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Noncanonical transnitrosylation network contributes to synapse loss in Alzheimer's disease

  • Tomohiro Nakamura*
  • , Chang Ki Oh
  • , Lujian Liao
  • , Xu Zhang
  • , Kevin M. Lopez
  • , Daniel Gibbs
  • , Amanda K. Deal
  • , Henry R. Scott
  • , Brian Spencer
  • , Eliezer Masliah
  • , Robert A. Rissman
  • , John R. Yates
  • , Stuart A. Lipton*
  • *此作品的通讯作者
  • Scripps Research Institute
  • Scintillon Institute
  • University of California at San Diego
  • Department of Veterans Affairs

科研成果: 期刊稿件文章同行评审

摘要

Here we describe mechanistically distinct enzymes (a kinase, a guanosine triphosphatase, and a ubiquitin protein hydrolase) that function in disparate biochemical pathways and can also act in concert to mediate a series of redox reactions. Each enzyme manifests a second, noncanonical function-transnitrosylation-that triggers a pathological biochemical cascade in mouse models and in humans with Alzheimer's disease (AD). The resulting series of transnitrosylation reactions contributes to synapse loss, the major pathological correlate to cognitive decline in AD. We conclude that enzymes with distinct primary reaction mechanisms can form a completely separate network for aberrant transnitrosylation. This network operates in the postreproductive period, so natural selection against such abnormal activity may be decreased.

源语言英语
期刊论文编号eaaw0843
期刊Science
371
6526
DOI
出版状态已出版 - 15 1月 2021
已对外发布

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