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嗜热栖热放线杆菌11家族木聚糖酶中可滴定基团间相互作用的长程性质:嗜热栖热放线杆菌木聚糖酶的pH滴定

Long-range nature of the interactions between titratable groups in Bacillus agaradhaerens family 11 xylanase: pH titration of B. agaradhaerens xylanase.

作者信息

Betz Marco, Löhr Frank, Wienk Hans, Rüterjans Heinz

机构信息

Institute of Biophysical Chemistry, Center for Biomolecular Magnetic Resonance, Johann Wolfgang Goethe-University, Biocentre N230, Marie Curie-Strasse 9, D-60439 Frankfurt am Main, Germany.

出版信息

Biochemistry. 2004 May 18;43(19):5820-31. doi: 10.1021/bi049948m.

Abstract

Xylanase from Bacillus agaradhaerens belongs to a large group of glycosyl hydrolases which catalyze the degradation of xylan. The protonation behavior of titratable groups of the uniformly (15)N- and (13)C-labeled xylanase was investigated by multinuclear NMR spectroscopy. A total of 224 chemical shift titration curves corresponding to (1)H, (13)C, and (15)N resonances revealed pK(a) values for all aspartic and glutamic acid residues, as well as for the C-terminal carboxylate and histidine residues. Most of the titratable groups exhibit a complex titration behavior, which is most likely due to the mutual interactions with other neighboring groups or due to an unusual local microenvironment. Subsite -1 containing the catalytic dyad shows a long-range interaction over 9 A with Asp21 via two hydrogen bonds with Asn45 as the mediator. This result illuminates the pivotal role of the conserved position 45 among family 11 endoxylanases, determining an alkaline pH optimum by asparagine residues or an acidic pH optimum by an aspartate. The asymmetric interactions of neighboring tryptophan side chains with respect to the catalytic dyad can be comprehended as a result of hydrogen bonding and aromatic stacking. Most of the chemical shift-pH profiles of the backbone amides exhibit biphasic behavior with two distinct inflection points, which correspond to the pK(a) values of the nearby acidic side chains. However, the alternation of both positive and negative slopes of individual amide titration curves is interpreted as a consequence of a simultaneous reorganization of side chain conformational space at pH approximately 6 and/or an overall change in the hydrogen network in the substrate binding cleft.

摘要

来自嗜琼脂芽孢杆菌的木聚糖酶属于一大类催化木聚糖降解的糖基水解酶。通过多核核磁共振光谱研究了均匀(15)N和(13)C标记的木聚糖酶可滴定基团的质子化行为。总共224条对应于(1)H、(13)C和(15)N共振的化学位移滴定曲线揭示了所有天冬氨酸和谷氨酸残基以及C末端羧酸盐和组氨酸残基的pK(a)值。大多数可滴定基团表现出复杂的滴定行为,这很可能是由于与其他相邻基团的相互作用或由于不寻常的局部微环境。含有催化二元组的亚位点-1通过以天冬酰胺45为介质的两个氢键与天冬氨酸21表现出超过9埃的长程相互作用。这一结果阐明了11家族内切木聚糖酶中保守位置45的关键作用,通过天冬酰胺残基决定碱性pH最佳值或通过天冬氨酸决定酸性pH最佳值。相邻色氨酸侧链相对于催化二元组的不对称相互作用可理解为氢键和芳香堆积的结果。大多数主链酰胺的化学位移-pH曲线表现出双相行为,有两个明显的拐点,这与附近酸性侧链的pK(a)值相对应。然而,单个酰胺滴定曲线正负斜率的交替被解释为在pH约为6时侧链构象空间同时重组和/或底物结合裂隙中氢网络整体变化的结果。

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