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Acylguanidine inhibitors of beta-secretase: optimization of the pyrrole ring substituents extending into the S1 and S3 substrate binding pockets
Authors:Cole Derek C  Stock Joseph R  Chopra Rajiv  Cowling Rebecca  Ellingboe John W  Fan Kristi Y  Harrison Boyd L  Hu Yun  Jacobsen Steve  Jennings Lee D  Jin Guixian  Lohse Peter A  Malamas Michael S  Manas Eric S  Moore William J  O'Donnell Mary-Margaret  Olland Andrea M  Robichaud Albert J  Svenson Kristine  Wu JunJun  Wagner Eric  Bard Jonathan
Institution:Chemical & Screening Sciences, Wyeth Research, 401 N. Middletown Road, Pearl River, NY 10965, USA. coledc@wyeth.com
Abstract:Proteolytic cleavage of amyloid precursor protein by beta-secretase (BACE-1) and gamma-secretase leads to formation of beta-amyloid (A beta) a key component of amyloid plaques, which are considered the hallmark of Alzheimer's disease. Small molecule inhibitors of BACE-1 may reduce levels of A beta and thus have therapeutic potential for treating Alzheimer's disease. We recently reported the identification of a novel small molecule BACE-1 inhibitor N-2-(2,5-diphenyl-pyrrol-1-yl)-acetyl]guanidine (3.a.1). We report here the initial hit-to-lead optimization of this hit and the SAR around the aryl groups occupying the S(1) and S(2') pockets leading to submicromolar BACE-1 inhibitors.
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