4.7 Article

Endothelial Nitric Oxide Modulates Expression and Processing of Amyloid Precursor Protein

期刊

CIRCULATION RESEARCH
卷 107, 期 12, 页码 1498-+

出版社

LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1161/CIRCRESAHA.110.233080

关键词

endothelium; amyloid precursor protein; Alzheimer's disease; cerebrovascular biology; beta amyloid

资金

  1. Mayo Foundation
  2. Clinical Pharmacology Training [T32 GM08685]
  3. American Heart Association Scientist Development [0835436N]
  4. Mayo Alzheimer's Disease Research Center
  5. NIH [HL-91867, HL-53524]

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Rationale: The exact etiology of sporadic Alzheimer disease (AD) is unclear, but it is interesting that several cardiovascular risk factors are associated with higher incidence of AD. The link between these risk factors and AD has yet to be identified; however, a common feature is endothelial dysfunction, specifically, decreased bioavailability of nitric oxide (NO). Objective: To determine the relationship between endothelial derived NO and the expression and processing of amyloid precursor protein (APP). Methods and Results: We used human brain microvascular endothelial cells to examine the role of NO in modulating APP expression and processing in vitro. Inhibition of endothelial nitric oxide synthase (eNOS) with the specific NOS inhibitor L-NAME (N-G-nitro-L-arginine methyl ester) led to increased APP and BACE1 (beth-site APP-cleaving enzyme1) protein levels, as well as increased secretion of the amyloidogenic peptide amyloid beth (A beth) (control 10.93 +/- 0.70 pg/mL; L-NAME 168.21 +/- 27.38 pg/mL; P<0.001). To examine the role of NO in modulation of APP expression and processing in vivo, we used brain and cerebral microvessels from eNOS-deficient (eNOS(-/-)) mice. Brain tissue from eNOS(-/-) mice had statistically higher APP and BACE1 protein levels, as well as increased BACE1 enzyme activity and A beth(A beta(1-42) wild-type control, 0.737pg/mg; eNOS(-/-), 1.475 pg/mg; P<0.05), compared with wild-type controls (n=6 to 8 animals per background). Brain microvessels from eNOS(-/-) mice also showed statistically higher BACE1 protein levels as compared with wild-type control. Conclusions: Our data suggest that endothelial NO plays an important role in modulating APP expression and processing within the brain and cerebrovasculature. The NO/cGMP pathway may be an important therapeutic target in preventing and treating mild cognitive impairment, as well as AD. (Circ Res. 2010;107:1498-1502.)

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