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首页> 外文期刊>ACS medicinal chemistry letters >Multifunctional Cholinesterase and Amyloid Beta Fibrillization Modulators. Synthesis and Biological Investigation
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Multifunctional Cholinesterase and Amyloid Beta Fibrillization Modulators. Synthesis and Biological Investigation

机译:多功能胆碱酯酶和淀粉样β原纤维化调节剂。合成与生物学研究

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摘要

In order to identify novel Alzheimer’s modifying pharmacological tools, we developed bis-tacrines bearing a peptide moiety for specific interference with surface sites of human acetylcholinesterase (hAChE) binding amyloid-beta (Aβ). Accordingly, compounds 2a-c proved to be inhibitors of hAChE catalytic and noncatalytic functions, binding the catalytic and peripheral sites, interfering with Aβ aggregation and with the Aβ self-oligomerization process (2a). Compounds 2a-c in complex with TcAChE span the gorge with the bis-tacrine system, and the peptide moieties bulge outside the gorge in proximity of the peripheral site. These moieties are likely responsible for the observed reduction of hAChE-induced Aβ aggregation since they physically hamper Aβ binding to the enzyme surface. Moreover, 2a was able to significantly interfere with Aβ self-oligomerization, while 2b,c showed improved inhibition of hAChE-induced Aβ aggregation.
机译:为了鉴定新型的阿尔茨海默氏症修饰药理学工具,我们开发了带有肽部分的双ta啶酮,该双ta啶酮可特异性干扰人乙酰胆碱酯酶(hAChE)结合淀粉状蛋白-β(Aβ)的表面。因此,化合物2a-c被证明是hAChE催化和非催化功能的抑制剂,结合了催化位点和外围位点,干扰了Aβ的聚集和Aβ的自我低聚过程(2a)。与TcAChE复合的化合物2a-c跨越具有双他克林系统的峡谷,并且肽部分在周围位点附近在峡谷外突出。这些部分可能是所观察到的hAChE诱导的Aβ聚集减少的原因,因为它们物理上阻碍了Aβ与酶表面的结合。此外,2a能够显着干扰Aβ自寡聚,而2b,c显示出对hAChE诱导的Aβ聚集的抑制作用得到改善。

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