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真核蛋白酶体胰蛋白酶样活性的双功能抑制剂。

Bifunctional inhibitors of the trypsin-like activity of eukaryotic proteasomes.

作者信息

Loidl G, Groll M, Musiol H J, Ditzel L, Huber R, Moroder L

机构信息

Max-Planck-Institut für Biochemie, 82152 Martinsried, Germany.

出版信息

Chem Biol. 1999 Apr;6(4):197-204. doi: 10.1016/S1074-5521(99)80036-2.

Abstract

BACKGROUND

The 20S proteasome is a multicatalytic protease complex that exhibits trypsin-like, chymotrypsin-like and post-glutamyl-peptide hydrolytic activities associated with the active sites of the beta2, beta5 and beta1 subunits, respectively. Modulation of these activities using inhibitors is essential for a better understanding of the proteasome's mechanism of action. Although there are highly selective inhibitors of the proteasome's chymotryptic activity, inhibitors of similar specificity have not yet been identified for the other activities.

RESULTS

The X-ray structure of the yeast proteasome reveals that the sidechain of Cys118 of the beta3 subunit protrudes into the S3 subsite of the beta2 active site. The location of this residue was exploited for the rational design of bidentated inhibitors containing a maleinimide moiety at the P3 position for covalent linkage to the thiol group and a carboxy-terminal aldehyde group for hemiacetal formation with the Thr1 hydroxyl group of the active site. Structure-based modelling was used to determine the optimal spacing of the maleinimide group from the P2-P1 dipeptide aldehydes and the specificity of the S1 subsite was exploited to limit the inhibitory activity to the beta2 active site. X-ray crystallographic analysis of a yeast proteasome-inhibitor adduct confirmed the expected irreversible binding of the inhibitor to the P3 subsite.

CONCLUSIONS

Maleoyl-beta-alanyl-valyl-arginal is a new type of inhibitor that is highly selective for the trypsin-like activity of eukaryotic proteasomes. Despite the reactivity of the maleinimide group towards thiols, and therefore the limited use of this inhibitor for in vitro studies, it might represent an interesting new biochemical tool.

摘要

背景

20S蛋白酶体是一种多催化蛋白酶复合物,分别具有与β2、β5和β1亚基活性位点相关的胰蛋白酶样、胰凝乳蛋白酶样和谷氨酰胺后肽水解活性。使用抑制剂调节这些活性对于更好地理解蛋白酶体的作用机制至关重要。尽管存在蛋白酶体胰凝乳蛋白酶活性的高选择性抑制剂,但尚未鉴定出针对其他活性的类似特异性抑制剂。

结果

酵母蛋白酶体的X射线结构显示,β3亚基的Cys118侧链伸入β2活性位点的S3亚位点。利用该残基的位置进行双齿抑制剂的合理设计,该抑制剂在P3位置含有马来酰亚胺部分以与硫醇基团共价连接,以及羧基末端醛基以与活性位点的Thr1羟基形成半缩醛。基于结构的建模用于确定马来酰亚胺基团与P2-P1二肽醛的最佳间距,并利用S1亚位点的特异性将抑制活性限制在β2活性位点。酵母蛋白酶体-抑制剂加合物的X射线晶体学分析证实了抑制剂与P3亚位点的预期不可逆结合。

结论

马来酰-β-丙氨酰-缬氨酰-精氨醛是一种新型抑制剂,对真核蛋白酶体的胰蛋白酶样活性具有高度选择性。尽管马来酰亚胺基团对硫醇具有反应性,因此该抑制剂在体外研究中的应用有限,但它可能代表一种有趣的新型生化工具。

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