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嗜碱芽孢杆菌1011环糊精糖基转移酶中必需碳水化合物/芳香族堆积与Tyr100和Phe259相互作用对底物结合的影响

Effects of essential carbohydrate/aromatic stacking interaction with Tyr100 and Phe259 on substrate binding of cyclodextrin glycosyltransferase from alkalophilic Bacillus sp. 1011.

作者信息

Haga Keiko, Kanai Ryuta, Sakamoto Osamu, Aoyagi Masanobu, Harata Kazuaki, Yamane Kunio

机构信息

Institute of Biological Sciences, University of Tsukuba, Tsukuba, Ibaraki 305-8572.

出版信息

J Biochem. 2003 Dec;134(6):881-91. doi: 10.1093/jb/mvg215.

Abstract

The stacking interaction between a tyrosine residue and the sugar ring at the catalytic subsite -1 is strictly conserved in the glycoside hydrolase family 13 enzymes. Replacing Tyr100 with leucine in cyclodextrin glycosyltransferase (CGTase) from Bacillus sp. 1011 to prevent stacking significantly decreased all CGTase activities. The adjacent stacking interaction with both Phe183 and Phe259 onto the sugar ring at subsite +2 is essentially conserved among CGTases. F183L/F259L mutant CGTase affects donor substrate binding and/or acceptor binding during transglycosylation [Nakamura et al. (1994) Biochemistry 33, 9929-9936]. To elucidate the precise role of carbohydrate/aromatic stacking interaction at subsites -1 and +2 on the substrate binding of CGTases, we analyzed the X-ray structures of wild-type (2.0 A resolution), and Y100L (2.2 A resolution) and F183L/F259L mutant (1.9 A resolution) CGTases complexed with the inhibitor, acarbose. The refined structures revealed that acarbose molecules bound to the Y100L mutant moved from the active center toward the side chain of Tyr195, and the hydrogen bonding and hydrophobic interaction between acarbose and subsites significantly diminished. The position of pseudo-tetrasaccharide binding in the F183L/F259L mutant was closer to the non-reducing end, and the torsion angles of glycosidic linkages at subsites -1 to +1 on molecule 1 and subsites -2 to -1 on molecule 2 significantly changed compared with that of each molecule of wild-type-acarbose complex to adopt the structural change of subsite +2. These structural and biochemical data suggest that substrate binding in the active site of CGTase is critically affected by the carbohydrate/aromatic stacking interaction with Tyr100 at the catalytic subsite -1 and that this effect is likely a result of cooperation between Tyr100 and Phe259 through stacking interaction with substrate at subsite +2.

摘要

酪氨酸残基与催化亚位点-1处的糖环之间的堆积相互作用在糖苷水解酶家族13的酶中严格保守。用亮氨酸取代芽孢杆菌属1011的环糊精糖基转移酶(CGTase)中的Tyr100以防止堆积,显著降低了所有CGTase活性。在CGTase中,Phe183和Phe259与亚位点+2处糖环的相邻堆积相互作用基本保守。F183L/F259L突变型CGTase在转糖基化过程中影响供体底物结合和/或受体结合[中村等人(1994年)《生物化学》33卷,9929 - 9936页]。为了阐明亚位点-1和+2处碳水化合物/芳香族堆积相互作用对CGTase底物结合的确切作用,我们分析了与抑制剂阿卡波糖复合的野生型(分辨率为2.0 Å)、Y100L(分辨率为2.2 Å)和F183L/F259L突变型(分辨率为1.9 Å)CGTase的X射线结构。优化后的结构显示,与Y100L突变体结合的阿卡波糖分子从活性中心向Tyr195的侧链移动,阿卡波糖与亚位点之间的氢键和疏水相互作用显著减弱。F183L/F259L突变体中假四糖结合的位置更靠近非还原端,与野生型 - 阿卡波糖复合物的每个分子相比,分子1上亚位点-1至+1以及分子2上亚位点-2至-1处糖苷键的扭转角发生了显著变化,以适应亚位点+2的结构变化。这些结构和生化数据表明,CGTase活性位点中的底物结合受到催化亚位点-1处与Tyr100的碳水化合物/芳香族堆积相互作用的关键影响,并且这种影响可能是Tyr100和Phe259通过与亚位点+2处的底物堆积相互作用协同作用的结果。

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