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与加州电鳐乙酰胆碱酯酶外周位点结合的硫黄素T的晶体结构揭示了硫黄素T如何作为配体与酰化位点结合的灵敏荧光报告分子。

Crystal structure of thioflavin T bound to the peripheral site of Torpedo californica acetylcholinesterase reveals how thioflavin T acts as a sensitive fluorescent reporter of ligand binding to the acylation site.

作者信息

Harel Michal, Sonoda Leilani K, Silman Israel, Sussman Joel L, Rosenberry Terrone L

机构信息

Department of Structural Biology, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

J Am Chem Soc. 2008 Jun 25;130(25):7856-61. doi: 10.1021/ja7109822. Epub 2008 May 31.

Abstract

Acetylcholinesterase plays a key role in cholinergic synaptic transmission by hydrolyzing the neurotransmitter acetylcholine with one of the highest known catalytic rate constants. Hydrolysis occurs in a narrow and deep gorge that contains two sites of ligand binding: A peripheral site, or P-site, near the gorge entrance that contributes to catalytic efficiency both by transiently trapping substrate molecules as they enter the gorge and by allosterically accelerating the transfer of the substrate acyl group to a serine hydroxyl in an acylation site or A-site at the base of the gorge. Thioflavin T is a useful reporter of ligand interactions with the A-site. It binds specifically to the P-site with fluorescence that is enhanced approximately 1000-fold over that of unbound thioflavin T, and the enhanced fluorescence is quenched 1.5- to 4-fold when another ligand binds to the A-site in a ternary complex. To clarify the structural basis of this advantageous signal change, we here report the X-ray structure of the complex of thioflavin T with Torpedo californica acetylcholinesterase. The two aromatic rings in thioflavin T are coplanar and are packed snugly parallel to the aromatic side chains of Trp279, Tyr334, and Phe330. Overlays of this structure with the crystal structures of Torpedo californica acetylcholinesterase complexes with either edrophonium or m-( N, N, N-trimethylammonio)-2,2,2-trifluoroacetophenone, two small aromatic ligands that bind specifically to the A-site, indicate that the phenyl side chain of Phe330 must rotate to sterically accommodate both thioflavin T and the A-site ligand in the ternary complex. This rotation may allow some relaxation of the strict coplanarity of the aromatic rings in the bound thioflavin T and result in partial quenching of its fluorescence.

摘要

乙酰胆碱酯酶通过水解神经递质乙酰胆碱,以已知最高的催化速率常数之一,在胆碱能突触传递中发挥关键作用。水解发生在一个狭窄而深邃的峡谷中,该峡谷包含两个配体结合位点:一个外周位点,即P位点,位于峡谷入口附近,它通过在底物分子进入峡谷时短暂捕获底物分子,并通过变构加速底物酰基转移至峡谷底部酰化位点或A位点的丝氨酸羟基,从而提高催化效率。硫黄素T是与A位点配体相互作用的有用报告分子。它特异性结合到P位点,荧光增强约1000倍,超过未结合的硫黄素T,当另一种配体在三元复合物中结合到A位点时,增强的荧光会被淬灭1.5至4倍。为阐明这种有利信号变化的结构基础,我们在此报告硫黄素T与加州电鳐乙酰胆碱酯酶复合物的X射线结构。硫黄素T中的两个芳香环共面,并紧密平行于Trp279、Tyr334和Phe330的芳香侧链堆积。该结构与加州电鳐乙酰胆碱酯酶与依酚氯铵或间-(N,N,N-三甲基铵)-2,2,2-三氟苯乙酮(两种特异性结合到A位点的小芳香配体)的晶体结构叠加显示,在三元复合物中,Phe330的苯侧链必须旋转以空间容纳硫黄素T和A位点配体。这种旋转可能会使结合的硫黄素T中芳香环的严格共面性有所松弛,并导致其荧光部分淬灭。

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