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β-樱草糖苷酶与二糖脒抑制剂复合物的晶体结构。

Crystal structures of β-primeverosidase in complex with disaccharide amidine inhibitors.

作者信息

Saino Hiromichi, Shimizu Tetsuya, Hiratake Jun, Nakatsu Toru, Kato Hiroaki, Sakata Kanzo, Mizutani Masaharu

机构信息

From the College of Science and Engineering, Aoyama Gakuin University, Sagamihara-shi, Kanagawa 252-5258,

the Faculty of Science, Okayama University, Okayama-shi, Okayama 700-8530.

出版信息

J Biol Chem. 2014 Jun 13;289(24):16826-34. doi: 10.1074/jbc.M114.553271. Epub 2014 Apr 21.

Abstract

β-Primeverosidase (PD) is a disaccharide-specific β-glycosidase in tea leaves. This enzyme is involved in aroma formation during the manufacturing process of oolong tea and black tea. PD hydrolyzes β-primeveroside (6-O-β-d-xylopyranosyl-β-d-glucopyranoside) at the β-glycosidic bond of primeverose to aglycone, and releases aromatic alcoholic volatiles of aglycones. PD only accepts primeverose as the glycone substrate, but broadly accepts various aglycones, including 2-phenylethanol, benzyl alcohol, linalool, and geraniol. We determined the crystal structure of PD complexes using highly specific disaccharide amidine inhibitors, N-β-primeverosylamidines, and revealed the architecture of the active site responsible for substrate specificity. We identified three subsites in the active site: subsite -2 specific for 6-O-β-d-xylopyranosyl, subsite -1 well conserved among β-glucosidases and specific for β-d-glucopyranosyl, and wide subsite +1 for hydrophobic aglycone. Glu-470, Ser-473, and Gln-477 act as the specific hydrogen bond donors for 6-O-β-d-xylopyranosyl in subsite -2. On the other hand, subsite +1 was a large hydrophobic cavity that accommodates various aromatic aglycones. Compared with aglycone-specific β-glucosidases of the glycoside hydrolase family 1, PD lacks the Trp crucial for aglycone recognition, and the resultant large cavity accepts aglycone and 6-O-β-d-xylopyranosyl together. PD recognizes the β-primeverosides in subsites -1 and -2 by hydrogen bonds, whereas the large subsite +1 loosely accommodates various aglycones. The glycone-specific activity of PD for broad aglycone substrates results in selective and multiple release of temporally stored alcoholic volatile aglycones of β-primeveroside.

摘要

β-樱草糖苷酶(PD)是茶叶中一种特异性作用于二糖的β-糖苷酶。该酶参与乌龙茶和红茶制造过程中的香气形成。PD在樱草糖的β-糖苷键处将β-樱草糖苷(6-O-β-D-吡喃木糖基-β-D-吡喃葡萄糖苷)水解为苷元,并释放出苷元的芳香醇类挥发物。PD仅接受樱草糖作为糖基底物,但广泛接受各种苷元,包括2-苯乙醇、苯甲醇、芳樟醇和香叶醇。我们使用高度特异性的二糖脒抑制剂N-β-樱草糖基脒确定了PD复合物的晶体结构,并揭示了负责底物特异性的活性位点结构。我们在活性位点中鉴定出三个亚位点:亚位点-2对6-O-β-D-吡喃木糖基具有特异性,亚位点-1在β-葡萄糖苷酶中高度保守且对β-D-吡喃葡萄糖基具有特异性,以及用于疏水性苷元的宽阔亚位点+1。Glu-470、Ser-473和Gln-477作为亚位点-2中6-O-β-D-吡喃木糖基的特异性氢键供体。另一方面,亚位点+1是一个大的疏水腔,可容纳各种芳香苷元。与糖苷水解酶家族1的苷元特异性β-葡萄糖苷酶相比,PD缺乏对苷元识别至关重要的色氨酸,由此产生的大腔同时接受苷元和6-O-β-D-吡喃木糖基。PD通过氢键识别亚位点-1和-2中的β-樱草糖苷,而大的亚位点+1则松散地容纳各种苷元。PD对广泛的苷元底物的糖基特异性活性导致β-樱草糖苷中暂时储存的醇类挥发性苷元的选择性和多重释放。

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