首页> 外文期刊>Acta crystallographica. Section D, Structural biology. >Structural studies of a cold‐adapted dimeric β‐ d d ‐galactosidase from Paracoccus Paracoccus sp. 32d
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Structural studies of a cold‐adapted dimeric β‐ d d ‐galactosidase from Paracoccus Paracoccus sp. 32d

机译:结构的研究一个冷适应二聚的β的d从副球菌d检测牛乳糖副球菌sp。32 d

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The crystal structure of a novel dimeric β‐ d ‐galactosidase from Paracoccus sp. 32d ( Par βDG) was solved in space group P 2 1 2 1 2 1 at a resolution of 2.4?? by molecular replacement with multiple models using the BALBES software. This enzyme belongs to glycoside hydrolase family 2 (GH2), similar to the tetrameric and hexameric β‐ d ‐galactosidases from Escherichia coli and Arthrobacter sp. C2‐2, respectively. It is the second known structure of a cold‐active GH2 β‐galactosidase, and the first in the form of a functional dimer, which is also present in the asymmetric unit. Cold‐adapted β‐ d ‐galactosidases have been the focus of extensive research owing to their utility in a variety of industrial technologies. One of their most appealing applications is in the hydrolysis of lactose, which not only results in the production of lactose‐free dairy, but also eliminates the `sandy effect' and increases the sweetness of the product, thus enhancing its quality. The determined crystal structure represents the five‐domain architecture of the enzyme, with its active site located in close vicinity to the dimer interface. To identify the amino‐acid residues involved in the catalytic reaction and to obtain a better understanding of the mechanism of action of this atypical β‐ d ‐galactosidase, the crystal structure in complex with galactose ( Par βDG–Gal) was also determined. The catalytic site of the enzyme is created by amino‐acid residues from the central domain 3 and from domain 4 of an adjacent monomer. The crystal structure of this dimeric β‐ d ‐galactosidase reveals significant differences in comparison to other β‐galactosidases. The largest difference is in the fifth domain, named Bgal_windup domain 5 in Par βDG, which contributes to stabilization of the functional dimer. The location of this domain 5, which is unique in size and structure, may be one of the factors responsible for the creation of a functional dimer and cold‐adaptation of this enzyme.
机译:晶体结构的一种新型二聚的β的d从副球菌属牛乳糖sp。32 d (ParβDG)解决了在空间群P 2 1 2 1 2 1分辨率为2.4 ? ?多个模型使用BALBES软件。酶属于糖苷水解酶家族2(GH2),类似于四聚物的和hexamericβ检测从大肠杆菌和d检测牛乳糖分别节细菌属sp。C2量2。第二个已知结构的冷GH2十分活跃β检测牛乳糖,第一个的形式功能二聚体,也是存在的不对称单元。量牛乳糖已经被广泛关注的焦点研究由于他们在各种各样的效用工业技术。有吸引力的应用程序的水解乳糖,这不仅导致生产乳糖免费奶制品,也消除了“沙效应”,增加的甜味产品,从而提高其质量。确定晶体结构代表了五个优先领域架构的酶,其活性位点位于附近密切二聚体界面。参与催化反应和残留物获得更好的理解机制行动的非典型β检测d高牛乳糖复杂的晶体结构与半乳糖(ParβDG-Gal)也确定。酶是由氨基酸的酸从中央域3和残留域4相邻的单体。地理结构的二聚的βd牛乳糖显示显著差异相比其他β牛乳糖。在第五领域,名叫Bgal_windup域5ParβDG,有助于稳定功能二聚体。5,它的规模和结构,是独一无二的负责建立的因素之一功能的二聚体和冷适应酶。

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