首页> 外文期刊>Journal of Molecular Biology >Structural and functional analyses of beta-glucosidase 3B from Thermotoga neapolitana: a thermostable three-domain representative of glycoside hydrolase 3.
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Structural and functional analyses of beta-glucosidase 3B from Thermotoga neapolitana: a thermostable three-domain representative of glycoside hydrolase 3.

机译:嗜热栖热菌的β-葡萄糖苷酶3B的结构和功能分析:糖苷水解酶3的热稳定三结构域代表。

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摘要

Based on sequence and phylogenetic analyses, glycoside hydrolase (GH) family 3 can be divided into several clusters that differ in the length of their primary sequences. However, structural data on representatives of GH3 are still scarce, since only three of their structures are known and only one of them has been thoroughly characterized-that of an exohydrolase from barley. To allow a deeper structural understanding of the GH3 family, we have determined the crystal structure of the thermostable beta-glucosidase from Thermotoga neapolitana, which has potentially important applications in environmentally friendly industrial biosynthesis at a resolution of 2.05 A. Selected active-site mutants have been characterized kinetically, and the structure of the mutant D242A is presented at 2.1 A resolution. Bgl3B from Th. neapolitana is the first example of a GH3 glucosidase with a three-domain structure. It is composed of an (alpha/beta)(8) domain similar to a triose phosphate isomerase barrel, a five-stranded alpha/beta sandwich domain (both of which are important for active-site organization), and a C-terminal fibronectin type III domain of unknown function. Remarkably, the direction of the second beta-strand of the triose phosphate isomerase barrel domain is reversed, which has implications for the active-site shape. The active site, at the interface of domains 1 and 2, is much more open to solvent than the corresponding site in the structurally homologous enzyme from barley, and only the -1 site is well defined. The structures, in combination with kinetic studies of active-site variants, allow the identification of essential catalytic residues (the nucleophile D242 and the acid/base E458), as well as other residues at the -1 subsite, including D58 and W243, which, by mutagenesis, are shown to be important for substrate accommodation/interaction. The position of the fibronectin type III domain excludes a direct participation of this domain in the recognition of small substrates, although it may be involved in the anchoring of the enzyme on large polymeric substrates and in thermostability.
机译:根据序列和系统发育分析,糖苷水解酶(GH)家族3可以分为几个簇,这些簇的主要序列长度不同。但是,关于GH3代表的结构数据仍然很稀少,因为仅知道它们的三个结构,并且只有一个被充分表征-大麦的外切酶。为了更深入地了解GH3家族的结构,我们确定了Thermotoga neapolitana的热稳定β-葡萄糖苷酶的晶体结构,该晶体在环境友好的工业生物合成中可能具有重要的应用,分辨率为2.05A。动力学特征,突变体D242A的结构呈现2.1 A分辨率。 Th的Bgl3B。 neapolitana是具有三结构域结构的GH3葡萄糖苷酶的第一个实例。它由类似于磷酸三糖磷酸异构酶桶的(α/β)(8)域,五链α/β夹心域(两者均对活性位点组织很重要)和C端纤连蛋白组成。功能未知的III型域。显着地,磷酸三糖异构酶桶结构域的第二个β链的方向相反,这对活性位点的形状有影响。在结构域1和2的界面上的活性位点比来自大麦的结构同源酶中的相应位点对溶剂的开放性大得多,只有-1位是明确定义的。该结构与活性位点变体的动力学研究相结合,可以鉴定必需的催化残基(亲核试剂D242和酸/碱E458)以及-1亚位点的其他残基,包括D58和W243,通过诱变,被证明对底物调节/相互作用很重要。纤连蛋白III型结构域的位置不包括该结构域直接参与小底物的识别,尽管它可能参与酶在大的聚合物底物上的锚定和热稳定性。

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