Rydberg Edwin H, Brumshtein Boris, Greenblatt Harry M, Wong Dawn M, Shaya David, Williams Larry D, Carlier Paul R, Pang Yuan-Ping, Silman Israel, Sussman Joel L
Department of Structural Biology, Weizmann Institute of Science, Rehovot 76100, Israel.
J Med Chem. 2006 Sep 7;49(18):5491-500. doi: 10.1021/jm060164b.
The X-ray crystal structures were solved for complexes with Torpedo californica acetylcholinesterase of two bivalent tacrine derivative compounds in which the two tacrine rings were separated by 5- and 7-carbon spacers. The derivative with the 7-carbon spacer spans the length of the active-site gorge, making sandwich interactions with aromatic residues both in the catalytic anionic site (Trp84 and Phe330) at the bottom of the gorge and at the peripheral anionic site near its mouth (Tyr70 and Trp279). The derivative with the 5-carbon spacer interacts in a similar manner at the bottom of the gorge, but the shorter tether precludes a sandwich interaction at the peripheral anionic site. Although the upper tacrine group does interact with Trp279, it displaces the phenyl residue of Phe331, thus causing a major rearrangement in the Trp279-Ser291 loop. The ability of this inhibitor to induce large-scale structural changes in the active-site gorge of acetylcholinesterase has significant implications for structure-based drug design because such conformational changes in the target enzyme are difficult to predict and to model.
解析了两种二价他克林衍生物化合物与电鳐乙酰胆碱酯酶复合物的X射线晶体结构,其中两个他克林环由5碳和7碳间隔基隔开。具有7碳间隔基的衍生物跨越活性位点峡谷的长度,与峡谷底部催化阴离子位点(Trp84和Phe330)以及靠近其开口处的外周阴离子位点(Tyr70和Trp279)的芳香族残基形成夹心相互作用。具有5碳间隔基的衍生物在峡谷底部以类似方式相互作用,但较短的连接基团排除了在外周阴离子位点的夹心相互作用。尽管上部他克林基团确实与Trp279相互作用,但它取代了Phe331的苯基残基,从而导致Trp279-Ser291环发生重大重排。这种抑制剂在乙酰胆碱酯酶活性位点峡谷中诱导大规模结构变化的能力对基于结构的药物设计具有重要意义,因为靶酶中的这种构象变化难以预测和建模。