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枯草杆菌木聚糖酶中天冬氨酸残基的结构、动态和离解平衡。

Structure, dynamics, and ionization equilibria of the tyrosine residues in Bacillus circulans xylanase.

机构信息

Department of Biochemistry and Molecular Biology, University of British Columbia, Life Sciences Centre, 2350 Health Sciences Mall, Vancouver, BC V6T 1Z3, Canada.

出版信息

J Biomol NMR. 2011 Nov;51(3):379-94. doi: 10.1007/s10858-011-9564-7. Epub 2011 Sep 13.

Abstract

We have developed NMR spectroscopic methods to investigate the tyrosines within Bacillus circulans xylanase (BcX). Four slowly exchanging buried tyrosine hydroxyl protons with chemical shifts between 7.5 and 12.5 ppm were found using a long-range (13)C-HSQC experiment that exploits the (3)J(CH) coupling between the ring (1)H(η) and (13)C(ε) nuclei. The NMR signals from these protons were assigned via (13)C-tyrosine selective labelling and a suite of scalar and (13)C,(15)N-filtered/edited NOE correlation spectra. Of the fifteen tyrosines in BcX, only the buried Tyr79 and Tyr105 showed four distinct, rather than two averaged, signals from ring (13)C-(1)H pairs, indicative of slow flipping on the chemical shift timescale. Ring flipping rate constants of ~10 and ~0.2 s(-1) were measured for the two residues, respectively, using a (13)C longitudinal exchange experiment. The hydrogen bonding properties of the Tyr79 and Tyr105 hydroxyls were also defined by complementary NOE and J-coupling measurements. The (1)H(η) hydrogen-deuterium exchange rate constants of the buried tyrosines were determined from (13)C/(15)N-filtered spectra recorded as a function of pH. These exchange rate constants correspond to estimated protection factors of ~10(4)-10(8) relative to a random coil tyrosine. The phenolic sidechain pK (a) values were also measured by monitoring their pH-dependent (13)C(ζ) chemical shifts via (1)H(ε/δ)((13)C(ε))(13)C(ζ) correlation spectra. Exposed tyrosines had unperturbed pK (a) values of ~10.2, whereas buried residues remained predominantly neutral at or even above pH 11. Combined with selective isotope labelling, these NMR experiments should prove useful for investigating the structural and electrostatic properties of tyrosines in many interesting proteins.

摘要

我们已经开发出了 NMR 波谱方法来研究芽孢杆菌木聚糖酶(BcX)中的酪氨酸。通过利用环(1)H(η)和(13)C(ε)核之间的(3)J(CH)偶合的长程(13)C-HSQC 实验,发现了四个化学位移在 7.5 到 12.5 ppm 之间的缓慢交换的埋藏酪氨酸羟基质子。这些质子的 NMR 信号通过(13)C-酪氨酸选择性标记以及一系列标量和(13)C,(15)N 过滤/编辑 NOE 相关谱来分配。在 BcX 中的 15 个酪氨酸中,只有埋藏的 Tyr79 和 Tyr105 从环(13)C-(1)H 对显示出四个不同的而不是两个平均的信号,表明在化学位移时间尺度上缓慢翻转。使用(13)C 纵向交换实验,分别测量了这两个残基的翻转速率常数约为 10 和 0.2 s(-1)。通过互补的 NOE 和 J 耦合测量还确定了 Tyr79 和 Tyr105 羟基的氢键性质。通过记录作为 pH 函数的(13)C/(15)N 过滤谱来确定埋藏酪氨酸的(1)H(η)氘氢交换速率常数。这些交换速率常数对应于相对于随机卷曲酪氨酸的约 10(4)-10(8)的估计保护因子。还通过监测其 pH 依赖性(13)C(ζ)化学位移通过(1)H(ε/δ)((13)C(ε))(13)C(ζ)相关谱来测量酚侧链 pK(a)值。暴露的酪氨酸具有未受干扰的 pK(a)值约为 10.2,而埋藏的残基在 pH 为 11 或更高时仍然主要呈中性。结合选择性同位素标记,这些 NMR 实验应该有助于研究许多有趣蛋白质中酪氨酸的结构和静电性质。

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