,BACE1 的过表达增强了 PC12 细胞中 hGH 的基础分泌。p25 和 BACE1 的瞬时共表达进一步刺激了自发的基础分泌。这些结果表明 p25 在分泌途径中具有新的作用,并表明 AD 大脑中 p25 和 BACE1 水平的升高可能通过增强自发基础分泌导致 AD 中神经递质病理改变。