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嗜热栖热放线菌T6来源的GH27 β-L-阿拉伯吡喃糖苷酶Abp的结构特异性关系

Structure-specificity relationships in Abp, a GH27 β-L-arabinopyranosidase from Geobacillus stearothermophilus T6.

作者信息

Lansky Shifra, Salama Rachel, Solomon Hodaya V, Feinberg Hadar, Belrhali Hassan, Shoham Yuval, Shoham Gil

机构信息

Institute of Chemistry and the Laboratory for Structural Chemistry and Biology, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

Department of Biotechnology and Food Engineering, Technion - Israel Institute of Technology, Haifa 32000, Israel.

出版信息

Acta Crystallogr D Biol Crystallogr. 2014 Nov;70(Pt 11):2994-3012. doi: 10.1107/S139900471401863X. Epub 2014 Oct 29.

Abstract

L-Arabinose sugar residues are relatively abundant in plants and are found mainly in arabinan polysaccharides and in other arabinose-containing polysaccharides such as arabinoxylans and pectic arabinogalactans. The majority of the arabinose units in plants are present in the furanose form and only a small fraction of them are present in the pyranose form. The L-arabinan-utilization system in Geobacillus stearothermophilus T6, a Gram-positive thermophilic soil bacterium, has recently been characterized, and one of the key enzymes was found to be an intracellular β-L-arabinopyranosidase (Abp). Abp, a GH27 enzyme, was shown to remove β-L-arabinopyranose residues from synthetic substrates and from the native substrates sugar beet arabinan and larch arabinogalactan. The Abp monomer is made up of 448 amino acids, and based on sequence homology it was suggested that Asp197 is the catalytic nucleophile and Asp255 is the catalytic acid/base. In the current study, the detailed three-dimensional structure of wild-type Abp (at 2.28 Å resolution) and its catalytic mutant Abp-D197A with (at 2.20 Å resolution) and without (at 2.30 Å resolution) a bound L-arabinose product are reported as determined by X-ray crystallography. These structures demonstrate that the three-dimensional structure of the Abp monomer correlates with the general fold observed for GH27 proteins, consisting of two main domains: an N-terminal TIM-barrel domain and a C-terminal all-β domain. The two catalytic residues are located in the TIM-barrel domain, such that their carboxylic functional groups are about 5.9 Å from each other, consistent with a retaining mechanism. An isoleucine residue (Ile67) located at a key position in the active site is shown to play a critical role in the substrate specificity of Abp, providing a structural basis for the high preference of the enzyme towards arabinopyranoside over galactopyranoside substrates. The crystal structure demonstrates that Abp is a tetramer made up of two `open-pincers' dimers, which clamp around each other to form a central cavity. The four active sites of the Abp tetramer are situated on the inner surface of this cavity, all opening into the central space of the cavity. The biological relevance of this tetrameric structure is supported by independent results obtained from size-exclusion chromatography (SEC), dynamic light-scattering (DLS) and small-angle X-ray scattering (SAXS) experiments. These data and their comparison to the structural data of related GH27 enzymes are used for a more general discussion concerning structure-selectivity aspects in this glycoside hydrolase (GH) family.

摘要

L-阿拉伯糖残基在植物中相对丰富,主要存在于阿拉伯聚糖多糖以及其他含阿拉伯糖的多糖中,如阿拉伯木聚糖和果胶阿拉伯半乳聚糖。植物中大多数阿拉伯糖单元以呋喃糖形式存在,只有一小部分以吡喃糖形式存在。嗜热栖热放线菌T6是一种革兰氏阳性嗜热土壤细菌,其L-阿拉伯聚糖利用系统最近已被表征,发现其中一种关键酶是细胞内β-L-阿拉伯吡喃糖苷酶(Abp)。Abp是一种GH27酶,已证明它能从合成底物以及天然底物甜菜阿拉伯聚糖和落叶松阿拉伯半乳聚糖中去除β-L-阿拉伯吡喃糖残基。Abp单体由448个氨基酸组成,基于序列同源性表明,Asp197是催化亲核试剂,Asp255是催化酸/碱。在本研究中,报告了野生型Abp(分辨率为2.28 Å)及其催化突变体Abp-D197A(分别在有(分辨率为2.20 Å)和无(分辨率为2.30 Å)结合的L-阿拉伯糖产物情况下)的详细三维结构,这些结构通过X射线晶体学测定。这些结构表明,Abp单体的三维结构与GH27蛋白观察到的一般折叠相关,由两个主要结构域组成:一个N端TIM桶结构域和一个C端全β结构域。两个催化残基位于TIM桶结构域中,它们的羧基官能团彼此相距约5.9 Å,这与保留机制一致。位于活性位点关键位置的异亮氨酸残基(Ile67)在Abp的底物特异性中起关键作用,为该酶对阿拉伯吡喃糖苷比对吡喃半乳糖苷底物的高度偏好提供了结构基础。晶体结构表明,Abp是由两个“开放钳形”二聚体组成的四聚体,它们相互钳夹形成一个中心腔。Abp四聚体的四个活性位点位于该腔的内表面,全部通向腔的中心空间。尺寸排阻色谱(SEC)、动态光散射(DLS)和小角X射线散射(SAXS)实验获得的独立结果支持了这种四聚体结构的生物学相关性。这些数据以及它们与相关GH27酶结构数据的比较被用于更广泛地讨论这个糖苷水解酶(GH)家族中的结构选择性方面。

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