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S1 口袋型谷氨酸羧肽酶 II:β-淀粉样肽降解的新结合位点。

S1 pocket of glutamate carboxypeptidase II: a new binding site for amyloid-β degradation.

机构信息

Division of Brain Diseases, Center for Biomedical Science, Korea National Institute of Health, Osong, Chungcheongbuk-do 363-951, South Korea.

出版信息

Biochem Biophys Res Commun. 2013 Sep 6;438(4):765-71. doi: 10.1016/j.bbrc.2013.07.059. Epub 2013 Jul 23.

Abstract

We recently reported that glutamate carboxypeptidase II (GCPII) has a new physiological function degrading amyloid-β (Aβ), distinct from its own hydrolysis activity in N-acetyl-L-aspartyl-L-glutamate (NAAG); however, its underlying mechanism remains undiscovered. Using site-directed mutagenesis and S1 pocket-specific chemical inhibitor (compound 2), which was developed for the present study based on in sillico computational modeling, we discovered that the Aβ degradation occurs through S1 pocket but not through S1' pocket responsible for NAAG hydrolysis. Treatment with compound 2 prevented GCPII from Aβ degradation without any impairment in NAAG hydrolysis. Likewise, 2-PMPA (specific GCPII inhibitor developed targeting S1' pocket) completely blocked the NAAG hydrolysis without any effect on Aβ degradation. Pre-incubation with NAAG and Aβ did not affect Aβ degradation and NAAG hydrolysis, respectively. These data suggest that GCPII has two distinctive binding sites for two different substrates and that Aβ degradation occurs through binding to S1 pocket of GCPII.

摘要

我们最近报道称,谷氨酸羧肽酶 II(GCPII)具有降解淀粉样β(Aβ)的新生理功能,与它自身在 N-乙酰-L-天冬氨酰-L-谷氨酸(NAAG)中的水解活性不同;然而,其潜在机制仍未被发现。使用定点突变和 S1 口袋特异性化学抑制剂(本研究中根据计算机模拟设计的化合物 2),我们发现 Aβ 的降解是通过 S1 口袋而不是负责 NAAG 水解的 S1' 口袋发生的。用化合物 2 处理可阻止 GCPII 降解 Aβ,而不会对 NAAG 水解造成任何损害。同样,2-PMPA(针对 S1' 口袋开发的特异性 GCPII 抑制剂)完全阻断了 NAAG 水解,而对 Aβ 降解没有任何影响。NAAG 和 Aβ 的预孵育分别不会影响 Aβ 降解和 NAAG 水解。这些数据表明,GCPII 具有两个独特的结合位点,分别用于两种不同的底物,Aβ 的降解是通过与 GCPII 的 S1 口袋结合发生的。

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