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Tsubuki, S.

Publications and source records attributed to Tsubuki, S..

2 recordsLinked to original sources

α-Endosulfine regulates amyloid β42 via the modulation of neprilysin activity

The neuropeptide somatostatin (SST) regulates amyloid {beta} peptide (A{beta}) catabolism by enhancing neprilysin (NEP)-catalyzed proteolytic degradation. However, the mechanism by which SST regulates NEP activity remains unclear. Here we report the identification by differential proteomics of -endosulfine (ENSA), an endogenous ligand of the ATP-sensitive potassium (KATP) channel, as a negative regulator of NEP activity downstream of SST signaling. Genetic deficiency of ENSA resulted in enhanced NEP activity and decreased A{beta} deposition in the brains of wild-type and Alzheimers disease (AD) model mice. Pharmacological intervention to increase the probability of KATP channel opening reduced A{beta} deposition in AD model mice. Our findings provide new insights into possible mechanisms to prevent AD.

neuroscience

Somatostatin receptor subtypes 1 and 4 redundantly regulate neprilysin, the major amyloid beta-degrading enzyme, in brain

Alzheimers disease (AD) brains are characterized by increased levels of the pathogenic amyloid beta (A{beta}) peptide, which accumulates into extracellular plaques. Finding a way to lower A{beta} levels is fundamental for the prevention and treatment of AD. Neprilysin is the major A{beta} degrading enzyme which is regulated by the neuropeptide somatostatin. Here we used a combination of in vitro and in vivo approaches to identify the subtype specificity of the five somatostatin receptors (SSTs) expressed in the brain, involved in the regulation of neprilysin. Using a battery of Sst double knockout (dKO) mice we show that neprilysin is regulated by SST1 and SST4 in a redundant manner. Sst1 and Sst4 dKO mice exhibit a specific decrease of presynaptic neprilysin in the Lacunosum molecular layer. Moreover, a genetic deficiency of Sst1 and Sst4 in amyloid beta precursor protein (App) knock-in mice, an AD mouse model, aggravates the A{beta} pathology in the hippocampus. As a first proof of concept towards an A{beta}-lowering strategy involving neprilysin, we demonstrate that treatment with an agonist selective for SST1 and SST4 ameliorates the A{beta} pathology and improves cognition in the App knock-in AD mouse model.

neuroscience