蓝斑
去甲肾上腺素
神经毒性
神经病理学
神经科学
神经化学
单胺氧化酶
化学
前脑
生物
内科学
生物化学
中枢神经系统
医学
多巴胺
疾病
毒性
酶
作者
Seong Su Kang,Xia Liu,Eun Hee Ahn,Jie Xiang,Fredric P. Manfredsson,Xifei Yang,Hongbo R. Luo,L. Cameron Liles,David Weinshenker,Keqiang Ye
摘要
Aberrant Tau inclusions in the locus coeruleus (LC) are the earliest detectable Alzheimer's disease-like (AD-like) neuropathology in the human brain. However, why LC neurons are selectively vulnerable to developing early Tau pathology and degenerating later in disease and whether the LC might seed the stereotypical spread of Tau pathology to the rest of the brain remain unclear. Here, we show that 3,4-dihydroxyphenylglycolaldehyde, which is produced exclusively in noradrenergic neurons by monoamine oxidase A metabolism of norepinephrine, activated asparagine endopeptidase that cleaved Tau at residue N368 into aggregation- and propagation-prone forms, thus leading to LC degeneration and the spread of Tau pathology. Activation of asparagine endopeptidase-cleaved Tau aggregation in vitro and in intact cells was triggered by 3,4-dihydroxyphenylglycolaldehyde, resulting in LC neurotoxicity and propagation of pathology to the forebrain. Thus, our findings reveal that norepinephrine metabolism and Tau cleavage represent the specific molecular mechanism underlying the selective vulnerability of LC neurons in AD.
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