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活性中心峡谷附近乙酰胆碱酯酶的纳秒动力学

Nanosecond dynamics of acetylcholinesterase near the active center gorge.

作者信息

Boyd Aileen E, Dunlop Cristina S, Wong Lilly, Radic Zoran, Taylor Palmer, Johnson David A

机构信息

Department of Pharmacology, University of California, La Jolla, California 92093-0636, USA.

出版信息

J Biol Chem. 2004 Jun 18;279(25):26612-8. doi: 10.1074/jbc.M401482200. Epub 2004 Apr 12.

Abstract

To delineate the role of peptide backbone flexibility and rapid molecular motion in acetylcholinesterase catalysis and inhibitor association, we investigated the decay of fluorescence anisotropy at three sites of fluorescein conjugation to cysteine-substitution mutants of the enzyme. One cysteine was placed in a loop at the peripheral site near the rim of the active center gorge (H287C); a second was in a helical region outside of the active center gorge (T249C); a third was at the tip of a small, flexible omega loop well separated from the gorge (A262C). Mutation and fluorophore conjugation did not appreciably alter catalytic or inhibitor binding parameters of the enzyme. The results show that each site examined was associated with a high degree of segmental motion; however, the A262C and H287C sites were significantly more flexible than the T249C site. Association of the active center inhibitor, tacrine, and the peripheral site peptide inhibitor, fasciculin, had no effect on the anisotropy decay of fluorophores at positions 249 and 262. Fasciculin, but not tacrine, on the other hand, dramatically altered the decay profile of the fluorophore at the 287 position, in a manner consistent with fasciculin reducing the segmental motion of the peptide chain in this local region. The results suggest that the motions of residues near the active center gorge and across from the Cys(69)-Cys(96) omega loop are uncoupled and that ligand binding at the active center or the peripheral site does not influence acetylcholinesterase conformational dynamics globally, but induces primarily domain localized decreases in flexibility proximal to the bound ligand.

摘要

为了阐明肽主链灵活性和快速分子运动在乙酰胆碱酯酶催化及抑制剂结合中的作用,我们研究了荧光素与该酶半胱氨酸取代突变体结合的三个位点处荧光各向异性的衰减情况。一个半胱氨酸位于活性中心峡谷边缘附近外周位点的一个环中(H287C);第二个位于活性中心峡谷外的螺旋区域(T249C);第三个位于与峡谷相距较远的一个小的柔性ω环的顶端(A262C)。突变和荧光团结合并未明显改变该酶的催化或抑制剂结合参数。结果表明,所检测的每个位点都与高度的片段运动相关;然而,A262C和H287C位点比T249C位点明显更具灵活性。活性中心抑制剂他克林和外周位点肽抑制剂束丝菌素的结合对249和262位荧光团的各向异性衰减没有影响。另一方面,束丝菌素而非他克林显著改变了287位荧光团的衰减曲线,其方式与束丝菌素降低该局部区域肽链的片段运动一致。结果表明,活性中心峡谷附近和Cys(69)-Cys(96)ω环对面的残基运动是解偶联的,并且活性中心或外周位点的配体结合不会全局影响乙酰胆碱酯酶的构象动力学,而是主要诱导结合配体近端区域的灵活性局部降低。

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