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Three-dimensional structures of Drosophila melanogaster acetylcholinesterase and of its complexes with two potent inhibitors.

机译:果蝇乙酰胆碱酯酶的三维结构及其与两种有效抑制剂的复合物。

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摘要

We have crystallized Drosophila melanogaster acetylcholinesterase and solved the structure of the native enzyme and of its complexes with two potent reversible inhibitors, 1,2,3,4-tetrahydro-N-(phenylmethyl)-9-acridinamine and 1,2,3,4-tetrahydro-N-(3-iodophenyl-methyl)-9-acridinamine--all three at 2.7 A resolution. The refined structure of D. melanogaster acetylcholinesterase is similar to that of vertebrate acetylcholinesterases, for example, human, mouse, and fish, in its overall fold, charge distribution, and deep active-site gorge, but some of the surface loops deviate by up to 8 A from their position in the vertebrate structures, and the C-terminal helix is shifted substantially. The active-site gorge of the insect enzyme is significantly narrower than that of Torpedo californica AChE, and its trajectory is shifted several angstroms. The volume of the lower part of the gorge of the insect enzyme is approximately 50% of that of the vertebrate enzyme. Upon binding of either of the two inhibitors, nine aromatic side chains within the active-site gorge change their conformation so as to interact with the inhibitors. Some differences in activity and specificity between the insect and vertebrate enzymes can be explained by comparison of their three-dimensional structures.
机译:我们已经结晶了果蝇果蝇乙酰胆碱酯酶,并用两种有效的可逆抑制剂1,2,3,4-四氢-N-(苯基甲基)-9--啶胺和1,2,3解决了天然酶及其配合物的结构, 4-四氢-N-(3-碘苯基-甲基)-9-ac啶胺-三种均在2.7 A的分辨率下。 D. melanogaster乙酰胆碱酯酶的精制结构与脊椎动物乙酰胆碱酯酶的精制结构相似,例如在人,小鼠和鱼类中的整体折叠,电荷分布和较深的活性位点峡谷,但一些表面环向上偏移从它们在脊椎动物结构中的位置到8A,并且C-末端螺旋基本上偏移。昆虫酶的活性位点比加利福尼亚鱼雷AChE的活性位点要窄得多,并且其运动轨迹偏移了几埃。昆虫酶的峡谷下部的体积约为脊椎动物酶的峡谷的50%。一旦结合两种抑制剂中的任一种,在活性位点峡谷内的九个芳族侧链改变其构象,以便与抑制剂相互作用。昆虫和脊椎动物酶的活性和特异性之间的某些差异可以通过比较它们的三维结构来解释。

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