Rose John B, Crews Leslie, Rockenstein Edward, Adame Anthony, Mante Michael, Hersh Louis B, Gage Fred H, Spencer Brian, Potkar Rewati, Marr Robert A, Masliah Eliezer
Department of Neurosciences, University of California, San Diego, La Jolla, California 92093-0624, USA.
J Neurosci. 2009 Jan 28;29(4):1115-25. doi: 10.1523/JNEUROSCI.4220-08.2009.
The endopeptidase neprilysin (NEP) is a major amyloid-beta (Abeta) degrading enzyme and has been implicated in the pathogenesis of Alzheimer's disease. Because NEP cleaves substrates other than Abeta, we investigated the potential role of NEP-mediated processing of neuropeptides in the mechanisms of neuroprotection in vivo. Overexpression of NEP at low levels in transgenic (tg) mice affected primarily the levels of neuropeptide Y (NPY) compared with other neuropeptides. Ex vivo and in vivo studies in tg mice and in mice that received lentiviral vector injections showed that NEP cleaved NPY into C-terminal fragments (CTFs), whereas silencing NEP reduced NPY processing. Immunoblot and mass spectrometry analysis showed that NPY 21-36 and 31-36 were the most abundant fragments generated by NEP activity in vivo. Infusion of these NPY CTFs into the brains of APP (amyloid precursor protein) tg mice ameliorated the neurodegenerative pathology in this model. Moreover, the amidated NPY CTFs protected human neuronal cultures from the neurotoxic effects of Abeta. This study supports the possibility that the NPY CTFs generated during NEP-mediated proteolysis might exert neuroprotective effects in vivo. This function of NEP represents a unique example of a proteolytic enzyme with dual action, namely, degradation of Abeta as well as processing of NPY.
内肽酶中性肽链内切酶(NEP)是一种主要的β淀粉样蛋白(Aβ)降解酶,与阿尔茨海默病的发病机制有关。由于NEP除了切割Aβ外还能切割其他底物,我们研究了NEP介导的神经肽加工在体内神经保护机制中的潜在作用。与其他神经肽相比,转基因(tg)小鼠中低水平过表达NEP主要影响神经肽Y(NPY)的水平。对tg小鼠和接受慢病毒载体注射的小鼠进行的体外和体内研究表明,NEP将NPY切割成C末端片段(CTF),而沉默NEP则减少了NPY的加工。免疫印迹和质谱分析表明,NPY 21-36和31-36是体内NEP活性产生的最丰富的片段。将这些NPY CTF注入APP(淀粉样前体蛋白)tg小鼠的大脑可改善该模型中的神经退行性病理。此外,酰胺化的NPY CTF可保护人类神经元培养物免受Aβ的神经毒性作用。这项研究支持了在NEP介导的蛋白水解过程中产生的NPY CTF可能在体内发挥神经保护作用的可能性。NEP的这一功能代表了一种具有双重作用的蛋白水解酶的独特例子,即降解Aβ以及加工NPY。