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Crystal structure of levansucrase from the Gram-negative bacterium Gluconacetobacter diazotrophicus.

机译:来自革兰氏阴性细菌重氮糖营养菌的葡糖蔗糖的晶体结构。

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The endophytic Gram-negative bacterium Gluconacetobacter diazotrophicus SRT4 secretes a constitutively expressed levansucrase (LsdA, EC 2.4.1.10), which converts sucrose into fructooligosaccharides and levan. The enzyme is included in GH (glycoside hydrolase) family 68 of the sequence-based classification of glycosidases. The three-dimensional structure of LsdA has been determined by X-ray crystallography at a resolution of 2.5 A (1 A=0.1 nm). The structure was solved by molecular replacement using the homologous Bacillus subtilis (Bs) levansucrase (Protein Data Bank accession code 1OYG) as a search model. LsdA displays a five-bladed beta-propeller architecture, where the catalytic residues that are responsible for sucrose hydrolysis are perfectly superimposable with the equivalent residues of the Bs homologue. The comparison of both structures, the mutagenesis data and the analysis of GH68 family multiple sequences alignment show a strong conservation of the sucrose hydrolytic machinery among levansucrases and also a structural equivalence of the Bs levansucrase Ca2+-binding site to the LsdA Cys339-Cys395 disulphide bridge, suggesting similar fold-stabilizing roles. Despite the strong conservation of the sucrose-recognition site observed in LsdA, Bs levansucrase and GH32 family Thermotoga maritima invertase, structural differences appear around residues involved in the transfructosylation reaction.
机译:内生的革兰氏阴性细菌重氮营养菌SRT4分泌组成型表达的蔗糖酶(LsdA,EC 2.4.1.10),该酶将蔗糖转化为低聚果糖和左旋糖。该酶包括在糖苷酶的基于序列的分类的GH(糖苷水解酶)家族68中。 LsdA的三维结构已通过X射线晶体学测定,分辨率为2.5 A(1 A = 0.1 nm)。该结构是通过使用同源枯草芽孢杆菌(Bs)葡聚糖(Protein Data Bank登录号1OYG)作为搜索模型通过分子置换来解决的。 LsdA显示出五叶β螺旋桨结构,其中负责蔗糖水解的催化残基与Bs同源物的等效残基完全重叠。两种结构的比较,诱变数据以及GH68家族多序列比对的分析表明,蔗糖水解酶在糖蔗糖酶之间具有很强的保守性,并且Bs糖蔗糖酶Ca2 +结合位点与LsdA Cys339-Cys395二硫键的结构等价,表明具有类似的褶皱稳定作用。尽管在LsdA,Bs levansucrase和GH32家族嗜热菌转化酶中观察到了蔗糖识别位点的强保守性,但在涉及转果糖基化反应的残基周围仍存在结构差异。

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