首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Inhibition of glutaminyl cyclase prevents pGlu-Abeta formation after intracortical/hippocampal microinjection in vivo/in situ.
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Inhibition of glutaminyl cyclase prevents pGlu-Abeta formation after intracortical/hippocampal microinjection in vivo/in situ.

机译:在体内/原位皮层内/海马显微注射后,谷氨酰胺环化酶的抑制作用可阻止pGlu-Abeta的形成。

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摘要

Modified amyloid beta (Abeta) peptides represent major constituents of the amyloid deposits in Alzheimer's disease and Down's syndrome. In particular, N-terminal pyroglutamate (pGlu) following truncation renders Abeta more stable, increases hydrophobicity and the aggregation velocity. Recent evidence based on in vitro studies suggests that the cyclization of glutamic acid, leading to pGlu-Abeta, is catalyzed by the enzyme glutaminyl cyclase (QC) following limited proteolysis of Abeta at the N-terminus. Here, we studied the pGlu-formation by rat QC in vitro as well as after microinjection of Abeta(1-40) and Abeta(3-40) into the rat cortex in vivo/in situ with and without pharmacological QC inhibition. Significant pGlu-Abeta formation was observed following injection of Abeta(3-40) after 24 h, indicating a catalyzed process. The generation of pGlu-Abeta from Abeta(3-40) was significantly inhibited by intracortical microinjection of a QC inhibitor. The study provides first evidence that generation of pGlu-Abeta is a QC-catalyzed process in vivo. The approach per se offers a strategy for a rapid evaluation of compounds targeting a reduction of pGlu formation at the N-terminus of amyloid peptides.
机译:修饰的淀粉样蛋白β(Abeta)肽代表了阿尔茨海默氏病和唐氏综合症中淀粉样蛋白沉积的主要成分。特别地,截短后的N末端焦谷氨酸(pGlu)使Abeta更稳定,增加了疏水性和聚集速度。基于体外研究的最新证据表明,谷氨酸的环化(导致pGlu-Abeta)在N端对Abeta进行有限的蛋白水解后,被谷氨酰胺环化酶(QC)催化。在这里,我们研究了大鼠QC在体外以及体内/原位将Abeta(1-40)和Abeta(3-40)微注射到大鼠皮质中的pGlu形成情况,有无药理学QC抑制作用。 24小时后注射Abeta(3-40),观察到明显的pGlu-Abeta形成,表明是催化过程。皮层内注射QC抑制剂可显着抑制从Abeta(3-40)产生pGlu-Abeta。该研究提供了第一个证据,证明pGlu-Abeta的产生是体内QC催化的过程。该方法本身提供了一种策略,用于快速评估针对淀粉状蛋白肽N端pGlu形成减少的化合物。

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