Howlett D R, Perry A E, Godfrey F, Swatton J E, Jennings K H, Spitzfaden C, Wadsworth H, Wood S J, Markwell R E
Department of Neuroscience, SmithKline Beecham Pharmaceuticals, New Frontiers Science Park (North), Third Avenue, Harlow, Essex CM19 5AW, UK.
Biochem J. 1999 May 15;340 ( Pt 1)(Pt 1):283-9.
A series of benzofuran derivatives have been identified as inhibitors of fibril formation in the beta-amyloid peptide. The activity of these compounds has been assessed by a novel fibril-formation-specific immunoassay and for their effects on the production of a biologically active fibril product. The inhibition afforded by the compounds seems to be associated with their binding to beta-amyloid, as identified by scintillation proximity binding assay. Binding assays and NMR studies also indicate that the inhibition is associated with self-aggregation of the compounds. There is a close correlation between the activity of the benzofurans as inhibitors of fibril formation and their ability to bind to beta-amyloid. Non-benzofuran inhibitors of the fibril formation process do not seem to bind to the same site on the beta-amyloid molecule as the benzofurans. Thus a specific recognition site might exist for benzofurans on beta-amyloid, binding to which seems to interfere with the ability of the peptide to form fibrils.
一系列苯并呋喃衍生物已被鉴定为β-淀粉样肽原纤维形成的抑制剂。这些化合物的活性已通过一种新型的原纤维形成特异性免疫测定法进行评估,并评估了它们对生物活性原纤维产物产生的影响。通过闪烁邻近结合测定法确定,这些化合物提供的抑制作用似乎与其与β-淀粉样蛋白的结合有关。结合测定和核磁共振研究还表明,抑制作用与化合物的自聚集有关。苯并呋喃作为原纤维形成抑制剂的活性与其与β-淀粉样蛋白结合的能力之间存在密切相关性。原纤维形成过程的非苯并呋喃抑制剂似乎不像苯并呋喃那样与β-淀粉样蛋白分子上的同一位点结合。因此,β-淀粉样蛋白上可能存在苯并呋喃的特异性识别位点,与其结合似乎会干扰该肽形成原纤维的能力。